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Title:
PYRIDOPYRAZINE COMPOUNDS AND USES THEREOF
Document Type and Number:
WIPO Patent Application WO/2018/237190
Kind Code:
A1
Abstract:
Disclosed herein, inter alia, are pyridopyrazines and methods of using the same.

Inventors:
NAM SANGKIL (US)
HORNE DAVID (US)
SALGIA RAVI (US)
SKALTSOUNIS ALEXIOS-LEANDROS (GR)
LOUGIAKIS NIKOLAOS (GR)
POULI NICOLE (GR)
MARAKOS PANAGIOTIS (GR)
Application Number:
PCT/US2018/038830
Publication Date:
December 27, 2018
Filing Date:
June 21, 2018
Export Citation:
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Assignee:
HOPE CITY (US)
NATIONAL AND KAPODISTRIAN UNIV OF ATHENS (GR)
International Classes:
A61K31/4985; C07D471/04
Foreign References:
US20120214768A12012-08-23
US7276507B22007-10-02
Other References:
ARGYROS ET AL.: "Design and Synthesis of Novel 7-aminosubstituted pyrido[2,3-b]pyrazines exhibiting anti-breast cancer activity", EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, vol. 126, December 2016 (2016-12-01), pages 954 - 968, XP029885733
Attorney, Agent or Firm:
TERRANOVA, Zachary, L. et al. (US)
Download PDF:
Claims:
WHAT IS CLAIMED IS:

1. A com ound having the formula:

(I),

wherein,

Ring A is an aryl or heteroaryl;

R1 is independently halogen, -CX^, -CHX^, -CH2X1, -OCX^, - OCH2X1, -OCHX^, -CN, -SOniR1D, -SOvi R1AR1B, - HC(0) R1AR1B, -N(0)mi, - R1AR1B, -C( 0)R1C, -C(0)-ORlc, -C(0) R1AR1B, -OR1D, - R1AS02R1D, - R1AC(0)R1C, - R1AC(0)0R1C, -N R1A0R1C, -N3, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl;

zl is an integer from 0 to 5;

Ring B is an aryl or heteroaryl;

R2 is independently halogen, -CX23, -CHX22, -CH2X2, -OCX23, - OCH2X2, -OCHX22, -CN, -SO„2R2D, -SOv2NR2AR2B, -NHC(0)NR2AR2B, -N(0)m2, -NR2AR2B, -C( 0)R2C, -C(0)-OR2C, -C(0)NR2AR2B, -OR2D, -NR2AS02R2D, -NR2AC(0)R2C, -NR2AC(0)OR2C, -N R2AOR2C, -N3, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl;

z2 is an integer from 0 to 5;

R3 is independently hydrogen, -CX33, -CHX32, -CH2X3, -OCX33, - OCH2X3, -OCHX32, -CN, -C(0)R3A, -C(0)OR3A, -C(0)NR3AR3B, -OR3A, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl;

R4 is independently hydrogen, -CX43, -CHX42, - CH2X4, -C(0)R4A, -C(0)OR4A, -C(0)NR4AR4B, substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl;

L is a bond or -N(R5)-; R5 is independently hydrogen, -CX53, -CHX52, - CH2X5, -C(0)R5A, -C(0)OR5A, -C(0) R5AR5B, substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl;

R6 is independently hydrogen, -CX63, -CHX62, - CH2X6, -C(0)R6A, -C(0)OR6A, -C(0) R6AR6B, substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl;

R7 is independently hydrogen, -CX73, -CHX72, -CH2X7, -OCX73, - OCH2X7, -OCHX72, -CN, -C(0)R7A, -C(0)OR7A, -C(0) R7AR7B, -OR7A, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or sub stituted or unsub stituted heteroaryl ;

R8 is independently hydrogen, -CX83, -CHX82, -CH2X8, -OCX83, - OCH2X8, -OCHX82, -CN, -C(0)R8A, -C(0)OR8A, -C(0)NR8AR8B, -OR8A, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl;

Each R1A, R1B, R1C, R1D, R2A, R2B, R2C, R2D, R3A, R3B, R4A, R4B, R5A, R5B, R6A, R6B, R7A, R7B, R8A, and R8B is independently hydrogen, -CX3, -COOH, -CONH2, -CHX2, -CH2X, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or

unsubstituted aryl, or substituted or unsubstituted heteroaryl; R1A and R1B substituents bonded to the same nitrogen atom may optionally be j oined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R2A and R2B substituents bonded to the same nitrogen atom may optionally be j oined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R3A and R3B substituents bonded to the same nitrogen atom may optionally be j oined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R4A and R4B substituents bonded to the same nitrogen atom may optionally be j oined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R5A and R5B substituents bonded to the same nitrogen atom may optionally be j oined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R6A and R6B substituents bonded to the same nitrogen atom may optionally be j oined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R7A and R7B substituents bonded to the same nitrogen atom may optionally be j oined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R8A and R8B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl;

each X, X1, X2, X3, X4, X5, X6, X7, and X8 is independently -F, -CI, -Br, or -I; nl and n2 are independently an integer from 0 to 4; and

ml, m2, vl, and v2 are independently 1 or 2. 2. The compound of claim 1, wherein L is -N(R5)-. 3. The compound of claim 1, wherein L is a bond. 4. The compound of claim 1, wherein R8 is hydrogen, -CX83, -CHX82, - CH2X8, or unsubstituted Ci-C2 alkyl. 5. The compound of claim 1, wherein R8 is hydrogen. 6. The compound of claim 1, wherein R7 is hydrogen, -CX73, -CHX72, - CH2X7, or unsubstituted Ci-C2 alkyl. 7. The compound of claim 1, wherein R7 is hydrogen. 8. The compound of claim 1 having the formula:

9. The compound of claim 1, wherein R6 is hydrogen, -CX63, -CHX62, - CH2X6, or unsubstituted Ci-C2 alkyl. 10. The compound of claim 1, wherein R6 is hydrogen. 11. The compound of claim 1, wherein R5 is hydrogen, -CX53, -CHX52, - CH2X5, or unsubstituted Ci-C2 alkyl. 12. The compound of claim 1, wherein R5 is hydrogen. 13. The compound of claim 1, wherein R4 is hydrogen, -CX43, -CHX42, - CH2X4, or unsubstituted Ci-C2 alkyl.

14. The compound of claim 1, wherein R4 is hydrogen. 15. The compound of claim 1, wherein R3 is -CX33, -CHX32, -CH2X3, or unsubstituted Ci-C3 alkyl. 16. The compound of claim 1, wherein R3 is unsubstituted methyl. 17. The compound of claim 1 having the formula:

18. The compound of claim 1, wherein Ring A is a phenyl or 5 to 6 membered heteroaryl. 19. The compound of claim 1, wherein Ring A is a phenyl. 20. The compound of claim 1, wherein R1 is independently halogen, -CXX3, - CHX^, -CH2X1, -SCXl3, -SCHX^, -SCH2X1, unsubstituted C1-C2 alkyl, or unsubstituted 2 to 4 membered heteroalkyl. 21. The compound of claim 1, wherein R1 is independently halogen, -CXX3, - CHX^, -CH2X1, or unsubstituted C1-C2 alkyl. 22. The compound of claim 1, wherein R1 is independently

halogen, -CF3, -CHF2, -CH2F, -CH3, -SCF3, -SCHF2, -SCH2F, or -SCH3 23. The compound of claim 1, wherein R1 is independently halogen, -CXX3, or -SCH3. 24. The compound of claim 1, wherein R1 is independently -F, -CI, -SCH3, or -CF3. 25. The compound of claim 1, wherein zl is 2. 26. The compound of claim 1, wherein zl is 1. 27. The compound of claim 1, wherein zl is 0. 28. The compound of claim 1 having the formula: 29. The compound of claim 1 having the formula:

H (Illb). 30. The compound of claim 1 having the formula:

31. The compound of claim 1 having the formula:

32. The compound of claim 1, wherein Ring B is a phenyl or 5 to 6 membered heteroaryl. 33. The compound of claim 1, wherein Ring B is a phenyl. 34. The compound of claim 1, wherein R2 is independently -OCX23, - OCH2X2, -OCHX22, -C(0)R2C, -C(0)OR2C, -OR2D, or - R2AC(0)R2C; and

Each R2A, R2B, R2C, and R2D is independently hydrogen, -CX3, -CHX2, -CH2X, unsubstituted C1-C2 alkyl. 35. The compound of claim 1, wherein R2 is independently -OCF3, - OCH2F, -OCHF2, -C(0)OH, -C(0)OCH2CH3, -OCH3, or - HC(0)CH3. 36. The compound of claim 1, wherein z2 is 3. 37. The compound of claim 1, wherein z2 is 2.

38. The compound of claim 1, wherein z2 is 1.

39. The compound of claim 1, wherein z2 is 0.

The compound of claim 38 having the formula:

The compound of claim 38 having the formula:

The compound of claim 39 having the formula:

The compound of claim 38 having the formula:

The compound of claim 38 having the formula:

45. The compound of claim 39 having the formula:

The compound of claim 38 having the formula:

The compound of claim 38 having the formula:

The compound of claim 39 having the formula:

The compound of claim 38 having the formula:

The compound of claim 38 having the formula:

51. The compound of claim 39 having the formula: 52. A pharmaceutical composition comprising a compound of one of claims 1 to 51 or a pharmaceutically acceptable salt thereof, and a pharmaceutically acceptable excipient. 53. The pharmaceutical composition of claim 52, comprising a therapeutically effective amount of said compound. 54. A method of treating cancer, said method comprising administering to a subject in need thereof an effective amount of a compound of one of claims 1 to 51. 55. The method of claim 54, wherein the cancer is lung cancer. 56. The method of claim 54, wherein the cancer is small cell lung cancer. 57. The method of claim 54, wherein the cancer is non-small cell lung cancer. 58. The method of claim 54, wherein the cancer is prostate cancer. 59. The method of claim 54, wherein the cancer is hormone sensitive prostate cancer. 60. The method of claim 54, wherein the cancer is hormone refractory prostate cancer. 61. The method of claim 54, wherein the cancer is melanoma. 62. The method of claim 54, wherein the cancer is lung cancer, prostate cancer, melanoma, lymphoma, sarcoma, breast cancer, ovarian cancer, pancreatic cancer, bladder cancer, bone cancer, brain cancer, cervical cancer, colorectal cancer, esophageal cancer, gastric cancer, liver cancer, head and neck cancer, kidney cancer, myeloma, leukemia, or thyroid cancer.

Description:
PYRIDOPYRAZINE COMPOUNDS AND USES THEREOF

CROSS-REFERENCES TO RELATED APPLICATIONS

[0001] This application claims the benefit of U.S. Provisional Application No. 62/523,412, filed on June 22, 2017, which is incorporated herein by reference in its entirety and for all purposes.

BACKGROUND

[0002] In the United States, the lifetime risk of developing cancer is roughly 42% for men and 38% for women. The lifetime risk of dying from cancer is 23% for men and 19% for women in the United States. New cancer treatments and preventatives are needed. Disclosed herein, inter alia, are solutions to these and other problems in the art.

SUMMARY

[0003] In an aspect is provided a compound having the formula:

(I).

[0004] Ring A is an aryl or heteroaryl.

[0005] R 1 is independently halogen, -CXS, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, - N 3 , -CN, -SOniR 1D , -SOviNR 1A R 1B , -NHC(0)NR 1A R 1B , -N(0) m i, -NR 1A R 1B , -C(0)R 1C , -C(0)-0 R 1C , -C(0)NR 1A R 1B , -OR 1D , -NR 1A S0 2 R 1D , -NR 1A C(0)R 1C , -NR 1A C(0)OR lc , -NR 1A OR lc , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. Two adjacent R 1 substituents may optionally be joined to form a substituted or unsubstituted cycloalkyl, substituted or

unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0006] zl is an integer from 0 to 5. [0007] Ring B is an aryl or heteroaryl. [0008] R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -

OCH 2 X 2 , -OCHX 2 2 , -CN, -SO^R 20 , -SO v2 R 2A R 2B , - HC(0) R 2A R 2B , -N(0) m2 , - R 2A R 2B , -C( 0)R 2C , -C(0)-OR 2C , -C(0) R 2A R 2B , -OR 2D , - R 2A S0 2 R 2D , - R 2A C(0)R 2C , - R 2A C(0)OR 2C , -N R 2A OR 2C , -N 3 , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. Two adjacent R 2 substituents may optionally be joined to form a substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0009] z2 is an integer from 0 to 5.

[0010] R 3 is independently hydrogen, halogen, -CX 3 3 , -CHX 3 2 , -CH 2 X 3 , -OCX 3 3 , - OCH 2 X 3 , -OCHX 3 2 , -

N 3 , -CN, -SO n3 R 3A , -SO v3 NR 3A R 3B , -NHC(0)NR 3A R 3B , -N(0) m3 , -NR 3A R 3B , -C(0)R 3A , -C(0)OR 3A , -C(0)NR 3A R 3B , -OR 3A , -NR 3A S0 2 R 3B , -NR 3A C(0)R 3B , -NR 3A C(0)OR 3B , -NR 3A OR 3B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0011] R 4 is independently hydrogen, -CX 4 3 , -CHX 4 2 , -

CH 2 X 4 , -C(0)R 4A , -C(0)OR 4A , -C(0)NR 4A R 4B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl.

[0012] L is independently a bond or -N(R 5 )-.

[0013] R 5 is independently hydrogen, -CX 5 3 , -CHX 5 2 , -

CH 2 X 5 , -C(0)R 5A , -C(0)OR 5A , -C(0)NR 5A R 5B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl. [0014] R 6 is independently hydrogen, -CX 6 3 , -CHX 6 2 , -

CH 2 X 6 , -C(0)R 6A , -C(0)OR 6A , -C(0)NR 6A R 6B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl.

[0015] R 7 is independently hydrogen, halogen, -CX 7 3 , -CHX 7 2 , -CH 2 X 7 , -OCX 7 3 , - OCH 2 X 7 , -OCHX 7 2 , - N 3 , -CN, -SOnvR 7A , -SOvvNR 7A R 7B , -NHC(0)NR 7A R 7B , -N(0) m7 , -NR 7A R 7B , -C(0)R 7A , -C(0)OR 7A , -C(0)NR 7A R 7B , -OR 7A , -NR 7A S0 2 R 7B , -NR 7A C(0)R 7B , -NR 7A C(0)OR 7B , -NR 7A OR 7B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0016] R 8 is independently hydrogen, halogen, -CX 8 3 , -CHX 8 2 , -CH 2 X 8 , -OCX 8 3 , - OCH 2 X 8 , -OCHX 8 2 , - N 3 , -CN, -SO n8 R 8A , -SO v8 R 8A R 8B , - HC(0) R 8A R 8B , -N(0) m8 , - R 8A R 8B , -C(0)R 8A , -C(0)OR 8A , -C(0) R 8A R 8B , -OR 8A , - R 8A S0 2 R 8B , -NR 8A C(0)R 8B , - R 8A C(0)OR 8B , - R 8A OR 8B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0017] Each R 1A , R 1B , R 1C , R 1D , R 2A , R 2B , R 2C , R 2D , R 3A , R 3B , R 4A , R 4B , R 5A , R 5B , R 6A , R 6B , R 7A , R 7B , R 8A , and R 8B is independently hydrogen, -CX 3 , -COOH, -CO H 2 , -CHX 2 , -CH 2 X, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl.

[0018] Each X, X 1 , X 2 , X 3 , X 4 , X 5 , X 6 , X 7 , and X 8 is independently -F, -CI, -Br, or -I. [0019] nl, n2, n3, n7, and n8 are independently an integer from 0 to 4. [0020] ml, m2, m3, m7, m8, vl, v2, v3, v7, and v8 are independently 1 or 2. [0021] In an aspect is provided a pharmaceutical composition including a compound described herein, or pharmaceutically acceptable salt thereof, and a pharmaceutically acceptable excipient.

[0022] In an aspect is provided a method of treating cancer, the method including

administering to a subject in need thereof an effective amount of a compound described herein. [0023] In an aspect is provided a method of inhibiting cell proliferation, the method including contacting the cell with a compound described herein.

DETAILED DESCRIPTION

I. Definitions

[0024] The abbreviations used herein have their conventional meaning within the chemical and biological arts. The chemical structures and formulae set forth herein are constructed according to the standard rules of chemical valency known in the chemical arts.

[0025] Where substituent groups are specified by their conventional chemical formulae, written from left to right, they equally encompass the chemically identical substituents that would result from writing the structure from right to left, e.g., -CH2O- is equivalent to -OCH2-. [0026] The term "alkyl," by itself or as part of another substituent, means, unless otherwise stated, a straight (i.e., unbranched) or branched carbon chain (or carbon), or combination thereof, which may be fully saturated, mono- or polyunsaturated and can include mono-, di- and multivalent radicals, having the number of carbon atoms designated (i.e., C1-C10 means one to ten carbons). Alkyl is an uncyclized chain. Examples of saturated hydrocarbon radicals include, but are not limited to, groups such as methyl, ethyl, n-propyl, isopropyl, n-butyl, t-butyl, isobutyl, sec-butyl, homologs and isomers of, for example, n-pentyl, n-hexyl, n-heptyl, n-octyl, and the like. An unsaturated alkyl group is one having one or more double bonds or triple bonds. Examples of unsaturated alkyl groups include, but are not limited to, vinyl, 2-propenyl, crotyl, 2- isopentenyl, 2-(butadienyl), 2,4-pentadienyl, 3-(l,4-pentadienyl), ethynyl, 1- and 3-propynyl, 3- butynyl, and the higher homologs and isomers. An alkoxy is an alkyl attached to the remainder of the molecule via an oxygen linker (-0-).

[0027] The term "alkylene," by itself or as part of another substituent, means, unless otherwise stated, a divalent radical derived from an alkyl, as exemplified, but not limited by, - CH2CH2CH2CH2-. Typically, an alkyl (or alkylene) group will have from 1 to 24 carbon atoms, with those groups having 10 or fewer carbon atoms being preferred herein. A "lower alkyl" or "lower alkylene" is a shorter chain alkyl or alkylene group, generally having eight or fewer carbon atoms. The term "alkenylene," by itself or as part of another substituent, means, unless otherwise stated, a divalent radical derived from an alkene.

[0028] The term "heteroalkyl," by itself or in combination with another term, means, unless otherwise stated, a stable straight or branched chain, or combinations thereof, including at least one carbon atom and at least one heteroatom (e.g., O, N, P, S, B, As, or Si), and wherein the nitrogen and sulfur atoms may optionally be oxidized, and the nitrogen heteroatom may optionally be quaternized. The heteroatom(s) (e.g., O, N, P, S, B, As, or Si) may be placed at any interior position of the heteroalkyl group or at the position at which the alkyl group is attached to the remainder of the molecule. Heteroalkyl is an uncyclized chain. Examples include, but are not limited to: -CH 2 -CH 2 -0-CH 3 , -CH 2 -CH 2 - H-CH 3 , -CH 2 -CH 2 -N(CH 3 )-CH 3 , -CH 2 -S-CH 2 -CH 3 , - CH 2 -S-CH 2 , -S(0)-CH 3 , -CH 2 -CH 2 -S(0) 2 -CH 3 , -CH=CH-0-CH 3 , -Si(CH 3 ) 3 , -CH 2 -CH=N- OCH 3 , -CH=CH-N(CH 3 )-CH 3 , -0-CH 3 , -0-CH 2 -CH 3 , and -CN. Up to two or three heteroatoms may be consecutive, such as, for example, -CH 2 - H-OCH 3 and -CH 2 -0-Si(CH 3 ) 3 . A heteroalkyl moiety may include one heteroatom (e.g., O, N, P, S, B, As, or Si). A heteroalkyl moiety may include two optionally different heteroatoms (e.g., O, N, P, S, B, As, or Si). A heteroalkyl moiety may include three optionally different heteroatoms (e.g., O, N, P, S, B, As, or Si). A heteroalkyl moiety may include four optionally different heteroatoms (e.g., O, N, P, S, B, As, or Si). A heteroalkyl moiety may include five optionally different heteroatoms (e.g., O, N, P, S, B, As, or Si). A heteroalkyl moiety may include up to 8 optionally different heteroatoms (e.g., O, N, P, S, B, As, or Si).

[0029] Similarly, the term "heteroalkylene," by itself or as part of another substituent, means, unless otherwise stated, a divalent radical derived from heteroalkyl, as exemplified, but not limited by, -CH 2 -CH 2 -S-CH 2 -CH 2 - and -CH 2 -S-CH 2 -CH 2 - H-CH 2 -. For heteroalkylene groups, heteroatoms can also occupy either or both of the chain termini (e.g., alkyleneoxy,

alkylenedioxy, alkyleneamino, alkylenediamino, and the like). Still further, for alkylene and heteroalkylene linking groups, no orientation of the linking group is implied by the direction in which the formula of the linking group is written. For example, the formula -C(0) 2 R'- represents both -C(0) 2 R'- and -R'C(0) 2 -. As described above, heteroalkyl groups, as used herein, include those groups that are attached to the remainder of the molecule through a heteroatom, such as - C(0)R, -C(0) R', -NR'R", -OR, -SR, and/or -S0 2 R. Where "heteroalkyl" is recited, followed by recitations of specific heteroalkyl groups, such as -NR'R" or the like, it will be understood that the terms heteroalkyl and -NR'R" are not redundant or mutually exclusive. Rather, the specific heteroalkyl groups are recited to add clarity. Thus, the term "heteroalkyl" should not be interpreted herein as excluding specific heteroalkyl groups, such as -NR'R" or the like. [0030] The terms "cycloalkyl" and "heterocycloalkyl," by themselves or in combination with other terms, mean, unless otherwise stated, cyclic versions of "alkyl" and "heteroalkyl," respectively. Cycloalkyl and heterocycloalkyl are not aromatic. Additionally, for

heterocycloalkyl, a heteroatom can occupy the position at which the heterocycle is attached to the remainder of the molecule. Examples of cycloalkyl include, but are not limited to, cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, 1-cyclohexenyl, 3-cyclohexenyl, cycloheptyl, and the like. Examples of heterocycloalkyl include, but are not limited to, 1 -(1,2,5, 6- tetrahydropyridyl), 1-piperidinyl, 2-piperidinyl, 3-piperidinyl, 4-morpholinyl, 3-morpholinyl, tetrahydrofuran-2-yl, tetrahydrofuran-3-yl, tetrahydrothien-2-yl, tetrahydrothien-3-yl, 1- piperazinyl, 2-piperazinyl, and the like. A "cycloalkyl ene" and a "heterocycloalkyl ene," alone or as part of another substituent, means a divalent radical derived from a cycloalkyl and

heterocycloalkyl, respectively.

[0031] The terms "halo" or "halogen," by themselves or as part of another substituent, mean, unless otherwise stated, a fluorine, chlorine, bromine, or iodine atom. Additionally, terms such as "haloalkyl" are meant to include monohaloalkyl and polyhaloalkyl. For example, the term

"halo(Ci-C4)alkyl" includes, but is not limited to, fluoromethyl, difluoromethyl, trifluoromethyl, 2,2,2-trifluoroethyl, 4-chlorobutyl, 3-bromopropyl, and the like.

[0032] The term "acyl" means, unless otherwise stated, -C(0)R where R is a substituted or unsubstituted alkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0033] The term "aryl" means, unless otherwise stated, a polyunsaturated, aromatic, hydrocarbon substituent, which can be a single ring or multiple rings (preferably from 1 to 3 rings) that are fused together (i.e., a fused ring aryl) or linked covalently. A fused ring aryl refers to multiple rings fused together wherein at least one of the fused rings is an aryl ring. The term "heteroaryl" refers to aryl groups (or rings) that contain at least one heteroatom such as N, O, or S, wherein the nitrogen and sulfur atoms are optionally oxidized, and the nitrogen atom(s) are optionally quaternized. Thus, the term "heteroaryl" includes fused ring heteroaryl groups (i.e., multiple rings fused together wherein at least one of the fused rings is a heteroaromatic ring). A 5,6-fused ring heteroarylene refers to two rings fused together, wherein one ring has 5 members and the other ring has 6 members, and wherein at least one ring is a heteroaryl ring. Likewise, a 6,6-fused ring heteroarylene refers to two rings fused together, wherein one ring has 6 members and the other ring has 6 members, and wherein at least one ring is a heteroaryl ring. And a 6,5- fused ring heteroarylene refers to two rings fused together, wherein one ring has 6 members and the other ring has 5 members, and wherein at least one ring is a heteroaryl ring. A heteroaryl group can be attached to the remainder of the molecule through a carbon or heteroatom. Non- limiting examples of aryl and heteroaryl groups include phenyl, naphthyl, pyrrolyl, pyrazolyl, pyridazinyl, triazinyl, pyrimidinyl, imidazolyl, pyrazinyl, purinyl, oxazolyl, isoxazolyl, thiazolyl, furyl, thienyl, pyridyl, pyrimidyl, benzothiazolyl, benzoxazoyl benzimidazolyl, benzofuran, isobenzofuranyl, indolyl, isoindolyl, benzothiophenyl, isoquinolyl, quinoxalinyl, quinolyl, 1- naphthyl, 2-naphthyl, 4-biphenyl, 1 -pyrrolyl, 2-pyrrolyl, 3 -pyrrolyl, 3 -pyrazolyl, 2-imidazolyl, 4- imidazolyl, pyrazinyl, 2-oxazolyl, 4-oxazolyl, 2-phenyl-4-oxazolyl, 5-oxazolyl, 3-isoxazolyl, 4- isoxazolyl, 5-isoxazolyl, 2-thiazolyl, 4-thiazolyl, 5-thiazolyl, 2-furyl, 3-furyl, 2-thienyl, 3- thienyl, 2-pyridyl, 3-pyridyl, 4-pyridyl, 2-pyrimidyl, 4-pyrimidyl, 5-benzothiazolyl, purinyl, 2- benzimidazolyl, 5-indolyl, 1 -isoquinolyl, 5-isoquinolyl, 2-quinoxalinyl, 5 -quinoxalinyl, 3- quinolyl, and 6-quinolyl. Substituents for each of the above noted aryl and heteroaryl ring systems are selected from the group of acceptable substituents described below. An "arylene" and a "heteroarylene," alone or as part of another substituent, mean a divalent radical derived from an aryl and heteroaryl, respectively. A heteroaryl group substituent may be -O- bonded to a ring heteroatom nitrogen.

[0034] Spirocyclic rings are two or more rings wherein adjacent rings are attached through a single atom. The individual rings within spirocyclic rings may be identical or different.

Individual rings in spirocyclic rings may be substituted or unsubstituted and may have different substituents from other individual rings within a set of spirocyclic rings. Possible substituents for individual rings within spirocyclic rings are the possible substituents for the same ring when not part of spirocyclic rings (e.g. substituents for cycloalkyl or heterocycloalkyl rings). Spirocylic rings may be substituted or unsubstituted cycloalkyl, substituted or unsubstituted cycloalkyl ene, substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heterocycloalkylene and individual rings within a spirocyclic ring group may be any of the immediately previous list, including having all rings of one type (e.g. all rings being substituted heterocycloalkylene wherein each ring may be the same or different substituted heterocycloalkylene). When referring to a spirocyclic ring system, heterocyclic spirocyclic rings means a spirocyclic rings wherein at least one ring is a heterocyclic ring and wherein each ring may be a different ring. When referring to a spirocyclic ring system, substituted spirocyclic rings means that at least one ring is substituted and each substituent may optionally be different.

[0035] The symbol ' " denotes the point of attachment of a chemical moiety to the remainder of a molecule or chemical formula. [0036] The term "oxo," as used herein, means an oxygen that is double bonded to a carbon atom.

[0037] The term "alkylarylene" as an arylene moiety covalently bonded to an alkylene moiety (also referred to herein as an alkylene linker). In embodiments, the alkylarylene group has the formula:

[0038] An alkylarylene moiety may be substituted (e.g. with a substituent group) on the alkylene moiety or the arylene linker (e.g. at carbons 2, 3, 4, or 6) with halogen, oxo, -N 3 , -CF 3 , - CCb, -CBr 3 , -CI 3 , -CN, -CHO, -OH, -NH 2 , -COOH, -CO H 2 , -N0 2 , -SH, -S0 2 CH 3 -S0 3 H, - OS0 3 H, -S0 2 NH 2 , - HNH 2 , -O H 2 , -NHC(0) HNH 2 , substituted or unsubstituted C1-C5 alkyl or substituted or unsubstituted 2 to 5 membered heteroalkyl). In embodiments, the alkylarylene is unsubstituted.

[0039] Each of the above terms (e.g., "alkyl," "heteroalkyl," "cycloalkyl," "heterocycloalkyl," "aryl," and "heteroaryl") includes both substituted and unsubstituted forms of the indicated radical. Preferred substituents for each type of radical are provided below.

[0040] Substituents for the alkyl and heteroalkyl radicals (including those groups often referred to as alkylene, alkenyl, heteroalkylene, heteroalkenyl, alkynyl, cycloalkyl,

heterocycloalkyl, cycloalkenyl, and heterocycloalkenyl) can be one or more of a variety of groups selected from, but not limited to, -OR', =0, = R', =N-OR, - R'R", -SR, -halogen, - SiRR'R", -OC(0)R, -C(0)R, -C0 2 R, -CO R'R", -OC(0) R'R", - R"C(0)R, -NR-

C(0) R"R", - R"C(0) 2 R, - R-C( R'R"R")= R"", - R-C( R'R")= R"', -S(0)R, -S(0) 2 R, - S(0) 2 R'R", - RS0 2 R, - R' R"R", -O R'R", - R'C(0) R" R"'R"", -CN, -N0 2 , - NRSO2R", -NR'C(0)R", -NR'C(0)-OR", -NR'OR", in a number ranging from zero to (2m'+l), where m' is the total number of carbon atoms in such radical. R, R, R", R", and R"" each preferably independently refer to hydrogen, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl (e.g., aryl substituted with 1-3 halogens), substituted or unsubstituted heteroaryl, substituted or unsubstituted alkyl, alkoxy, or thioalkoxy groups, or arylalkyl groups. When a compound described herein includes more than one R group, for example, each of the R groups is independently selected as are each R, R", R", and R"" group when more than one of these groups is present. When R and R" are attached to the same nitrogen atom, they can be combined with the nitrogen atom to form a 4-, 5-, 6-, or 7-membered ring. For example, -NR'R" includes, but is not limited to, 1-pyrrolidinyl and 4-morpholinyl. From the above discussion of substituents, one of skill in the art will understand that the term "alkyl" is meant to include groups including carbon atoms bound to groups other than hydrogen groups, such as haloalkyl (e.g., -CF 3 and -CH 2 CF 3 ) and acyl (e.g., -C(0)CH 3 , -C(0)CF 3 , -C(0)CH 2 OCH 3 , and the like). [0041] Similar to the substituents described for the alkyl radical, substituents for the aryl and heteroaryl groups are varied and are selected from, for example: -OR', - R'R", -SR', -halogen, - SiR'R'R", -OC(0)R, -C(0)R, -C0 2 R, -CO R'R", -OC(0) R'R", - R"C(0)R, - R'- C(0) R"R", - R"C(0) 2 R, - R-C( R'R"R")= R"", - R-C( R'R")= R"', -S(0)R, -S(0) 2 R, - S(0) 2 R'R", - RS0 2 R, - R'NR"R", -O R'R", - R'C(0) R" R"'R"", -CN, -N0 2 , -R, -N 3 , - CH(Ph) 2 , fluoro(Ci-C 4 )alkoxy, and fluoro(Ci-C 4 )alkyl, - R'S0 2 R", - R'C(0)R", - R'C(O)- OR", - R'OR", in a number ranging from zero to the total number of open valences on the aromatic ring system; and where R, R", R", and R"" are preferably independently selected from hydrogen, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, and substituted or unsubstituted heteroaryl. When a compound described herein includes more than one R group, for example, each of the R groups is independently selected as are each R, R", R", and R"" groups when more than one of these groups is present.

[0042] Substituents for rings (e.g. cycloalkyl, heterocycloalkyl, aryl, heteroaryl, cycloalkylene, heterocycloalkylene, arylene, or heteroarylene) may be depicted as substituents on the ring rather than on a specific atom of a ring (commonly referred to as a floating substituent). In such a case, the substituent may be attached to any of the ring atoms (obeying the rules of chemical valency) and in the case of fused rings or spirocyclic rings, a substituent depicted as associated with one member of the fused rings or spirocyclic rings (a floating substituent on a single ring), may be a substituent on any of the fused rings or spirocyclic rings (a floating substituent on multiple rings). When a substituent is attached to a ring, but not a specific atom (a floating substituent), and a subscript for the substituent is an integer greater than one, the multiple substituents may be on the same atom, same ring, different atoms, different fused rings, different spirocyclic rings, and each substituent may optionally be different. Where a point of attachment of a ring to the remainder of a molecule is not limited to a single atom (a floating substituent), the attachment point may be any atom of the ring and in the case of a fused ring or spirocyclic ring, any atom of any of the fused rings or spirocyclic rings while obeying the rules of chemical valency. Where a ring, fused rings, or spirocyclic rings contain one or more ring heteroatoms and the ring, fused rings, or spirocyclic rings are shown with one more floating substituents (including, but not limited to, points of attachment to the remainder of the molecule), the floating substituents may be bonded to the heteroatoms. Where the ring heteroatoms are shown bound to one or more hydrogens (e.g. a ring nitrogen with two bonds to ring atoms and a third bond to a hydrogen) in the structure or formula with the floating substituent, when the heteroatom is bonded to the floating substituent, the substituent will be understood to replace the hydrogen, while obeying the rules of chemical valency.

[0043] Two or more substituents may optionally be joined to form aryl, heteroaryl, cycloalkyl, or heterocycloalkyl groups. Such so-called ring-forming substituents are typically, though not necessarily, found attached to a cyclic base structure. In one embodiment, the ring-forming substituents are attached to adjacent members of the base structure. For example, two ring- forming substituents attached to adjacent members of a cyclic base structure create a fused ring structure. In another embodiment, the ring-forming substituents are attached to a single member of the base structure. For example, two ring-forming substituents attached to a single member of a cyclic base structure create a spirocyclic structure. In yet another embodiment, the ring- forming substituents are attached to non-adjacent members of the base structure. [0044] Two of the substituents on adjacent atoms of the aryl or heteroaryl ring may optionally form a ring of the formula -T-C(0)-(CRR') q -U-, wherein T and U are independently - R-, -0-, - CRR'-, or a single bond, and q is an integer of from 0 to 3. Alternatively, two of the substituents on adjacent atoms of the aryl or heteroaryl ring may optionally be replaced with a substituent of the formula -A-(CH 2 ) r -B-, wherein A and B are independently -CRR'-, -0-, - R-, -S-, -S(O) -, - S(0) 2 -, -S(0) 2 R'-, or a single bond, and r is an integer of from 1 to 4. One of the single bonds of the new ring so formed may optionally be replaced with a double bond. Alternatively, two of the substituents on adjacent atoms of the aryl or heteroaryl ring may optionally be replaced with a substituent of the formula -(CRR')s-X'- (C"R"R"')d-, where s and d are independently integers of from 0 to 3, and X' is -0-, - R'-, -S-, -S(O)-, -S(0) 2 -, or -S(0) 2 R'-. The substituents R, R', R", and R'" are preferably independently selected from hydrogen, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, and substituted or unsubstituted heteroaryl.

[0045] As used herein, the terms "heteroatom" or "ring heteroatom" are meant to include oxygen (O), nitrogen (N), sulfur (S), phosphorus (P), Boron (B), and silicon (Si).

[0046] A "substituent group," as used herein, means a group selected from the following moieties: (A) oxo, halogen, -CCb, -CBr 3 , -CF 3 , -CI 3 , -CHCb, -CHBr 2 , -CHF 2 , -CHI 2 , -CH 2 C1, -CH 2 Br, -CH 2 F, -CH 2 I, -CN, -OH, - H 2 , -COOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC(0) HNH 2 , - HC(0) H 2 , - HS0 2 H, - HC(0)H, - HC(0)OH, -NHOH, -OCCb, -OCF 3 , -OCBr 3 , -OCI 3 ,-OCHCl 2 , -OCHBr 2 , -OCHI 2 , -OCHF 2 , -OCH 2 Cl, - OCH 2 Br, -OCH 2 F, -OCH 2 I, -N 3 , unsubstituted alkyl (e.g., C1-C20, C1-C12, Ci-C 8 , Ci-C 6 , Ci-

C 4 , or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 20 membered, 2 to 12 membered, 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 10 , C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 10 membered, 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered), and

(B) alkyl (e.g., C1-C20, C1-C12, Ci-C 8 , Ci-C 6 , Ci-C 4 , or C1-C2), heteroalkyl (e.g., 2 to 20 membered, 2 to 12 membered, 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), cycloalkyl (e.g., C 3 -C 10 , C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), heterocycloalkyl (e.g., 3 to 10 membered, 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), aryl (e.g., Ce-Cu, C 6 -Cio, or phenyl), or heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6

membered), substituted with at least one substituent selected from:

(i) oxo,

halogen, -CCb, -CBr 3 , -CF 3 , -Cb, -CHCb, -CHBr 2 , -CHF 2 , -CHI 2 , -CH 2 C1, -CH 2 Br, -CH 2 F, -CH 2 I, -CN, -OH, -NH 2 , -COOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC(0)NHNH 2 , -NHC(0)NH 2 , -NHS0 2 H, -NHC(0)H,

-NHC(0)OH, -NHOH, -OCCb, -OCF 3 , -OCBr 3 , -OCI 3 ,-OCHCb, -OCHBr 2 , -OCHI 2 , -O CHF 2 , -OCH 2 Cl, -OCH 2 Br, -OCH 2 F, -OCH 2 I, -N 3 , unsubstituted alkyl (e.g., C1-C20, Ci-

Ci2, Ci-C 8 , Ci-C 6 , Ci-C 4 , or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 20 membered, 2 to 12 membered, 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 10 , C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5- C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 10 membered, 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl

(e.g., Ce-Cu, C5-C10, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered), and

(ii) alkyl (e.g., C1-C20, C1-C12, Ci-C 8 , Ci-C 6 , Ci-C 4 , or C1-C2), heteroalkyl (e.g., 2 to 20 membered, 2 to 12 membered, 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), cycloalkyl (e.g., C3-C10, C3-C8, C3-C6, C4-C6, or C5- C 6 ), heterocycloalkyl (e.g., 3 to 10 membered, 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered), substituted with at least one substituent selected from:

(a) oxo, halogen, -CCI3, -CBr 3 , -CF 3 , -CI3, -CHCI2, -CHBr 2 , -CHF 2 , -CHI 2 , -CH2CI, -CH 2 Br, -CH 2 F, -CH 2 I, -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -SO3H, -S0 4 H, -SO2NH2, -NHNH2, -ONH2, -NHC(0)NHNH 2 ,

-NHC(0)NH 2 , -NHSO2H, -NHC(0)H,

-NHC(0)OH, -NHOH, -OCCI3, -OCF3, -OCBr 3 , -OCI 3 ,-OCHCl 2 , -OCHBr 2 , -OCHI2, -OCHF2, -OCH2CI, -OCH 2 Br, -OCH2F, -OCH2I, -N 3 , unsubstituted alkyl (e.g., Ci- C20, C1-C12, Ci-Cs, Ci-Ce, C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 20 membered, 2 to 12 membered, 2 to 8 membered, 2 to 6 membered, 4 to 6 membered,

2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C10, C3-C8, C3-C6, C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 10 membered, 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered), and

(b) alkyl (e.g., C1-C20, C1-C12, Ci-C 8 , Ci-Ce, C1-C4, or C1-C2), heteroalkyl (e.g., 2 to 20 membered, 2 to 12 membered, 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), cycloalkyl (e.g., C3-C10, C3-C 8 , C3-C6, C4-C6, or C5-G5), heterocycloalkyl (e.g., 3 to 10 membered, 3 to 8 membered,

3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered), substituted with at least one substituent selected from: oxo,

halogen, -CCI3, -CBr 3 , -CF 3 , -CI3, -CHCI2, -CHBr 2 , -CHF 2 , -CHI 2 , -CH2CI, -CH 2 Br, - CH 2 F, -CH2I, -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -SO3H, -S0 4 H, -SO2N H 2 , -NHNH2, -ONH2, -NHC(0)NHNH 2 , -NHC(0)NH 2 , -NHSO2H, -NHC(0)H, -NHC(0)OH, -NHOH, -OCCI3, -OCF3, -OCBr 3 , -OCI 3 ,-OCHCl 2 , -OCHBr 2 , -OCHI2, -OCHF2, -OCH2CI, -OCH 2 Br, -OCH2F, -OCH2I, -N 3 , unsubstituted alkyl (e.g., Ci- C20, C1-C12, Ci-Ce, Ci-Ce, C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 20 membered, 2 to 12 membered, 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C10, C 3 -C 8 , C3-C6, C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 10 membered, 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0047] A "size-limited substituent" or " size-limited substituent group," as used herein, means a group selected from all of the substituents described above for a "substituent group," wherein each substituted or unsubstituted alkyl is a substituted or unsubstituted C1-C20 alkyl, each substituted or unsubstituted heteroalkyl is a substituted or unsubstituted 2 to 20 membered heteroalkyl, each substituted or unsubstituted cycloalkyl is a substituted or unsubstituted C3-C8 cycloalkyl, each substituted or unsubstituted heterocycloalkyl is a substituted or unsubstituted 3 to 8 membered heterocycloalkyl, each substituted or unsubstituted aryl is a substituted or unsubstituted C 6 -Cio aryl, and each substituted or unsubstituted heteroaryl is a substituted or unsubstituted 5 to 10 membered heteroaryl. [0048] A "lower substituent" or " lower substituent group," as used herein, means a group selected from all of the substituents described above for a "substituent group," wherein each substituted or unsubstituted alkyl is a substituted or unsubstituted Ci-Cs alkyl, each substituted or unsubstituted heteroalkyl is a substituted or unsubstituted 2 to 8 membered heteroalkyl, each substituted or unsubstituted cycloalkyl is a substituted or unsubstituted C3-C7 cycloalkyl, each substituted or unsubstituted heterocycloalkyl is a substituted or unsubstituted 3 to 7 membered heterocycloalkyl, each substituted or unsubstituted aryl is a substituted or unsubstituted C 6 -Cio aryl, and each substituted or unsubstituted heteroaryl is a substituted or unsubstituted 5 to 9 membered heteroaryl.

[0049] In some embodiments, each substituted group described in the compounds herein is substituted with at least one substituent group. More specifically, in some embodiments, each substituted alkyl, substituted heteroalkyl, substituted cycloalkyl, substituted heterocycloalkyl, substituted aryl, substituted heteroaryl, substituted alkylene, substituted heteroalkylene, substituted cycloalkylene, substituted heterocycloalkylene, substituted arylene, and/or substituted heteroarylene described in the compounds herein are substituted with at least one substituent group. In other embodiments, at least one or all of these groups are substituted with at least one size-limited substituent group. In other embodiments, at least one or all of these groups are substituted with at least one lower substituent group. [0050] In other embodiments of the compounds herein, each substituted or unsubstituted alkyl may be a substituted or unsubstituted C1-C20 alkyl, each substituted or unsubstituted heteroalkyl is a substituted or unsubstituted 2 to 20 membered heteroalkyl, each substituted or unsubstituted cycloalkyl is a substituted or unsubstituted C3-C8 cycloalkyl, each substituted or unsubstituted heterocycloalkyl is a substituted or unsubstituted 3 to 8 membered heterocycloalkyl, each substituted or unsubstituted aryl is a substituted or unsubstituted C 6 -Cio aryl, and/or each substituted or unsubstituted heteroaryl is a substituted or unsubstituted 5 to 10 membered heteroaryl. In some embodiments of the compounds herein, each substituted or unsubstituted alkylene is a substituted or unsubstituted C1-C20 alkylene, each substituted or unsubstituted heteroalkylene is a substituted or unsubstituted 2 to 20 membered heteroalkylene, each substituted or unsubstituted cycloalkylene is a substituted or unsubstituted C3-C8 cycloalkylene, each substituted or unsubstituted heterocycloalkylene is a substituted or unsubstituted 3 to 8 membered heterocycloalkylene, each substituted or unsubstituted arylene is a substituted or unsubstituted C 6 -Cio arylene, and/or each substituted or unsubstituted heteroaryl ene is a substituted or unsubstituted 5 to 10 membered heteroaryl ene.

[0051] In some embodiments, each substituted or unsubstituted alkyl is a substituted or unsubstituted Ci-Cs alkyl, each substituted or unsubstituted heteroalkyl is a substituted or unsubstituted 2 to 8 membered heteroalkyl, each substituted or unsubstituted cycloalkyl is a substituted or unsubstituted C3-C7 cycloalkyl, each substituted or unsubstituted heterocycloalkyl is a substituted or unsubstituted 3 to 7 membered heterocycloalkyl, each substituted or unsubstituted aryl is a substituted or unsubstituted C 6 -Cio aryl, and/or each substituted or unsubstituted heteroaryl is a substituted or unsubstituted 5 to 9 membered heteroaryl. In some embodiments, each substituted or unsubstituted alkylene is a substituted or unsubstituted Ci-Cs alkylene, each substituted or unsubstituted heteroalkylene is a substituted or unsubstituted 2 to 8 membered heteroalkylene, each substituted or unsubstituted cycloalkylene is a substituted or unsubstituted C3-C7 cycloalkylene, each substituted or unsubstituted heterocycloalkylene is a substituted or unsubstituted 3 to 7 membered heterocycloalkylene, each substituted or unsubstituted arylene is a substituted or unsubstituted C 6 -Cio arylene, and/or each substituted or unsubstituted heteroarylene is a substituted or unsubstituted 5 to 9 membered heteroarylene. In some embodiments, the compound is a chemical species set forth in the Examples section, figures, or tables below.

[0052] In embodiments, a substituted or unsubstituted moiety (e.g., substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, substituted or unsubstituted heteroaryl, substituted or unsubstituted alkylene, substituted or unsubstituted heteroalkylene, substituted or unsubstituted cycloalkylene, substituted or unsubstituted heterocycloalkylene, substituted or unsubstituted arylene, and/or substituted or unsubstituted heteroarylene) is unsubstituted (e.g., is an unsubstituted alkyl, unsubstituted heteroalkyl, unsubstituted cycloalkyl, unsubstituted heterocycloalkyl, unsubstituted aryl, unsubstituted heteroaryl, unsubstituted alkylene, unsubstituted heteroalkylene, unsubstituted cycloalkylene, unsubstituted heterocycloalkylene, unsubstituted arylene, and/or unsubstituted heteroarylene, respectively). In embodiments, a substituted or unsubstituted moiety (e.g., substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, substituted or unsubstituted heteroaryl, substituted or unsubstituted alkylene, substituted or unsubstituted heteroalkylene, substituted or unsubstituted cycloalkylene, substituted or unsubstituted heterocycloalkylene, substituted or unsubstituted arylene, and/or substituted or unsubstituted heteroarylene) is substituted (e.g., is a substituted alkyl, substituted heteroalkyl, substituted cycloalkyl, substituted heterocycloalkyl, substituted aryl, substituted heteroaryl, substituted alkylene, substituted heteroalkylene, substituted cycloalkylene, substituted heterocycloalkylene, substituted arylene, and/or substituted heteroarylene, respectively).

[0053] In embodiments, a substituted moiety (e.g., substituted alkyl, substituted heteroalkyl, substituted cycloalkyl, substituted heterocycloalkyl, substituted aryl, substituted heteroaryl, substituted alkylene, substituted heteroalkylene, substituted cycloalkylene, substituted heterocycloalkylene, substituted arylene, and/or substituted heteroarylene) is substituted with at least one substituent group, wherein if the substituted moiety is substituted with a plurality of substituent groups, each substituent group may optionally be different. In embodiments, if the substituted moiety is substituted with a plurality of substituent groups, each substituent group is different.

[0054] In embodiments, a substituted moiety (e.g., substituted alkyl, substituted heteroalkyl, substituted cycloalkyl, substituted heterocycloalkyl, substituted aryl, substituted heteroaryl, substituted alkylene, substituted heteroalkylene, substituted cycloalkylene, substituted heterocycloalkylene, substituted arylene, and/or substituted heteroarylene) is substituted with at least one size-limited substituent group, wherein if the substituted moiety is substituted with a plurality of size-limited substituent groups, each size-limited substituent group may optionally be different. In embodiments, if the substituted moiety is substituted with a plurality of size-limited substituent groups, each size-limited substituent group is different. [0055] In embodiments, a substituted moiety (e.g., substituted alkyl, substituted heteroalkyl, substituted cycloalkyl, substituted heterocycloalkyl, substituted aryl, substituted heteroaryl, substituted alkylene, substituted heteroalkyl ene, substituted cycloalkylene, substituted heterocycloalkylene, substituted arylene, and/or substituted heteroarylene) is substituted with at least one lower substituent group, wherein if the substituted moiety is substituted with a plurality of lower substituent groups, each lower substituent group may optionally be different. In embodiments, if the substituted moiety is substituted with a plurality of lower substituent groups, each lower substituent group is different.

[0056] In embodiments, a substituted moiety (e.g., substituted alkyl, substituted heteroalkyl, substituted cycloalkyl, substituted heterocycloalkyl, substituted aryl, substituted heteroaryl, substituted alkylene, substituted heteroalkyl ene, substituted cycloalkylene, substituted heterocycloalkylene, substituted arylene, and/or substituted heteroarylene) is substituted with at least one substituent group, size-limited substituent group, or lower substituent group; wherein if the substituted moiety is substituted with a plurality of groups selected from substituent groups, size-limited substituent groups, and lower substituent groups; each substituent group, size- limited substituent group, and/or lower substituent group may optionally be different. In embodiments, if the substituted moiety is substituted with a plurality of groups selected from substituent groups, size-limited substituent groups, and lower substituent groups; each substituent group, size-limited substituent group, and/or lower substituent group is different. [0057] Certain compounds of the present invention possess asymmetric carbon atoms (optical or chiral centers) or double bonds; the enantiomers, racemates, diastereomers, tautomers, geometric isomers, stereoisometric forms that may be defined, in terms of absolute

stereochemistry, as (R)-or (S)- or, as (D)- or (L)- for amino acids, and individual isomers are encompassed within the scope of the present invention. The compounds of the present invention do not include those that are known in art to be too unstable to synthesize and/or isolate. The present invention is meant to include compounds in racemic and optically pure forms. Optically active (R)- and (S)-, or (D)- and (L)-isomers may be prepared using chiral synthons or chiral reagents, or resolved using conventional techniques. When the compounds described herein contain olefinic bonds or other centers of geometric asymmetry, and unless specified otherwise, it is intended that the compounds include both E and Z geometric isomers.

[0058] As used herein, the term "isomers" refers to compounds having the same number and kind of atoms, and hence the same molecular weight, but differing in respect to the structural arrangement or configuration of the atoms. [0059] The term "tautomer," as used herein, refers to one of two or more structural isomers which exist in equilibrium and which are readily converted from one isomeric form to another.

[0060] It will be apparent to one skilled in the art that certain compounds of this invention may exist in tautomeric forms, all such tautomeric forms of the compounds being within the scope of the invention.

[0061] Unless otherwise stated, structures depicted herein are also meant to include all stereochemical forms of the structure; i.e., the R and S configurations for each asymmetric center. Therefore, single stereochemical isomers as well as enantiomeric and diastereomeric mixtures of the present compounds are within the scope of the invention. [0062] Unless otherwise stated, structures depicted herein are also meant to include

compounds which differ only in the presence of one or more isotopically enriched atoms. For example, compounds having the present structures except for the replacement of a hydrogen by a deuterium or tritium, or the replacement of a carbon by 13 C- or 14 C-enriched carbon are within the scope of this invention. [0063] The compounds of the present invention may also contain unnatural proportions of atomic isotopes at one or more of the atoms that constitute such compounds. For example, the compounds may be radiolabeled with radioactive isotopes, such as for example tritium ( 3 H), iodine-125 ( 125 I), or carbon-14 ( 14 C). All isotopic variations of the compounds of the present invention, whether radioactive or not, are encompassed within the scope of the present invention. [0064] It should be noted that throughout the application that alternatives are written in

Markush groups, for example, each amino acid position that contains more than one possible amino acid. It is specifically contemplated that each member of the Markush group should be considered separately, thereby comprising another embodiment, and the Markush group is not to be read as a single unit. [0065] "Analog," or "analogue" is used in accordance with its plain ordinary meaning within Chemistry and Biology and refers to a chemical compound that is structurally similar to another compound (i.e., a so-called "reference" compound) but differs in composition, e.g., in the replacement of one atom by an atom of a different element, or in the presence of a particular functional group, or the replacement of one functional group by another functional group, or the absolute stereochemistry of one or more chiral centers of the reference compound. Accordingly, an analog is a compound that is similar or comparable in function and appearance but not in structure or origin to a reference compound. [0066] The terms "a" or "an," as used in herein means one or more. In addition, the phrase "substituted with a[n]," as used herein, means the specified group may be substituted with one or more of any or all of the named substituents. For example, where a group, such as an alkyl or heteroaryl group, is "substituted with an unsubstituted C1-C20 alkyl, or unsubstituted 2 to 20 membered heteroalkyl," the group may contain one or more unsubstituted C1-C20 alkyls, and/or one or more unsubstituted 2 to 20 membered heteroalkyls.

[0067] Moreover, where a moiety is substituted with an R substituent, the group may be referred to as "R-substituted." Where a moiety is R-substituted, the moiety is substituted with at least one R substituent and each R substituent is optionally different. Where a particular R group is present in the description of a chemical genus (such as Formula (I)), a Roman alphabetic symbol may be used to distinguish each appearance of that particular R group. For example, where multiple R 13 substituents are present, each R 13 substituent may be distinguished as R 13A , R 13B , R 13C , R 13D , etc., wherein each of R 13A , R 13B , R 13C , R 13D , etc. is defined within the scope of the definition of R 13 and optionally differently. [0068] Description of compounds of the present invention are limited by principles of chemical bonding known to those skilled in the art. Accordingly, where a group may be substituted by one or more of a number of substituents, such substitutions are selected so as to comply with principles of chemical bonding and to give compounds which are not inherently unstable and/or would be known to one of ordinary skill in the art as likely to be unstable under ambient conditions, such as aqueous, neutral, and several known physiological conditions. For example, a heterocycloalkyl or heteroaryl is attached to the remainder of the molecule via a ring heteroatom in compliance with principles of chemical bonding known to those skilled in the art thereby avoiding inherently unstable compounds.

[0069] The term "pharmaceutically acceptable salts" is meant to include salts of the active compounds that are prepared with relatively nontoxic acids or bases, depending on the particular substituents found on the compounds described herein. When compounds of the present invention contain relatively acidic functionalities, base addition salts can be obtained by contacting the neutral form of such compounds with a sufficient amount of the desired base, either neat or in a suitable inert solvent. Examples of pharmaceutically acceptable base addition salts include sodium, potassium, calcium, ammonium, organic amino, or magnesium salt, or a similar salt. When compounds of the present invention contain relatively basic functionalities, acid addition salts can be obtained by contacting the neutral form of such compounds with a sufficient amount of the desired acid, either neat or in a suitable inert solvent. Examples of pharmaceutically acceptable acid addition salts include those derived from inorganic acids like hydrochloric, hydrobromic, nitric, carbonic, monohydrogencarbonic, phosphoric, monohydrogenphosphonc, dihydrogenphosphonc, sulfuric, monohydrogensulfuric, hydriodic, or phosphorous acids and the like, as well as the salts derived from relatively nontoxic organic acids like acetic, propionic, isobutyric, maleic, malonic, benzoic, succinic, suberic, fumaric, lactic, mandelic, phthalic, benzenesulfonic, p-tolyl sulfonic, citric, tartaric, oxalic,

methanesulfonic, and the like. Also included are salts of amino acids such as arginate and the like, and salts of organic acids like glucuronic or galactunoric acids and the like (see, for example, Berge et al, "Pharmaceutical Salts", Journal of Pharmaceutical Science, 1977, 66, 1- 19). Certain specific compounds of the present invention contain both basic and acidic functionalities that allow the compounds to be converted into either base or acid addition salts.

[0070] Thus, the compounds of the present invention may exist as salts, such as with pharmaceutically acceptable acids. The present invention includes such salts. Non-limiting examples of such salts include hydrochlorides, hydrobromides, phosphates, sulfates,

methanesulfonates, nitrates, maleates, acetates, citrates, fumarates, proprionates, tartrates (e.g., (+)-tartrates, (-)-tartrates, or mixtures thereof including racemic mixtures), succinates, benzoates, and salts with amino acids such as glutamic acid, and quaternary ammonium salts (e.g. methyl iodide, ethyl iodide, and the like). These salts may be prepared by methods known to those skilled in the art.

[0071] The neutral forms of the compounds are preferably regenerated by contacting the salt with a base or acid and isolating the parent compound in the conventional manner. The parent form of the compound may differ from the various salt forms in certain physical properties, such as solubility in polar solvents.

[0072] In addition to salt forms, the present invention provides compounds, which are in a prodrug form. Prodrugs of the compounds described herein are those compounds that readily undergo chemical changes under physiological conditions to provide the compounds of the present invention. Prodrugs of the compounds described herein may be converted in vivo after administration. Additionally, prodrugs can be converted to the compounds of the present invention by chemical or biochemical methods in an ex vivo environment, such as, for example, when contacted with a suitable enzyme or chemical reagent. [0073] Certain compounds of the present invention can exist in unsolvated forms as well as solvated forms, including hydrated forms. In general, the solvated forms are equivalent to unsolvated forms and are encompassed within the scope of the present invention. Certain compounds of the present invention may exist in multiple crystalline or amorphous forms. In general, all physical forms are equivalent for the uses contemplated by the present invention and are intended to be within the scope of the present invention.

[0074] "Pharmaceutically acceptable excipient" and "pharmaceutically acceptable carrier" refer to a substance that aids the administration of an active agent to and absorption by a subject and can be included in the compositions of the present invention without causing a significant adverse toxicological effect on the patient. Non-limiting examples of pharmaceutically acceptable excipients include water, NaCl, normal saline solutions, lactated Ringer's, normal sucrose, normal glucose, binders, fillers, disintegrants, lubricants, coatings, sweeteners, flavors, salt solutions (such as Ringer's solution), alcohols, oils, gelatins, carbohydrates such as lactose, amylose or starch, fatty acid esters, hydroxymethycellulose, polyvinyl pyrrolidine, and colors, and the like. Such preparations can be sterilized and, if desired, mixed with auxiliary agents such as lubricants, preservatives, stabilizers, wetting agents, emulsifiers, salts for influencing osmotic pressure, buffers, coloring, and/or aromatic substances and the like that do not deleteriously react with the compounds of the invention. One of skill in the art will recognize that other

pharmaceutical excipients are useful in the present invention.

[0075] The term "preparation" is intended to include the formulation of the active compound with encapsulating material as a carrier providing a capsule in which the active component with or without other carriers, is surrounded by a carrier, which is thus in association with it.

Similarly, cachets and lozenges are included. Tablets, powders, capsules, pills, cachets, and lozenges can be used as solid dosage forms suitable for oral administration.

[0076] "Contacting" is used in accordance with its plain ordinary meaning and refers to the process of allowing at least two distinct species (e.g. chemical compounds including

biomolecules or cells) to become sufficiently proximal to react, interact or physically touch. It should be appreciated; however, the resulting reaction product can be produced directly from a reaction between the added reagents or from an intermediate from one or more of the added reagents that can be produced in the reaction mixture.

[0077] The term "contacting" may include allowing two species to react, interact, or physically touch, wherein the two species may be a compound as described herein and a protein or enzyme. In some embodiments contacting includes allowing a compound described herein to interact with a protein or enzyme that is involved in a signaling pathway.

[0078] The terms "disease" or "condition" refer to a state of being or health status of a patient or subject capable of being treated with the compounds or methods provided herein. The disease may be a cancer. In some further instances, "cancer" refers to human cancers and carcinomas, sarcomas, adenocarcinomas, lymphomas, leukemias, etc., including solid and lymphoid cancers, kidney, breast, lung, bladder, colon, ovarian, prostate, pancreas, stomach, brain, head and neck, skin, uterine, testicular, glioma, esophagus, and liver cancer, including hepatocarcinoma, lymphoma, including B-acute lymphoblastic lymphoma, non-Hodgkin's lymphomas (e.g., Burkitt' s, Small Cell, and Large Cell lymphomas), Hodgkin's lymphoma, leukemia (including AML, ALL, and CML), or multiple myeloma.

[0079] As used herein, the term "cancer" refers to all types of cancer, neoplasm or malignant tumors found in mammals (e.g. humans), including leukemia, lymphomas, carcinomas and sarcomas. Exemplary cancers that may be treated with a compound or method provided herein include brain cancer, glioma, glioblastoma, neuroblastoma, prostate cancer, colorectal cancer, pancreatic cancer, cervical cancer, gastric cancer, ovarian cancer, lung cancer, and cancer of the head. Exemplary cancers that may be treated with a compound or method provided herein include cancer of the thyroid, endocrine system, brain, breast, cervix, colon, head & neck, liver, kidney, lung, non-small cell lung, melanoma, mesothelioma, ovary, sarcoma, stomach, uterus, Medulloblastoma, colorectal cancer, pancreatic cancer. Additional examples include, Hodgkin's Disease, Non-Hodgkin's Lymphoma, multiple myeloma, neuroblastoma, glioma, glioblastoma multiforme, ovarian cancer, rhabdomyosarcoma, primary thrombocytosis, primary

macroglobulinemia, primary brain tumors, cancer, malignant pancreatic insulanoma, malignant carcinoid, urinary bladder cancer, premalignant skin lesions, testicular cancer, lymphomas, thyroid cancer, neuroblastoma, esophageal cancer, genitourinary tract cancer, malignant hypercalcemia, endometrial cancer, adrenal cortical cancer, neoplasms of the endocrine or exocrine pancreas, medullary thyroid cancer, medullary thyroid carcinoma, melanoma, colorectal cancer, papillary thyroid cancer, hepatocellular carcinoma, or prostate cancer.

[0080] The term "leukemia" refers broadly to progressive, malignant diseases of the blood- forming organs and is generally characterized by a distorted proliferation and development of leukocytes and their precursors in the blood and bone marrow. Leukemia is generally clinically classified on the basis of (1) the duration and character of the disease-acute or chronic; (2) the type of cell involved; myeloid (myelogenous), lymphoid (lymphogenous), or monocytic; and (3) the increase or non-increase in the number abnormal cells in the blood-leukemic or aleukemic (subleukemic). Exemplary leukemias that may be treated with a compound or method provided herein include, for example, acute nonlymphocytic leukemia, chronic lymphocytic leukemia, acute granulocytic leukemia, chronic granulocytic leukemia, acute promyelocyte leukemia, adult T-cell leukemia, aleukemic leukemia, a leukocythemic leukemia, basophylic leukemia, blast cell leukemia, bovine leukemia, chronic myelocytic leukemia, leukemia cutis, embryonal leukemia, eosinophilic leukemia, Gross' leukemia, hairy-cell leukemia, hemoblastic leukemia, hemocytoblastic leukemia, histiocytic leukemia, stem cell leukemia, acute monocytic leukemia, leukopenic leukemia, lymphatic leukemia, lymphoblastic leukemia, lymphocytic leukemia, lymphogenous leukemia, lymphoid leukemia, lymphosarcoma cell leukemia, mast cell leukemia, megakaryocyte leukemia, micromyeloblastic leukemia, monocytic leukemia, myeloblastic leukemia, myelocytic leukemia, myeloid granulocytic leukemia, myelomonocytic leukemia, Naegeli leukemia, plasma cell leukemia, multiple myeloma, plasmacytic leukemia,

promyelocytic leukemia, Rieder cell leukemia, Schilling's leukemia, stem cell leukemia, subleukemic leukemia, or undifferentiated cell leukemia. [0081] As used herein, the term "lymphoma" refers to a group of cancers affecting

hematopoietic and lymphoid tissues. It begins in lymphocytes, the blood cells that are found primarily in lymph nodes, spleen, thymus, and bone marrow. Two main types of lymphoma are non-Hodgkin lymphoma and Hodgkin's disease. Hodgkin's disease represents approximately 15% of all diagnosed lymphomas. This is a cancer associated with Reed- Sternberg malignant B lymphocytes. Non-Hodgkin' s lymphomas (NHL) can be classified based on the rate at which cancer grows and the type of cells involved. There are aggressive (high grade) and indolent (low grade) types of NHL. Based on the type of cells involved, there are B-cell and T-cell NHLs. Exemplary B-cell lymphomas that may be treated with a compound or method provided herein include, but are not limited to, small lymphocytic lymphoma, Mantle cell lymphoma, follicular lymphoma, marginal zone lymphoma, extranodal (MALT) lymphoma, nodal (monocytoid B- cell) lymphoma, splenic lymphoma, diffuse large cell B-lymphoma, Burkitt's lymphoma, lymphoblastic lymphoma, immunoblastic large cell lymphoma, or precursor B-lymphoblastic lymphoma. Exemplary T-cell lymphomas that may be treated with a compound or method provided herein include, but are not limited to, cunateous T-cell lymphoma, peripheral T-cell lymphoma, anaplastic large cell lymphoma, mycosis fungoides, and precursor T-lymphoblastic lymphoma.

[0082] The term "sarcoma" generally refers to a tumor which is made up of a substance like the embryonic connective tissue and is generally composed of closely packed cells embedded in a fibrillar or homogeneous substance. Sarcomas that may be treated with a compound or method provided herein include a chondrosarcoma, fibrosarcoma, lymphosarcoma, melanosarcoma, myxosarcoma, osteosarcoma, Abemethy's sarcoma, adipose sarcoma, liposarcoma, alveolar soft part sarcoma, ameloblastic sarcoma, botryoid sarcoma, chloroma sarcoma, chorio carcinoma, embryonal sarcoma, Wilms' tumor sarcoma, endometrial sarcoma, stromal sarcoma, Ewing's sarcoma, fascial sarcoma, fibroblastic sarcoma, giant cell sarcoma, granulocytic sarcoma, Hodgkin's sarcoma, idiopathic multiple pigmented hemorrhagic sarcoma, immunoblastic sarcoma of B cells, lymphoma, immunoblastic sarcoma of T-cells, Jensen's sarcoma, Kaposi's sarcoma, Kupffer cell sarcoma, angiosarcoma, leukosarcoma, malignant mesenchymoma sarcoma, parosteal sarcoma, reticulocytic sarcoma, Rous sarcoma, serocystic sarcoma, synovial sarcoma, or telangiectaltic sarcoma.

[0083] The term "melanoma" is taken to mean a tumor arising from the melanocytic system of the skin and other organs. Melanomas that may be treated with a compound or method provided herein include, for example, acral-lentiginous melanoma, amelanotic melanoma, benign juvenile melanoma, Cloudman's melanoma, S91 melanoma, Harding-Passey melanoma, juvenile melanoma, lentigo maligna melanoma, malignant melanoma, nodular melanoma, subungal melanoma, or superficial spreading melanoma.

[0084] The term "carcinoma" refers to a malignant new growth made up of epithelial cells tending to infiltrate the surrounding tissues and give rise to metastases. Exemplary carcinomas that may be treated with a compound or method provided herein include, for example, medullary thyroid carcinoma, familial medullary thyroid carcinoma, acinar carcinoma, acinous carcinoma, adenocystic carcinoma, adenoid cystic carcinoma, carcinoma adenomatosum, carcinoma of adrenal cortex, alveolar carcinoma, alveolar cell carcinoma, basal cell carcinoma, carcinoma basocellulare, basaloid carcinoma, basosquamous cell carcinoma, bronchioalveolar carcinoma, bronchiolar carcinoma, bronchogenic carcinoma, cerebriform carcinoma, cholangiocellular carcinoma, chorionic carcinoma, colloid carcinoma, comedo carcinoma, corpus carcinoma, cribriform carcinoma, carcinoma en cuirasse, carcinoma cutaneum, cylindrical carcinoma, cylindrical cell carcinoma, duct carcinoma, carcinoma durum, embryonal carcinoma,

encephaloid carcinoma, epiermoid carcinoma, carcinoma epitheliale adenoides, exophytic carcinoma, carcinoma ex ulcere, carcinoma fibrosum, gelatiniforni carcinoma, gelatinous carcinoma, giant cell carcinoma, carcinoma gigantocellulare, glandular carcinoma, granulosa cell carcinoma, hair-matrix carcinoma, hematoid carcinoma, hepatocellular carcinoma, Hurthle cell carcinoma, hyaline carcinoma, hypernephroid carcinoma, infantile embryonal carcinoma, carcinoma in situ, intraepidermal carcinoma, intraepithelial carcinoma, Krompecher's carcinoma, Kulchitzky-cell carcinoma, large-cell carcinoma, lenticular carcinoma, carcinoma lenticulare, lipomatous carcinoma, lymphoepithelial carcinoma, carcinoma medullare, medullary carcinoma, melanotic carcinoma, carcinoma molle, mucinous carcinoma, carcinoma muciparum, carcinoma mucocellulare, mucoepidermoid carcinoma, carcinoma mucosum, mucous carcinoma, carcinoma myxomatodes, nasopharyngeal carcinoma, oat cell carcinoma, carcinoma ossificans, osteoid carcinoma, papillary carcinoma, periportal carcinoma, preinvasive carcinoma, prickle cell carcinoma, pultaceous carcinoma, renal cell carcinoma of kidney, reserve cell carcinoma, carcinoma sarcomatodes, schneiderian carcinoma, scirrhous carcinoma, carcinoma scroti, signet- ring cell carcinoma, carcinoma simplex, small-cell carcinoma, solanoid carcinoma, spheroidal cell carcinoma, spindle cell carcinoma, carcinoma spongiosum, squamous carcinoma, squamous cell carcinoma, string carcinoma, carcinoma telangiectaticum, carcinoma telangiectodes, transitional cell carcinoma, carcinoma tuberosum, tuberous carcinoma, verrucous carcinoma, or carcinoma villosum.

[0085] The terms "treating", or "treatment" refers to any indicia of success in the therapy or amelioration of an injury, disease, pathology or condition, including any objective or subjective parameter such as abatement; remission; diminishing of symptoms or making the injury, pathology or condition more tolerable to the patient; slowing in the rate of degeneration or decline; making the final point of degeneration less debilitating; improving a patient's physical or mental well-being. The treatment or amelioration of symptoms can be based on objective or subjective parameters; including the results of a physical examination, neuropsychiatric exams, and/or a psychiatric evaluation. The term "treating" and conjugations thereof, may include prevention of an injury, pathology, condition, or disease. In embodiments, treating is preventing. In embodiments, treating does not include preventing.

[0086] "Patient" or "subject in need thereof refers to a living organism suffering from or prone to a disease or condition that can be treated by administration of a pharmaceutical composition as provided herein. Non-limiting examples include humans, other mammals, bovines, rats, mice, dogs, monkeys, goat, sheep, cows, deer, and other non-mammalian animals. In some embodiments, a patient is human.

[0087] A "effective amount" is an amount sufficient for a compound to accomplish a stated purpose relative to the absence of the compound (e.g. achieve the effect for which it is administered, treat a disease, reduce enzyme activity, increase enzyme activity, reduce a signaling pathway, or reduce one or more symptoms of a disease or condition). An example of an "effective amount" is an amount sufficient to contribute to the treatment, prevention, or reduction of a symptom or symptoms of a disease, which could also be referred to as a

"therapeutically effective amount." A "reduction" of a symptom or symptoms (and grammatical equivalents of this phrase) means decreasing of the severity or frequency of the symptom(s), or elimination of the symptom(s). A "prophylactically effective amount" of a drug is an amount of a drug that, when administered to a subject, will have the intended prophylactic effect, e.g., preventing or delaying the onset (or reoccurrence) of an injury, disease, pathology or condition, or reducing the likelihood of the onset (or reoccurrence) of an injury, disease, pathology, or condition, or their symptoms. The full prophylactic effect does not necessarily occur by administration of one dose, and may occur only after administration of a series of doses. Thus, a prophylactically effective amount may be administered in one or more administrations. An "activity decreasing amount," as used herein, refers to an amount of antagonist required to decrease the activity of an enzyme relative to the absence of the antagonist. A "function disrupting amount," as used herein, refers to the amount of antagonist required to disrupt the function of an enzyme or protein relative to the absence of the antagonist. The exact amounts will depend on the purpose of the treatment, and will be ascertainable by one skilled in the art using known techniques {see, e.g., Lieberman, Pharmaceutical Dosage Forms (vols. 1-3, 1992); Lloyd, The Art, Science and Technology of Pharmaceutical Compounding (1999); Pickar, Dosage Calculations (1999); and Remington: The Science and Practice of Pharmacy, 20th Edition, 2003, Gennaro, Ed., Lippincott, Williams & Wilkins).

[0088] For any compound described herein, the therapeutically effective amount can be initially determined from cell culture assays. Target concentrations will be those concentrations of active compound(s) that are capable of achieving the methods described herein, as measured using the methods described herein or known in the art.

[0089] As is well known in the art, therapeutically effective amounts for use in humans can also be determined from animal models. For example, a dose for humans can be formulated to achieve a concentration that has been found to be effective in animals. The dosage in humans can be adjusted by monitoring compounds effectiveness and adjusting the dosage upwards or downwards, as described above. Adjusting the dose to achieve maximal efficacy in humans based on the methods described above and other methods is well within the capabilities of the ordinarily skilled artisan.

[0090] Dosages may be varied depending upon the requirements of the patient and the compound being employed. The dose administered to a patient, in the context of the present invention should be sufficient to effect a beneficial therapeutic response in the patient over time. The size of the dose also will be determined by the existence, nature, and extent of any adverse side-effects. Determination of the proper dosage for a particular situation is within the skill of the practitioner. Generally, treatment is initiated with smaller dosages which are less than the optimum dose of the compound. Thereafter, the dosage is increased by small increments until the optimum effect under circumstances is reached. Dosage amounts and intervals can be adjusted individually to provide levels of the administered compound effective for the particular clinical indication being treated. This will provide a therapeutic regimen that is commensurate with the severity of the individual's disease state. [0091] As used herein, the term "administering" means oral administration, administration as a suppository, topical contact, intravenous, intraperitoneal, intramuscular, intralesional, intrathecal, intranasal or subcutaneous administration, or the implantation of a slow-release device, e.g., a mini-osmotic pump, to a subject. Administration is by any route, including parenteral and transmucosal (e.g., buccal, sublingual, palatal, gingival, nasal, vaginal, rectal, or transdermal) compatible with the preparation. Parenteral administration includes, e.g., intravenous, intramuscular, intra-arteriole, intradermal, subcutaneous, intraperitoneal, intraventricular, and intracranial. Other modes of delivery include, but are not limited to, the use of liposomal formulations, intravenous infusion, transdermal patches, etc. [0092] "Co-administer" it is meant that a composition described herein is administered at the same time, just prior to, or just after the administration of one or more additional therapies. The compounds of the invention can be administered alone or can be coadministered to the patient. Coadministration is meant to include simultaneous or sequential administration of the

compounds individually or in combination (more than one compound). Thus, the preparations can also be combined, when desired, with other active substances (e.g. to reduce metabolic degradation). The compositions of the present invention can be delivered transdermally, by a topical route, or formulated as applicator sticks, solutions, suspensions, emulsions, gels, creams, ointments, pastes, jellies, paints, powders, and aerosols.

[0093] A "cell" as used herein, refers to a cell carrying out metabolic or other function sufficient to preserve or replicate its genomic DNA. A cell can be identified by well-known methods in the art including, for example, presence of an intact membrane, staining by a particular dye, ability to produce progeny or, in the case of a gamete, ability to combine with a second gamete to produce a viable offspring. Cells may include prokaryotic and eukaroytic cells. Prokaryotic cells include but are not limited to bacteria. Eukaryotic cells include but are not limited to yeast cells and cells derived from plants and animals, for example mammalian, insect {e.g., spodoptera) and human cells. Cells may be useful when they are naturally nonadherent or have been treated not to adhere to surfaces, for example by trypsinization. In embodiments, the cell is a cancer cell. In embodiments, the cell is a melanoma cell. In In embodiments, the cell is a prostate cell. In embodiments, the cell is a prostate cancer cell. In embodiments, the cell is a lung cancer cell cell. In embodiments, the cell is a non-small lung cancer cell.

[0094] "Control" or "control experiment" is used in accordance with its plain ordinary meaning and refers to an experiment in which the subjects or reagents of the experiment are treated as in a parallel experiment except for omission of a procedure, reagent, or variable of the experiment. In some instances, the control is used as a standard of comparison in evaluating experimental effects. In some embodiments, a control is the measurement of the activity of a protein in the absence of a compound as described herein (including embodiments and examples).

[0095] The term "modulator" refers to a composition that increases or decreases the level or activity of a target molecule or the function of a target molecule or the physical state of the target of the molecule.

[0096] The term "modulate" is used in accordance with its plain ordinary meaning and refers to the act of changing or varying one or more properties. "Modulation" refers to the process of changing or varying one or more properties. For example, as applied to the effects of a modulator on a target protein, to modulate means to change by increasing or decreasing a property or function of the target molecule or the amount of the target molecule.

[0097] The term "associated" or "associated with" in the context of a substance or substance activity or function associated with a disease (e.g. a protein associated disease) means that the disease (e.g. cancer) is caused by (in whole or in part), or a symptom of the disease is caused by (in whole or in part) the substance or substance activity or function.

[0098] The term "aberrant" as used herein refers to different from normal. When used to describe enzymatic activity or protein function, aberrant refers to activity or function that is greater or less than a normal control or the average of normal non-diseased control samples. Aberrant activity may refer to an amount of activity that results in a disease, wherein returning the aberrant activity to a normal or non-disease-associated amount (e.g. by administering a compound or using a method as described herein), results in reduction of the disease or one or more disease symptoms.

[0099] The term "signaling pathway" as used herein refers to a series of interactions between cellular and optionally extra-cellular components (e.g. proteins, nucleic acids, small molecules, ions, lipids) that conveys a change in one component to one or more other components, which in turn may convey a change to additional components, which is optionally propagated to other signaling pathway components.

[0100] "Anti-cancer agent" or "anti-cancer drug" is used in accordance with its plain ordinary meaning and refers to a composition (e.g. compound, drug, antagonist, inhibitor, modulator) having antineoplastic properties or the ability to inhibit the growth or proliferation of cells. In some embodiments, an anti-cancer agent is a chemotherapeutic. In some embodiments, an anticancer agent is an agent approved by the FDA or similar regulatory agency of a country other than the USA, for treating cancer. Examples of anti-cancer agents include, but are not limited to MEK (e.g. MEK1, MEK2, or MEKl and MEK2) inhibitors (e.g. XL518, CI-1040, PD035901, selumetinib/ AZD6244, GSK1120212/ trametinib, GDC-0973, ARRY-162, ARRY-300,

AZD8330, PD0325901, U0126, PD98059, TAK-733, PD318088, AS703026, BAY 869766), alkylating agents (e.g., cyclophosphamide, ifosfamide, chlorambucil, busulfan, melphalan, mechlorethamine, uramustine, thiotepa, nitrosoureas, nitrogen mustards (e.g., mechloroethamine, cyclophosphamide, chlorambucil, meiphalan), ethylenimine and methylmelamines (e.g., hexamethlymelamine, thiotepa), alkyl sulfonates (e.g., busulfan), nitrosoureas (e.g., carmustine, lomusitne, semustine, streptozocin), triazenes (decarbazine)), anti-metabolites (e.g., 5- azathioprine, leucovorin, capecitabine, fludarabine, gemcitabine, pemetrexed, raltitrexed, folic acid analog (e.g., methotrexate), pyrimidine analogs (e.g., fluorouracil, floxouridine,

Cytarabine), purine analogs (e.g., mercaptopurine, thioguanine, pentostatin), etc.), plant alkaloids (e.g., vincristine, vinblastine, vinorelbine, vindesine, podophyllotoxin, paclitaxel, docetaxel, etc.), topoisomerase inhibitors (e.g., irinotecan, topotecan, amsacrine, etoposide (VP16), etoposide phosphate, teniposide, etc.), antitumor antibiotics (e.g., doxorubicin, adriamycin, daunorubicin, epirubicin, actinomycin, bleomycin, mitomycin, mitoxantrone, plicamycin, etc.), platinum-based compounds (e.g. cisplatin, oxaloplatin, carboplatin), anthracenedione (e.g., mitoxantrone), substituted urea (e.g., hydroxyurea), methyl hydrazine derivative (e.g., procarbazine), adrenocortical suppressant (e.g., mitotane, aminoglutethimide),

epipodophyllotoxins (e.g., etoposide), antibiotics (e.g., daunorubicin, doxorubicin, bleomycin), inhibitors of mitogen-activated protein kinase signaling (e.g. U0126, PD98059, PD184352, PD0325901, ARRY-142886, SB239063, SP600125, BAY 43-9006, wortmannin, or LY294002), mTOR inhibitors, antibodies (e.g., rituxan), 5-aza-2'-deoxycytidine, doxorubicin, vincristine, etoposide, gemcitabine, imatinib (Gleevec.RTM.), geldanamycin, 17-N-Allylamino-17- Demethoxygeldanamycin (17-AAG), bortezomib, trastuzumab, anastrozole; angiogenesis inhibitors; antiandrogen, antiestrogen; antisense oligonucleotides; apoptosis gene modulators; apoptosis regulators; BCR/ABL antagonists; bFGF inhibitor; bicalutamide; camptothecin derivatives; casein kinase inhibitors (ICOS); clomifene analogues; cytarabine dacliximab;

dexamethasone; estrogen agonists; estrogen antagonists; etanidazole; etoposide phosphate;

exemestane; fadrozole; finasteride; fludarabine; fiuorodaunorunicin hydrochloride; gadolinium texaphyrin; gallium nitrate; gelatinase inhibitors; gemcitabine; glutathione inhibitors; hepsulfam; immunostimulant peptides; insulin-like growth factor-1 receptor inhibitor; interferon agonists; interferons; interleukins; letrozole; leukocyte alpha interferon;

leuprolide+estrogen+progesterone; leuprorelin; matrilysin inhibitors; matrix metalloproteinase inhibitors; MIF inhibitor; mifepristone; oxaliplatin; panomifene; pentrozole; platinum complex; platinum compounds; prednisone; proteasome inhibitors; protein kinase C inhibitor; protein tyrosine phosphatase inhibitors; purine nucleoside phosphorylase inhibitors; ras farnesyl protein transferase inhibitors; ras inhibitors; ras-GAP inhibitor; stem cell inhibitor; stem-cell division inhibitors; stromelysin inhibitors; synthetic glycosaminoglycans; tamoxifen methiodide;

telomerase inhibitors; thyroid stimulating hormone; translation inhibitors; tyrosine kinase inhibitors; urokinase receptor antagonists; steroids (e.g., dexamethasone), finasteride, aromatase inhibitors, gonadotropin-releasing hormone agonists (GnRH) such as goserelin or leuprolide, adrenocorticosteroids (e.g., prednisone), progestins (e.g., hydroxyprogesterone caproate, megestrol acetate, medroxyprogesterone acetate), estrogens (e.g., diethlystilbestrol, ethinyl estradiol), antiestrogen (e.g., tamoxifen), androgens (e.g., testosterone propionate,

fluoxymesterone), antiandrogen (e.g., flutamide), immunostimulants (e.g., Bacillus Calmette- Guerin (BCG), levamisole, interleukin-2, alpha-interferon, etc.), monoclonal antibodies (e.g., anti-CD20, anti-HER2, anti-CD52, anti-HLA-DR, and anti-VEGF monoclonal antibodies), immunotoxins (e.g., anti-CD33 monoclonal antibody-calicheamicin conjugate, anti-CD22 monoclonal antibody-pseudomonas exotoxin conjugate, etc.), radioimmunotherapy (e.g., anti- CD20 monoclonal antibody conjugated to m In, 90 Y, or 131 I, etc.), triptolide, dactinomycin, doxorubicin, epirubicin, topotecan, itraconazole, vindesine, cerivastatin, vincristine,

deoxyadenosine, sertraline, pitavastatin, irinotecan, clofazimine, 5-nonyloxytryptamine, vemurafenib, dabrafenib, erlotinib, gefitinib, EGFR inhibitors, epidermal growth factor receptor (EGFR)-targeted therapy or therapeutic (e.g. gefitinib (Iressa™), erlotinib (Tarceva™), cetuximab (Erbitux™), lapatinib (Tykerb™), panitumumab (Vectibix™), vandetanib

(Caprelsa™), afatinib/BIBW2992, CI-1033/canertinib, neratinib/HKI-272, CP-724714, TAK- 285, AST-1306, ARRY334543, ARRY-380, AG-1478, dacomitinib/PF299804, OSI- 420/desmethyl erlotinib, AZD8931, AEE788, pelitinib/EKB-569, CUDC-101, WZ8040, WZ4002, WZ3146, AG-490, XL647, PD153035, BMS-599626), sorafenib, imatinib, sunitinib, dasatinib, pyrrolo benzodiazepines (e.g. tomaymycin), carboplatin, CC-1065 and CC-1065 analogs including amino-CBIs, nitrogen mustards (such as chlorambucil and melphalan), dolastatin and dolastatin analogs (including auristatins: eg. monomethyl auristatin E), anthracycline antibiotics (such as doxorubicin, daunorubicin, etc.), duocarmycins and

duocarmycin analogs, enediynes (such as neocarzinostatin and calicheamicins), leptomycin derivaties, maytansinoids and maytansinoid analogs (e.g. mertansine), methotrexate, mitomycin C, taxoids, vinca alkaloids (such as vinblastine and vincristine), epothilones (e.g. epothilone B), camptothecin and its clinical analogs topotecan or irinotecan, Docetaxe!, Paclitaxel, Platinum agents (cisplatin, carboplatin), Vinorelbine, Capecitabine, Liposomal doxorubicin,

Gemcitabine, Mitoxantrone, Ixabepilone, Albumin-bound paclitaxel (nab-paclitaxel, Abraxane), Eribulin, Toremifene, Fulvestrant, Letrozole, Anastrozole, Exemestane, Megestrol, Trastuzuniab, Pertuzumab, Ado-trastuzumab emtansine, Lapatinib, Palbociclib, ribociclib, and Everolimus.

II. Compounds

[0101] In an aspect is provided a compound having the formula:

[0102] R 101 is hydrogen,

halogen, -CF 3 , -CHF 2 , -CH 2 F, -OCF 3 , -OCH 2 F, -OCHF 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -N 0 2 , -SH, -S0 3 H, -SO4H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0) HNH 2 , - HC=(0) H 2 , - HS0 2 H, - HC= (O)H, - HC(0)-OH, - HOH, -N 3 , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted unsubstituted heteroaryl, or -N^-L^R 102 .

[0103] R 4 is independently hydrogen, -CX 4 3 , -CHX 4 2 , -

CH 2 X 4 , -C(0)R 4A , -C(0)OR 4A , -C(0) R 4A R 4B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl.

[0104] L 1 is independently a bond, -C(0)-L-, -C(O)-, -

C(0)N(R 5 )-, -C(0)CH 2 -, -C(0)CH 2 N(R 5 )-, -C(0)N(R 5 )CH 2 -, -C(S)-L-, -C(S)-, - C(S)N(R 5 )-, -C(S)CH 2 -, -C(S)CH 2 N(R 5 )-, or -C(S)N(R 5 )CH 2 -, S(0) 2 -;

[0105] L is independently a bond or -N(R 5 )-. [0106] R 5 is independently hydrogen, -CX 5 3 , -CHX 5 2 , -

CH 2 X 5 , -C(0)R 5A , -C(0)OR 5A , -C(0) R 5A R 5B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl.

[0107] R 102 is hydrogen,

halogen, -CF 3 , -CHF 2 , -CH 2 F, -OCF 3 , -OCH 2 F, -OCHF 2 , -CN, -OH, -NH 2 , -COOH, -CONH 2 , -N 0 2 , -SH, -S0 3 H, -SO4H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , - NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, -N 3 , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, substituted unsubstituted heteroaryl, or -(Ring A)-(R 1 ) z i. [0108] R 103 is hydrogen, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted

heterocycloalkyl, substituted or unsubstituted aryl, substituted or unsubstituted heteroaryl, or -

[0109] L 2 is independently -N(R 6 )-, -S-, or -0-. In embodiments, L 2 is not -S-. In

embodiments, L 2 is not -0-.

[0110] R 6 is independently hydrogen, -CXS, -CHX 6 2 , -

CH 2 X 6 , -C(0)R 6A , -C(0)OR 6A , -C(0) R 6A R 6B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl. [0111] Ring B is an aryl or heteroaryl.

[0112] R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -

OCH 2 X 2 , -OCHX 2 2, -CN, -SO^R 20 , -SO v2 R 2A R 2B , - HC(0) R 2A R 2B , -N(0) m2 , - R 2A R 2B , -C( 0)R 2C , -C(0)-OR 2C , -C(0) R 2A R 2B , -OR 2D , - R 2A S0 2 R 2D , - R 2A C(0)R 2C , - R 2A C(0)OR 2C , -N R 2A OR 2C , -N 3 , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. Two adjacent R 2 substituents may optionally be joined to form a substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0113] z2 is an integer from 0 to 5.

[0114] R 3 is independently hydrogen, halogen, -CX 3 3 , -CHX 3 2 , -CH 2 X 3 , -OCX 3 3 , -

N 3 , -CN, -SO n3 R 3A , -SO v3 NR 3A R 3B , -NHC(0)NR 3A R 3B , -N(0) m3 , -NR 3A R 3B , -C(0)R 3A , -C(0)OR 3A , -C(0)NR 3A R 3B , -OR 3A , -NR 3A S0 2 R 3B , -NR 3A C(0)R 3B , -NR 3A C(0)OR 3B , -NR 3A OR 3B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0115] R 7 is independently hydrogen, halogen, -CX 7 3 , -CHX 7 2 , -CH 2 X 7 , -OCX 7 3 , -

N 3 , -CN, -SOnvR 7A , -SOvvNR 7A R 7B , -NHC(0)NR 7A R 7B , -N(0) m7 , -NR 7A R 7B , -C(0)R 7A , -C(0)OR 7A , -C(0)NR 7A R 7B , -OR 7A , -NR 7A S0 2 R 7B , -NR 7A C(0)R 7B , -NR 7A C(0)OR 7B , -NR 7A OR 7B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0116] R 8 is independently hydrogen, halogen, -CX 8 3 , -CHX 8 2 , -CH 2 X 8 , -OCX 8 3 , - OCH 2 X 8 , -OCHX 8 2 , - N 3 , -CN, -SO n8 R 8A , -SO v8 R 8A R 8B , - HC(0) R 8A R 8B , -N(0) m8 , - R 8A R 8B , -C(0)R 8A , -C(0)OR 8A , -C(0) R 8A R 8B , -OR 8A , - R 8A S0 2 R 8B , -NR 8A C(0)R 8B , - R 8A C(0)OR 8B , - R 8A OR 8B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0117] Each R 2A , R 2B , R 2C , R 2D , R 3A , R 3B , R 4A , R 4B , R 5A , R 5B , R 6A , R 6B , R 7A , R 7B , R 8A , and R 8B is independently hydrogen, -CX 3 , -COOH, -CONH 2 , -CHX 2 , -CH 2 X, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl.

[0118] Each X, X 2 , X 3 , X 4 , X 5 , X 6 , X 7 , and X 8 is independently -F, -CI, -Br, or -I. [0119] n2, n3, n7, and n8 are independently an integer from 0 to 4. [0120] m2, m3, m7, m8, v2, v3, v7, and v8 are independently 1 or 2. [0121] In embodiments, R 101 is hydrogen,

halogen, -CF 3 , -CHF 2 , -CH 2 F, -OCF 3 , -OCH 2 F, -OCHF 2 , -CN, -OH, -NH 2 , -COOH, -CONH 2 , -N 0 2 , -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) H 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, -N 3 , substituted or unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or

unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Cio or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered), or - Ν^ 4 )-ΐ ^ 02 . [0122] In embodiments, R 101 is hydrogen,

halogen, -CF 3 , -CHF 2 , -CH 2 F, -OCF 3 , -OCH2F, -OCHF2, -CN, -OH, -NH 2 , -COOH, -CONH2, -N 0 2 , -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , - NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, -N 3 , substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted alkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heteroalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted cycloalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heterocycloalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted aryl, or substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heteroaryl, or -N(R 4 )-L 1 -R 102 .

[0123] In embodiments, R 101 is hydrogen,

halogen, -CF 3 , -CHF 2 , -CH 2 F, -OCF 3 , -OCH2F, -OCHF2, -CN, -OH, -NH 2 , -COOH, -CONH2, -N 0 2 , -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , - NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, -N 3 , unsubstituted alkyl, unsubstituted heteroalkyl, unsubstituted cycloalkyl, unsubstituted heterocycloalkyl, unsubstituted aryl, or unsubstituted heteroaryl, or -N(R 4 )-L 1 -R 102 .

[0124] In embodiments, R 102 is hydrogen,

halogen, -CF 3 , -CHF 2 , -CH 2 F, -OCF 3 , -OCH2F, -OCHF2, -CN, -OH, -NH 2 , -COOH, -CONH2, -N 0 2 , -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , - NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, -N 3 , substituted or unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Cio or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered),

[0125] In embodiments, R 102 is hydrogen,

halogen, -CF 3 , -CHF 2 , -CH 2 F, -OCF 3 , -OCH 2 F, -OCHF 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -N 0 2 , -SH, -S0 3 H, -SO4H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0) HNH 2 , - HC=(0) H 2 , - HS0 2 H, - HC= (O)H, - HC(0)-OH, - HOH, -N 3 , substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted alkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heteroalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted cycloalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heterocycloalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted aryl, or substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heteroaryl, or -(Ring A)-(R 1 ) z i.

[0126] In embodiments, R 102 is hydrogen,

halogen, -CF 3 , -CHF 2 , -CH 2 F, -OCF 3 , -OCH 2 F, -OCHF 2 , -CN, -OH, -NH 2 , -COOH, -CONH 2 , -N 0 2 , -SH, -S0 3 H, -SO4H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , - NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, -N 3 , unsubstituted alkyl, unsubstituted heteroalkyl, unsubstituted cycloalkyl, unsubstituted heterocycloalkyl, unsubstituted aryl, or unsubstituted heteroaryl, or -(Ring A)-(R 1 ) z i. [0127] In embodiments, R 103 is hydrogen, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, substituted or unsubstituted heteroaryl, or - L 2 -(Ring B)-(R 2 ) z2 .

In embodiments, R 103 is hydrogen, substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Cio or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered), or -L 2 -(Ring

B)-(R 2 ) z2 .

[0128] In embodiments, R is hydrogen, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted alkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heteroalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted cycloalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heterocycloalkyl, substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted aryl, or substituted (e.g., substituted with a substituent group, a size-limited substituent group, or lower substituent group) or unsubstituted heteroaryl, or -L 2 -(Ring B)-(R 2 ) z2 .

[0129] In embodiments, R 103 is hydrogen, unsubstituted alkyl, unsubstituted heteroalkyl, unsubstituted cycloalkyl, unsubstituted heterocycloalkyl, unsubstituted aryl, or unsubstituted heteroaryl, or -L 2 -(Ring B)-(R 2 ) z2 .

[0130] In embodiments, the compound has the formula:

(XIB). R 2 , z2, Ring B, L 2 , R 3 , R 7 , R 8 , and R 101 are as described herein.

[0131] In embodiments, the compound has the formula:

R 2 , z2, Ring B, L 2 , R 3 , R 7 , R 8 , R 4 , L 1 , and

R are as described herein.

[0132] In embodiments, the compound has the formula: (I). R 2 , z2, Ring B, R 6 , R 3 , R 7 , R 8 , R 4 , and L are as described herein.

[0133] Ring A is an aryl or heteroaryl.

[0134] R 1 is independently halogen, -CXS, -CHX^, -CH2X 1 , -OCX^, - OCH2X 1 , -OCHX 1 !, -CN, -SOniR 1D , -SO v i R 1A R 1B , - HC(0) R 1A R 1B , -N(0) m i, - R 1A R 1B , -C( 0)R 1C , -C(0)-OR lc , -C(0) R 1A R 1B , -OR 1D , - R 1A S0 2 R 1D , - R 1A C(0)R 1C , - R 1A C(0)0R 1C , -N R 1A 0R 1C , -N3, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. Two adjacent R 1 substituents may optionally be joined to form a substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0135] zl is an integer from 0 to 5.

[0136] Each R 1A , R 1B , R 1C , and R 1D is independently

hydrogen, -CX 3 , -COOH, -CO H2, -CHX 2 , -CH 2 X, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl. [0137] Each X 1 is independently -F, -CI, -Br, or -I.

[0138] nl is independently an integer from 0 to 4.

[0139] ml and vl are independently 1 or 2.

[0140] In an aspect is provided a compound having the formula:

(I). [0141] Ring A is an aryl or heteroaryl.

[0142] R 1 is independently halogen, -CXS, -CHX^, -CH2X 1 , -OCX^, -

OCU 2 X -OCHX^, -CN, -SOniR 1D , -SOvi R 1A R 1B , - HC(0) R 1A R 1B , -N(0) m i, - R 1A R 1B , -C( 0)R 1C , -C(0)-OR lc , -C(0) R 1A R 1B , -OR 1D , - R 1A S0 2 R 1D , - R 1A C(0)R 1C , - R 1A C(0)0R 1C , -N R 1A 0R 1C , -N 3 , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. Two adjacent R 1 substituents may optionally be joined to form a substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0143] zl is an integer from 0 to 5.

[0144] Ring B is an aryl or heteroaryl.

[0145] R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -

OCH 2 X 2 , -OCHX 2 2 , -CN, -SO^R 20 , -SO v2 NR 2A R 2B , -NHC(0)NR 2A R 2B , -N(0) m2 , -NR 2A R 2B , -C( 0)R 2C , -C(0)-OR 2C , -C(0)NR 2A R 2B , -OR 2D , -NR 2A S0 2 R 2D , -NR 2A C(0)R 2C , -NR 2A C(0)OR 2C , -N R 2A OR 2C , -N 3 , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. Two adjacent R 2 substituents may optionally be joined to form a substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0146] z2 is an integer from 0 to 5.

[0147] R 3 is independently hydrogen, halogen, -CX 3 3 , -CHX 3 2 , -CH 2 X 3 , -OCX 3 3 , - OCH 2 X 3 , -OCHX 3 2 , - N 3 , -CN, -SO n3 R 3A , -SO v3 NR 3A R 3B , -NHC(0)NR 3A R 3B , -N(0) m3 , -NR 3A R 3B , -C(0)R 3A , -C(0)OR 3A , -C(0)NR 3A R 3B , -OR 3A , -NR 3A S0 2 R 3B , -NR 3A C(0)R 3B , -NR 3A C(0)OR 3B , -NR 3A OR 3B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0148] R 4 is independently hydrogen, -CX 4 3 , -CHX 4 2 , -

CH 2 X 4 , -C(0)R 4A , -C(0)OR 4A , -C(0)NR 4A R 4B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl. [0149] L is independently a bond or -N(R 5 )-.

[0150] R 5 is independently hydrogen, -CX 5 3 , -CHX 5 2 , -

CH 2 X 5 , -C(0)R 5A , -C(0)OR 5A , -C(0) R 5A R 5B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl. [0151] R 6 is independently hydrogen, -CX 6 3 , -CHX 6 2 , -

CH 2 X 6 , -C(0)R 6A , -C(0)OR 6A , -C(0) R 6A R 6B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl.

[0152] R 7 is independently hydrogen, halogen, -CX 7 3 , -CHX 7 2 , -CH 2 X 7 , -OCX 7 3 , - OCH 2 X 7 , -OCHX 7 2 , - N 3 , -CN, -SOnvR 7A , -SOvv R 7A R 7B , - HC(0) R 7A R 7B , -N(0) m7 , - R 7A R 7B , -C(0)R 7A , -C(0)OR 7A , -C(0) R 7A R 7B , -OR 7A , - R 7A S0 2 R 7B , -NR 7A C(0)R 7B , - R 7A C(0)OR 7B , - R 7A OR 7B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0153] R 8 is independently hydrogen, halogen, -CX 8 3 , -CHX 8 2 , -CH 2 X 8 , -OCX 8 3 , - OCH 2 X 8 , -OCHX 8 2 , -

N 3 , -CN, -SO n8 R 8A , -SO v8 NR 8A R 8B , -NHC(0)NR 8A R 8B , -N(0) m8 , -NR 8A R 8B , -C(0)R 8A , -C(0)OR 8A , -C(0)NR 8A R 8B , -OR 8A , -NR 8A S0 2 R 8B , -NR 8A C(0)R 8B , -NR 8A C(0)OR 8B , -NR 8A OR 8B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0154] Each R 1A , R 1B , R 1C , R 1D , R 2A , R 2B , R 2C , R 2D , R 3A , R 3B , R 4A , R 4B , R 5A , R 5B , R 6A , R 6B , R 7A , R 7B , R 8A , and R 8B is independently hydrogen, -CX 3 , -COOH, -CONH 2 , -CHX 2 , -CH 2 X, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R and R substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl.

[0155] Each X, X 1 , X 2 , X 3 , X 4 , X 5 , X 6 , X 7 , and X 8 is independently -F, -CI, -Br, or -I. [0156] nl, n2, n3, n7, and n8 are independently an integer from 0 to 4. [0157] ml, m2, m3, m7, m8, vl, v2, v3, v7, and v8 are independently 1 or 2. [0158] In embodiments, the compound has the formula:

(lb) and R 1 , R 2 , R 3 , R 4 , R 5 , R 6 , zl, z2, Ring A, and Ring B are as described herein.

[0159] In embodiments, the compound has the formula:

(II) and R 1 , R 2 , zl, z2, Ring A, and

Ring B are as described herein.

[0160] In embodiments, the compound has the formula:

(Ilia) and R 2 , z2, and Ring B are as described herein.

[0161] In embodiments, the compound has the formula: (Illb) and R 2 , z2, and Ring B are as described herein.

[0162] In embodiments, the compound has the formula: (IIIc) and R 2 , z2, and Ring B are as described herein.

[0163] In embodiments, the compound has the formula: (Hid) and R 2 , z2, and Ring B are as described herein.

[0164] In embodiments, the compound has the formula: (IVa) and R is as described herein.

[0165] In embodiments, the compound has the formula: (IVb) and R is as described herein.

[0166] In embodiments, the compound has the formula:

[0167] In embodiments, the compound has the formula: (Va) and R is as described herein.

[0168] In embodiments, the compound has the formula:

(Vb) and R is as described herein.

[0169] In embodiments, the compound has the formula:

[0170] In embodiments, the compound has the formula:

(Via) and R 2 is as described herein.

[0171] In embodiments, the compound has the formula:

(VIb) and R 2 is as described herein. [0172] In embodiments, the compound has the formula:

[0173] In embodiments, the compound has the formula: (Xa) and R is as described herein.

In embodiments, the compound has the formula:

(Xb) and R 2 is as described herein.

[0175] In embodiments, the compound has the formula:

[0176] In embodiments, the compound has the formula:

(VII) and R 2 , z2, and Ring B are as described herein.

[0177] R u , R 1 2 , R 1 3 , R 1 4 , and R 1 5 are each independently equal to hydrogen or any value of R 1 as described herein. For example, R 1 2 may be -CF 3 . For example, R 1 2 may be -CXV For example, R 1 2 may be -CI. For example, R 1 2 may be halogen. For example, R 1 3 may be -CF 3 . For example, R 1 3 may be -CX . For example, R 1 3 may be -F. For example, R 1 3 may be halogen. For example, R 1 2 may be -CI and R 1 3 may be -F. For example, R 1 3 may be -SCH3. For example, R 1 3 may be -SCH2CH3. For example, R 1 3 may be -SCH(CH3)2. For example, R i 3 may be -SC(CH 3 ) 3 .

[0178] In embodiments, the compound has the formula:

(Vila) and R 1 2 , R 1 3 , R 2 , z2, and Ring B are as described herein. [0179] In embodiments, the compound has the formula: (Vllb) and R 1 2 , R 2 , z2, and Ring B are as described herein.

[0180] In embodiments, the compound has the formula: (VIIc) and R 1 2 , R 1 3 , and R 2 are as described herein.

[0181] In embodiments, the compound has the formula: (Vlld) and R 1 2 , R , and R 2 are as described herein

[0182] In embodiments, the compound has the formula: (Vile) and R and R are as described herein.

[0183] In embodiments, the compound has the formula: (Vllf) and R and R are as described herein.

[0184] In embodiments, the compound has the formula: (Vllg) and R 1 2 and R 2 are as described herein.

[0185] In embodiments, the compound has the formula:

(Vllh) and R 1 2 is as described herein.

[0186] In embodiments, the compound has the formula:

(Vlli) and R 1 , R 2 , zl, z2, and Ring A are as described herein.

[0187] In embodiments, the compound has the formula:

(Vllj ) and R 1 , R 2 , z 1 , and Ring A are as described herein. In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently -C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0188] In embodiments, the compound has the formula:

(Vllk) and R , R , zl, and Ring A are as described herein.

[0189] In embodiments, the compound has the formula: (VIII) and R 1 , zl, and Ring A are as described herein.

[0190] In embodiments, the compound has the formula:

as described herein.

[0191] In embodiments, the compound has the formula:

(Vlln) and R 1 3 and R 2 are as described herein. [0192] In embodiments, the compound has the formula:

(VIIo) and R 1 3 and R 2 are as described herein. In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently -C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0193] In embodiments, the compound has the formula:

[0194] In embodiments, the compound has the formula: (VIII) and R u , R 1 2 , R 1 3 , R 1 4 , and R . 1.5 are as described herein.

[0195] R 2 - 1 , R 2 2 , R 2 3 , R 2 4 , and R 2 5 are each independently equal to hydrogen or any value of R 2 as described herein. For example, R 2 2 may be -COOH. For example, R 2 2 may be - COOCH2CH3. For example, R 2 2 may be - HCOCH3. For example, R 2 2 may be -OCH3. For example, R 2 3 may be -COOH. For example, R 2 3 may be -COOCH2CH3. For example, R 2 3 may be - HCOCH3. For example, R 2 3 may be -OCH3. For example, R 2 4 may be -COOH. For example, R 2 4 may be -COOCH2CH3. For example, R 2 4 may be - HCOCH3. For example, R 2 4 may be -OCH 3 .

[0196] In embodiments, the compound has the formula:

(Villa) and R 2 R 2 2 , R 2 3 , R 2 4 , R 2 5 , R 1 , zl, and Ring A are as described herein. [0197] In embodiments, the compound has the formula:

(VHIb) and R 2 3 , R 1 , zl, and Ring A are as described herein.

[0198] In embodiments, the compound has the formula:

(VIIIc) and R 2 2 , R 1 , zl, and Ring A are as described herein

[0199] In embodiments, the compound has the formula: (Vllld) and R 2 2 , R 2 3 , R 2 4 , R 1 , zl, and

Ring A are as described herein.

[0200] In embodiments, the compound has the formula:

(Ic) and R , R , R , R 4 , R & , zl, z2, Ring

A, and Ring B are as described herein.

[0201] In embodiments, the compound has the formula: (IXa) and R , R , zl, z2, Ring A, and

Ring B are as described herein.

[0202] In embodiments, the compound has the formula:

(IXb) and R 2 , z2, and Ring B are as described herein.

[0203] In embodiments, the compound has the formula: (IXc) and R 2 , z2, and Ring B are as described herein.

[0204] In embodiments, the compound has the formula: (IXd) and R 2 , z2, and Ring B are as described herein.

[0205] In embodiments, the compound has the formula:

(IXe) and R 2 is as described herein. [0206] In embodiments, the compound has the formula:

(IXf) and R is as described herein. In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently - C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0207] In embodiments, the compound has the formula:

[0208] In embodiments, the compound has the formula:

(IXh) and R is as described herein. [0209] In embodiments, the compound has the formula:

(IXi) and R 2 is as described herein. In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently - C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0210] In embodiments, the compound has the formula:

[0211] In embodiments, the compound has the formula:

(IXk) and R 2 is as described herein.

[0212] In embodiments, the compound has the formula:

(1X1) and R 2 is as described herein. In embodiments, R is independently -C(0)OCH 3 . In embodiments, R is independently - C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0213] In embodiments, the compound has the formula:

[0214] In embodiments, the compound has the formula:

(IXn) and R , R , R , R , R , R , z2 and Ring B are as described herein.

[0215] In embodiments, the compound has the formula:

(IXo) and R 1 2 , R 1 3 , R 2 , z2, and Ring B are as described herein.

[0216] In embodiments, the compound has the formula:

(IXp) and R 1 2 , R 2 , z2, and Ring B are as described herein.

[0217] In embodiments, the compound has the formula:

(IXq) and R , R , and R are as described herein.

[0218] In embodiments, the compound has the formula: (IXr) and R 1 2 , R 1 3 , and R 2 are as described herein. In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently -C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0219] In embodiments, the compound has the formula:

(IXs) and R 1 2 and R 1 3 are as described herein. [0220] In embodiments, the compound has the formula:

(IXt) and R and R are as described herein.

[0221] In embodiments, the compound has the formula:

(IXu) and R and R are as described herein.

In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently - C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0222] In embodiments, the compound has the formula: (IXv) and R is as described herein.

[0223] In embodiments, the compound has the formula:

(IXw) and R , R , zl, z2, and Ring A are as described herein.

[0224] In embodiments, the compound has the formula:

(IXx) and R 1 , R 2 , zl, and Ring A are as described herein. In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently -C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0225] In embodiments, the compound has the formula:

(IXy) and R , R , zl, and Ring A are as described herein.

[0226] In embodiments, the compound has the formula:

(IXz) and R 1 , zl, and Ring A are as described herein. [0227] In embodiments, the compound has the formula:

(IXaa) and R 2 R 2 2 , R 2 3 , R 2 4 , R 2 5 , R 1-1 ,

R 1 2 , R 1 3 , R 1 4 , and R 1 5 are as described herein.

[0228] In embodiments, the compound has the formula:

R 2 2 , R 2 3 , R 2 4 , R 2 5 , R 1 , zl and Ring A are as described herein.

[0229] In embodiments, the compound has the formula: (IXac) and R 2 3 , R 1 , zl, and Ring A are as described herein.

[0230] In embodiments, the compound has the formula: (IXad) and R , R , zl, and Ring A are as described herein

[0231] In embodiments, the compound has the formula: (IXae) and R 2 2 , R 2 3 , R 2 4 , R 1 , zl, and Ring

A are as described herein

[0232] In embodiments, the compound has the formula:

(IXaf) and R 2 , z2, and Ring B are as described herein.

[0233] In embodiments, the compound has the formula:

(IXag) and R 2 is as described herein.

[0234] In embodiments, the compound has the formula:

(IXah) and R 2 is as described herein. In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently - C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0235] In embodiments, the compound has the formula:

(IXai). [0236] In embodiments, the compound has the formula:

(IXaj) and R , R , z2, and Ring B are as described herein.

[0237] In embodiments, the compound has the formula:

(IXak) and R and R are as described herein.

[0238] In embodiments, the compound has the formula:

(IXal) and R and R are as described herein.

In embodiments, R 2 is independently -C(0)OCH 3 . In embodiments, R 2 is independently - C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 .

[0239] In embodiments, the compound has the formula:

(IXam) and R is as described herein. [0240] In embodiments, Ring A is aryl (e.g. C 6 -Ci 2 aryl, C 6 -Cio aryl, or C 6 aryl). In embodiments, Ring A is C 6 -Ci 2 aryl. In embodiments, Ring A is C 6 -Cio aryl. In embodiments, Ring A is C 6 aryl. It will be understood when zl is 0, Ring A is unsubstituted (e.g.,

unsubstituted aryl or unsubstituted heteroaryl) in addition to the bond to L (e.g., bond or - N(R 5 )-). It will be understood when zl is greater than 0 (e.g., 1, 2, 3, or 4), Ring A is substituted with one or more R 1 substituents (e.g., R^substituted aryl or R 1 -substituted heteroaryl) in addition to the bond to L (e.g., bond or -N(R 5 )-).

[0241] In embodiments, Ring A is heteroaryl (e.g. 5 to 12 membered heteroaryl, 5 to 10 membered heteroaryl, 5 to 9 membered heteroaryl, or 5 to 6 membered heteroaryl). In embodiments, Ring A is 5 to 12 membered heteroaryl. In embodiments, Ring A is 5 to 10 membered heteroaryl. In embodiments, Ring A is 5 to 9 membered heteroaryl. In embodiments, Ring A is 5 to 6 membered heteroaryl.

[0242] In embodiments, Ring A is naphthyl. In embodiments, Ring A is biphenyl. In embodiments, Ring A is phenyl. In embodiments, Ring A is pyridyl. In embodiments, Ring A is pyrazolyl. In embodiments, Ring A is imidazolyl. In embodiments, Ring A is oxazolyl. In embodiments, Ring A is isoxazolyl. In embodiments, Ring A is thiazolyl. In embodiments, Ring A is furanyl. In embodiments, Ring A is pyrrolyl. In embodiments, Ring A is thienyl. In embodiments, Ring A is 2-pyridyl. In embodiments, Ring A is 3-pyridyl. In embodiments, Ring A is 4-pyridyl.

[0243] In embodiments, Ring A is indolinyl. In embodiments, Ring A is indazolyl. In embodiments, Ring A is benzimidazolyl. In embodiments, Ring A is benzoxazolyl. In embodiments, Ring A is azaindolyl. In embodiments, Ring A is purinyl. In embodiments, Ring A is indolyl. In embodiments, Ring A is pyrazinyl. In embodiments, Ring A is pyrrolyl. In embodiments, Ring A is imidazolyl. In embodiments, Ring A is pyrazolyl. In embodiments, Ring A is triazolyl. In embodiments, Ring A is tetrazolyl.

[0244] In embodiments, Ring A is a phenyl or 5 to 6 membered heteroaryl. In embodiments, Ring A is a phenyl.

[0245] In embodiments, R 1 is independently halogen, -CXS, -CHX^, -CH2X 1 , -OCX^, - OCH2X 1 , -OCHX 1 !, -CN, -SOniR 1D , -SO v i R 1A R 1B , - HC(0) R 1A R 1B , -N(0) m i, - R 1A R 1B , -C( 0)R 1C , -C(0)-OR lc , -C(0) R 1A R 1B , -OR 1D , - R 1A S0 2 R 1D , - R 1A C(0)R 1C , - R 1A C(0)OR lc , -N R 1A OR lc , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. Two adjacent R 1 substituents may optionally be joined to form a substituted or unsubstituted cycloalkyl, substituted or

unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0246] In embodiments, R 1 is independently halogen. In embodiments, R 1 is independently unsubstituted methyl. In embodiments, R 1 is independently unsubstituted ethyl. In

embodiments, R 1 is independently unsubstituted propyl. In embodiments, R 1 is independently unsubstituted isopropyl. In embodiments, R 1 is independently unsubstituted n-propyl. In embodiments, R 1 is independently unsubstituted butyl. In embodiments, R 1 is independently unsubstituted n-butyl. In embodiments, R 1 is independently unsubstituted t-butyl. In

embodiments, R 1 is independently unsubstituted iso-butyl. In embodiments, R 1 is independently unsubstituted Ci-C 8 alkyl. In embodiments, R 1 is independently halo-substituted methyl. In embodiments, R 1 is independently halo-substituted ethyl. In embodiments, R 1 is independently halo- substituted isopropyl. In embodiments, R 1 is independently halo- substituted n-propyl. In embodiments, R 1 is independently halo-substituted n-butyl. In embodiments, R 1 is

independently halo- substituted t-butyl. In embodiments, R 1 is independently halo- substituted Ci-C 8 alkyl.

[0247] In embodiments, R 1 is independently -CXV In embodiments, R 1 is independently - CHX^. In embodiments, R 1 is independently -CH2X 1 . In embodiments, R 1 is

independently -OCXV In embodiments, R 1 is independently -OCH2X 1 . In embodiments, R 1 is independently -OCHX^. In embodiments, R 1 is independently -CN. In embodiments, R 1 is independently -SO n iR 1D . In embodiments, R 1 is independently -SR 1D . In embodiments, R 1 is independently -SO v iNR 1A R 1B In embodiments, R 1 is independently - HC(0) R 1A R 1B . In embodiments, R 1 is independently -N(0)mi. In embodiments, R 1 is independently - R 1A R 1B . In embodiments, R 1 is independently -C(0)R 1C . In embodiments, R 1 is independently -C(0)-OR lc . In embodiments, R 1 is independently -C(0) R 1A R 1B . In embodiments, R 1 is

independently -OR 1D . In embodiments, R 1 is independently - R 1A S02R 1D . In embodiments, R 1 is independently - R 1A C(0)R 1C . In embodiments, R 1 is independently -NR 1A C(0)OR lc . In embodiments, R 1 is independently - R 1A OR lc . In embodiments, R 1 is independently -OH. In embodiments, R 1 is independently - H2. In embodiments, R 1 is independently -COOH. In embodiments, R 1 is independently -CO H2. In embodiments, R 1 is independently -NO2. In embodiments, R 1 is independently -SH. In embodiments, R 1 is independently halogen. In embodiments, R 1 is independently -F. In embodiments, R 1 is independently -CI. In

embodiments, R 1 is independently -Br. In embodiments, R 1 is independently -I. In

embodiments, R 1 is independently -CF3. In embodiments, R 1 is independently -CHF2. In embodiments, R 1 is independently -CH2F. In embodiments, R 1 is independently -OCF3. In embodiments, R 1 is independently -OCH2F. In embodiments, R 1 is independently -OCHF2. In embodiments, R 1 is independently -OCH3. In embodiments, R 1 is independently -OCH2CH3. In embodiments, R 1 is independently -OCH2CH2CH3. In embodiments, R 1 is independently - OCH(CH 3 )2. In embodiments, R 1 is independently -OC(CH 3 ) 3 . In embodiments, R 1 is independently -SCH 3 . In embodiments, R 1 is independently -SCH2CH3. In embodiments, R 1 is independently -SCH2CH2CH3. In embodiments, R 1 is independently -SCH(CH 3 )2. In embodiments, R 1 is independently -SC(CH 3 ) 3 . In embodiments, R 1 is independently -CH 3 . In embodiments, R 1 is independently -CH2CH 3 . In embodiments, R 1 is independently - CH2CH2CH 3 . In embodiments, R 1 is independently -CH(CH 3 )2. In embodiments, R 1 is independently -C(CH 3 ) 3 . In embodiments, R 1 is independently -CH2CH2C(0)OCH 3 . In embodiments, R 1 is independently -CH2CH(CH 3 )C(0)OCH 3 . In embodiments, R 1 is independently -N 3 . [0248] In embodiments, R 1 1 is independently hydrogen. In embodiments, R 1 1 is

independently -CX X 3 . In embodiments, R 1 1 is independently -CHX In embodiments, R 1 1 is independently -CH2X 1 . In embodiments, R 1 1 is independently -OCXV In embodiments, R 1 1 is independently -OCH2X 1 . In embodiments, R 1 1 is independently -OCHX^. In embodiments, R 1 1 is independently -CN. In embodiments, R 1 1 is independently -SO n iR 1D . In embodiments, R 1 1 is independently -SCvi R 1A R 1B In embodiments, R 1 1 is independently - HC(0) R 1A R 1B . In embodiments, R 1 1 is independently -N(0) m i. In embodiments, R 1 1 is

independently - R 1A R 1B . In embodiments, R 1 1 is independently -C(0)R 1C . In embodiments, R 1 1 is independently -C(0)0R 1C . In embodiments, R 1 1 is independently -C(0) R 1A R 1B . In embodiments, R 1 1 is independently -OR 1D . In embodiments, R 1 1 is

independently - R 1A S0 2 R 1D . In embodiments, R 1 1 is independently - R 1A C(0)R 1C . In embodiments, R 1 1 is independently - R 1A C(0)OR lc . In embodiments, R 1 1 is

independently - R 1A OR lc . In embodiments, R 1 1 is independently -OH. In embodiments, R 1 1 is independently - H2. In embodiments, R 1 1 is independently -COOH. In embodiments, R 1 1 is independently -CO H2. In embodiments, R 1 1 is independently -NO2. In embodiments, R 1 1 is independently -SH. In embodiments, R 1 1 is independently halogen. In embodiments, R 1 1 is independently -F. In embodiments, R 1 1 is independently -CI. In embodiments, R 1 1 is independently -Br. In embodiments, R 1 1 is independently -I. In embodiments, R 1 1 is independently -CF 3 . In embodiments, R 1 1 is independently -CHF2. In embodiments, R 1 1 is independently -CH2F. In embodiments, R 1 1 is independently -OCF 3 . In embodiments, R 1 1 is independently -OCH2F. In embodiments, R 1 1 is independently -OCHF2. In embodiments, R 1 1 is independently -OCH 3 . In embodiments, R 1 1 is independently -OCH2CH3. In embodiments, R 1 1 is independently -OCH2CH 2 CH 3 . In embodiments, R 1 1 is independently -OCH(CH 3 ) 2 . In embodiments, R 1 1 is independently -OC(CH 3 ) 3 . In embodiments, R 1 1 is independently -SCH 3 . In embodiments, R 1 1 is independently -SCH2CH3. In embodiments, R 1 1 is independently - SCH 2 CH 2 CH 3 . In embodiments, R 1 1 is independently -SCH(CH 3 ) 2 . In embodiments, R 1 1 is independently -SC(CH 3 ) 3 . In embodiments, R 1 1 is independently -CH 3 . In embodiments, R 1 1 is independently -CH2CH3. In embodiments, R 1 1 is independently -CH2CH2CH3. In embodiments, R 1 1 is independently -CH(CH 3 )2. In embodiments, R 1 1 is independently - C(CH 3 ) 3 . In embodiments, R 1 1 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 1 1 is independently -CH 2 CH(CH 3 )C(0)OCH 3 . In embodiments, R 1 1 is independently -N 3 . In embodiments, R 1 1 is independently -SR 1D .

[0249] In embodiments, R 1 2 is independently hydrogen. In embodiments, R 1 2 is

independently -CXV In embodiments, R 1 2 is independently -CHX In embodiments, R 1 2 is independently -CH2X 1 . In embodiments, R 1 2 is independently -OCXV In embodiments, R 1 2 is independently -OCH2X 1 . In embodiments, R 1 2 is independently -OCHX^. In embodiments, R 1 2 is independently -CN. In embodiments, R 1 2 is independently -SO n iR 1D . In embodiments, R 1 2 is independently -SCvi R 1A R 1B In embodiments, R 1 2 is independently - HC(0) R 1A R 1B . In embodiments, R 1 2 is independently -N(0) m i. In embodiments, R 1 2 is

independently - R 1A R 1B . In embodiments, R 1 2 is independently -C(0)R 1C . In embodiments, R 1 2 is independently -C(0)OR lc . In embodiments, R 1 2 is independently -C(0) R 1A R 1B . In embodiments, R 1 2 is independently -OR 1D . In embodiments, R 1 2 is

independently - R 1A S0 2 R 1D . In embodiments, R 1 2 is independently - R 1A C(0)R 1C . In embodiments, R 1 2 is independently - R 1A C(0)0R 1C . In embodiments, R 1 2 is

independently - R 1A 0R 1C . In embodiments, R 1 2 is independently -OH. In embodiments, R 1 2 is independently - H2. In embodiments, R 1 2 is independently -COOH. In embodiments, R 1 2 is independently -CO H2. In embodiments, R 1 2 is independently -NO2. In embodiments, R 1 2 is independently -SH. In embodiments, R 1 2 is independently halogen. In embodiments, R 1 2 is independently -F. In embodiments, R 1 2 is independently -CI. In embodiments, R 1 2 is independently -Br. In embodiments, R 1 2 is independently -I. In embodiments, R 1 2 is independently -CF 3 . In embodiments, R 1 2 is independently -CHF2. In embodiments, R 1 2 is independently -CH2F. In embodiments, R 1 2 is independently -OCF 3 . In embodiments, R 1 2 is independently -OCH2F. In embodiments, R 1 2 is independently -OCHF2. In embodiments, R 1 2 is independently -OCH 3 . In embodiments, R 1 2 is independently -OCH2CH3. In embodiments, R 1 2 is independently -OCH2CH 2 CH 3 . In embodiments, R 1 2 is independently -OCH(CH 3 ) 2 . In embodiments, R 1 2 is independently -OC(CH 3 ) 3 . In embodiments, R 1 2 is independently -SCH 3 . In embodiments, R 1 2 is independently -SCH2CH3. In embodiments, R 1 2 is independently - SCH 2 CH 2 CH 3 . In embodiments, R 1 2 is independently -SCH(CH 3 ) 2 . In embodiments, R 1 2 is independently -SC(CH 3 ) 3 . In embodiments, R 1 2 is independently -CH 3 . In embodiments, R 1 2 is independently -CH2CH3. In embodiments, R 1 2 is independently -CH2CH2CH3. In embodiments, R 1 2 is independently -CH(CH 3 )2. In embodiments, R 1 2 is independently - C(CH 3 ) 3 . In embodiments, R 1 2 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 1 2 is independently -CH 2 CH(CH 3 )C(0)OCH 3 . In embodiments, R 1 2 is independently -N 3 . In embodiments, R 1 2 is independently -SR 1D .

[0250] In embodiments, R 1 3 is independently hydrogen. In embodiments, R 1 3 is

independently -CX X 3 . In embodiments, R 1 3 is independently -CHX In embodiments, R 1 3 is independently -CFbX 1 . In embodiments, R 1 3 is independently -OCXV In embodiments, R 1 3 is independently -OCFbX 1 . In embodiments, R 1 3 is independently -OCHX^. In embodiments, R 1 3 is independently -CN. In embodiments, R 1 3 is independently -SO n iR 1D . In embodiments, R 1 3 is independently -SCvi R 1A R 1B In embodiments, R 1 3 is independently - HC(0) R 1A R 1B . In embodiments, R 1 3 is independently -N(0) m i. In embodiments, R 1 3 is

independently - R 1A R 1B . In embodiments, R 1 3 is independently -C(0)R 1C . In embodiments, R 1 3 is independently -C(0)OR lc . In embodiments, R 1 3 is independently -C(0) R 1A R 1B . In embodiments, R 1 3 is independently -OR 1D . In embodiments, R 1 3 is

independently - R 1A S0 2 R 1D . In embodiments, R 1 3 is independently - R 1A C(0)R 1C . In embodiments, R 1 3 is independently - R 1A C(0)OR lc . In embodiments, R 1 3 is

independently - R 1A OR lc . In embodiments, R 1 3 is independently -OH. In embodiments, R 1 3 is independently - H 2 . In embodiments, R 1 3 is independently -COOH. In embodiments, R 1 3 is independently -CO H 2 . In embodiments, R 1 3 is independently -N0 2 . In embodiments, R 1 3 is independently -SH. In embodiments, R 1 3 is independently halogen. In embodiments, R 1 3 is independently -F. In embodiments, R 1 3 is independently -CI. In embodiments, R 1 3 is independently -Br. In embodiments, R 1 3 is independently -I. In embodiments, R 1 3 is independently -CF 3 . In embodiments, R 1 3 is independently -CHF 2 . In embodiments, R 1 3 is independently -CH 2 F. In embodiments, R 1 3 is independently -OCF 3 . In embodiments, R 1 3 is independently -OCH 2 F. In embodiments, R 1 3 is independently -OCHF 2 . In embodiments, R 1 3 is independently -OCH 3 . In embodiments, R 1 3 is independently -OCH 2 CH 3 . In embodiments, R 1 3 is independently -OCH 2 CH 2 CH 3 . In embodiments, R 1 3 is independently -OCH(CH 3 ) 2 . In embodiments, R 1 3 is independently -OC(CH 3 ) 3 . In embodiments, R 1 3 is independently -SCH 3 . In embodiments, R 1 3 is independently -SCH 2 CH 3 . In embodiments, R 1 3 is independently - SCH 2 CH 2 CH 3 . In embodiments, R 1 3 is independently -SCH(CH 3 ) 2 . In embodiments, R 1 3 is independently -SC(CH 3 ) 3 . In embodiments, R 1 3 is independently -CH 3 . In embodiments, R 1 3 is independently -CH 2 CH 3 . In embodiments, R 1 3 is independently -CH 2 CH 2 CH 3 . In embodiments, R 1 3 is independently -CH(CH 3 ) 2 . In embodiments, R 1 3 is independently - C(CH 3 ) 3 . In embodiments, R 1 3 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 1 3 is independently -CH 2 CH(CH 3 )C(0)OCH 3 . In embodiments, R 1 3 is independently -N 3 . In embodiments, R 1 3 is independently -SR 1D . [0251] In embodiments, R 1 4 is independently hydrogen. In embodiments, R 1 4 is independently -CX X 3 . In embodiments, R 1 4 is independently -CHX In embodiments, R 1 4 is independently -CH2X 1 . In embodiments, R 1 4 is independently -OCXV In embodiments, R 1 4 is independently -OCH2X 1 . In embodiments, R 1 4 is independently -OCHX^. In embodiments, R 1 4 is independently -CN. In embodiments, R 1 4 is independently -SO n iR 1D . In embodiments, R 1 4 is independently -SO v i R 1A R 1B . In embodiments, R 1 4 is independently - HC(0) R 1A R 1B . In embodiments, R 1 4 is independently -N(0) m i. In embodiments, R 1 4 is

independently - R 1A R 1B . In embodiments, R 1 4 is independently -C(0)R 1C . In embodiments, R 1 4 is independently -C(0)0R 1C . In embodiments, R 1 4 is independently -C(0) R 1A R 1B . In embodiments, R 1 4 is independently -OR 1D . In embodiments, R 1 4 is

independently - R 1A S0 2 R 1D . In embodiments, R 1 4 is independently - R 1A C(0)R 1C . In embodiments, R 1 4 is independently - R 1A C(0)0R 1C . In embodiments, R 1 4 is

independently - R 1A 0R 1C . In embodiments, R 1 4 is independently -OH. In embodiments, R 1 4 is independently - H2. In embodiments, R 1 4 is independently -COOH. In embodiments, R 1 4 is independently -CO H2. In embodiments, R 1 4 is independently -NO2. In embodiments, R 1 4 is independently -SH. In embodiments, R 1 4 is independently halogen. In embodiments, R 1 4 is independently -F. In embodiments, R 1 4 is independently -CI. In embodiments, R 1 4 is independently -Br. In embodiments, R 1 4 is independently -I. In embodiments, R 1 4 is independently -CF3. In embodiments, R 1 4 is independently -CHF2. In embodiments, R 1 4 is independently -CH2F. In embodiments, R 1 4 is independently -OCF3. In embodiments, R 1 4 is independently -OCH2F. In embodiments, R 1 4 is independently -OCHF2. In embodiments, R 1 4 is independently -OCH3. In embodiments, R 1 4 is independently -OCH2CH3. In embodiments, R 1 4 is independently -OCH2CH2CH3. In embodiments, R 1 4 is independently -OCH(CH 3 ) 2 . In embodiments, R 1 4 is independently -OC(CH3)3. In embodiments, R 1 4 is independently -SCH3. In embodiments, R 1 4 is independently -SCH2CH3. In embodiments, R 1 4 is independently - SCH2CH2CH3. In embodiments, R 1 4 is independently -SCH(CH 3 )2. In embodiments, R 1 4 is independently -SC(CH3)3. In embodiments, R 1 4 is independently -CH 3 . In embodiments, R 1 4 is independently -CH2CH3. In embodiments, R 1 4 is independently -CH2CH2CH3. In embodiments, R 1 4 is independently -CH(CH3)2. In embodiments, R 1 4 is independently - C(CH 3 ) 3 . In embodiments, R 1 4 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 1 4 is independently -CH 2 CH(CH3)C(0)OCH3. In embodiments, R 1 4 is independently -N3. In embodiments, R 1 4 is independently -SR 1D .

[0252] In embodiments, R 1 5 is independently hydrogen. In embodiments, R 1 5 is

independently -CX X 3 . In embodiments, R 1 5 is independently -CHX^. In embodiments, R 1 5 is independently -CH2X 1 . In embodiments, R 1 5 is independently -OCXV In embodiments, R 1 5 is independently -OCH2X 1 . In embodiments, R 1 5 is independently -OCHX^. In embodiments, R 1 5 is independently -CN. In embodiments, R 1 5 is independently -SO n iR 1D . In embodiments, R 1 5 is independently -SO v iNR 1A R 1B In embodiments, R 1 5 is independently - HC(0) R 1A R 1B . In embodiments, R 1 5 is independently -N(0) m i. In embodiments, R 1 5 is

independently - R 1A R 1B . In embodiments, R 1 5 is independently -C(0)R 1C . In embodiments, R 1 5 is independently -C(0)0R 1C . In embodiments, R 1 5 is independently -C(0) R 1A R 1B . In embodiments, R 1 5 is independently -OR 1D . In embodiments, R 1 5 is

independently - R 1A S0 2 R 1D . In embodiments, R 1 5 is independently - R 1A C(0)R 1C . In embodiments, R 1 5 is independently - R 1A C(0)0R 1C . In embodiments, R 1 5 is

independently - R 1A 0R 1C . In embodiments, R 1 5 is independently -OH. In embodiments, R 1 5 is independently - H 2 . In embodiments, R 1 5 is independently -COOH. In embodiments, R 1 5 is independently -CO H2. In embodiments, R 1 5 is independently -NO2. In embodiments, R 1 5 is independently -SH. In embodiments, R 1 5 is independently halogen. In embodiments, R 1 5 is independently -F. In embodiments, R 1 5 is independently -CI. In embodiments, R 1 5 is independently -Br. In embodiments, R 1 5 is independently -I. In embodiments, R 1 5 is independently -CF3. In embodiments, R 1 5 is independently -CHF 2 . In embodiments, R 1 5 is independently -CH 2 F. In embodiments, R 1 5 is independently -OCF3. In embodiments, R 1 5 is independently -OCH2F. In embodiments, R 1 5 is independently -OCHF2. In embodiments, R 1 5 is independently -OCH3. In embodiments, R 1 5 is independently -OCH2CH3. In embodiments, R 1 5 is independently -OCH2CH2CH3. In embodiments, R 1 5 is independently -OCH(CH 3 ) 2 . In embodiments, R 1 5 is independently -OC(CH3)3. In embodiments, R 1 5 is independently -SCH3. In embodiments, R 1 5 is independently -SCH2CH3. In embodiments, R 1 5 is independently - SCH2CH2CH3. In embodiments, R 1 5 is independently -SCH(CH 3 ) 2 . In embodiments, R 1 5 is independently -SC(CH3)3. In embodiments, R 1 5 is independently -CH3. In embodiments, R 1 5 is independently -CH2CH3. In embodiments, R 1 5 is independently -CH2CH2CH3. In embodiments, R 1 5 is independently -CH(CH3) 2 . In embodiments, R 1 5 is independently - C(CH 3 )3. In embodiments, R 1 5 is independently -CH 2 CH 2 C(0)OCH3. In embodiments, R 1 5 is independently -CH 2 CH(CH3)C(0)OCH3. In embodiments, R 1 5 is independently -N3. In embodiments, R 1 5 is independently -SR 1D . [0253] In embodiments, R 1 is independently hydrogen, halogen, -CX^, -CHX^, -

CH2X 1 , -OCX , -OCH2X 1 , -OCHX^, -CN, -SOniR 1D , -SO v iNR 1A R 1B , -NHC(0)NR 1A R 1B , -N(O) mi, -NR 1A R 1B , -C(0)R 1C , -C(0)-OR lc , -C(0)NR 1A R 1B , -OR 1D , -NR 1A S0 2 R 1D , -NR 1A C(0)R 1C , -N R 1A C(0)OR lc , -NR 1A OR lc , substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci- C 2 ), substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0254] In embodiments, R 1 is independently substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 1 is independently substituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 is independently unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 is independently unsubstituted methyl. In embodiments, R 1 is independently unsubstituted ethyl. In embodiments, R 1 is independently unsubstituted propyl. In embodiments, R 1 is independently unsubstituted isopropyl. In embodiments, R 1 is independently unsubstituted tert-butyl. In embodiments, R 1 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 - C 6 , or C5-C 6 ). In embodiments, R 1 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 1 is independently unsubstituted cycloalkyl (e.g., C3-C8, C 3 - C 6 , C4-C6, or C5-C 6 ). In embodiments, R 1 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 is independently substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In

embodiments, R 1 is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 1 is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 1 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0255] In embodiments, R 1 is independently

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 20 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 20 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 20 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ), R 20 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 20 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 is independently halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1 is independently -F, -CI, -Br, or -I.

[0256] In embodiments, two adjacent R 1 substituents may be joined to form a substituted or unsubstituted cycloalkyl (e.g., C3-C 8 , C3-G5, C4-C6, or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , G5-C10, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to

6 membered).

[0257] In embodiments, two adjacent R 1 substituents may be joined to form a substituted or unsubstituted cycloalkyl (e.g., C3-C 8 , C3-G5, C4-C6, or C5-C 6 ). In embodiments, two adjacent R 1 substituents may be joined to form a substituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-G5, or C5-C 6 ). In embodiments, two adjacent R 1 substituents may be joined to form an unsubstituted cycloalkyl (e.g., C3-C 8 , C3-G5, C4-C6, or C5-C 6 ). In embodiments, two adjacent R 1 substituents may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, two adjacent R 1 substituents may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered In embodiments, two adjacent R 1 substituents may be joined to form an unsubstituted

heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, two adjacent R 1 substituents may be joined to form a substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, two adjacent R 1 substituents may be joined to form a substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, two adjacent R 1 substituents may be joined to form an unsubstituted aryl (e.g., C 6 - Ci2, C 6 -Cio, or phenyl). In embodiments, two adjacent R 1 substituents may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, two adjacent R 1 substituents may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, two adjacent R 1 substituents may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0258] In embodiments, two adjacent R 1 substituents may be joined to form an R 20 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 20 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20 -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 20 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, two adjacent R 1 substituents may be joined to form an unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), unsubstituted

heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0259] In embodiments, R 1 1 is independently substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 1 is independently substituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 1 is independently unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 1 is independently unsubstituted methyl. In embodiments, R 1 1 is independently unsubstituted ethyl. In embodiments, R 1 1 is independently unsubstituted propyl. In embodiments, R 1 1 is independently unsubstituted isopropyl. In embodiments, R 1 1 is independently unsubstituted tert-butyl. In embodiments, R 1 1 is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 1 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 1 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 1 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 1 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 1 is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 1 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 1 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 1 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 1 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 1 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 1 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 1 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 1 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 1 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0260] In embodiments, R 1 1 is independently hydrogen,

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 20 -substituted or

unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2), R 20 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ), R 20 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 20 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 1 is independently hydrogen,

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , - HC=(0) H 2 , - HS0 2 H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1 is independently -F, -CI, -Br, or -I.

[0261] In embodiments, R 1 2 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 1 2 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 1 2 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 1 2 is independently unsubstituted methyl. In embodiments, R 1 2 is independently unsubstituted ethyl. In embodiments, R 1 2 is independently unsubstituted propyl. In embodiments, R 1 2 is independently unsubstituted isopropyl. In embodiments, R 1 2 is independently unsubstituted tert-butyl. In embodiments, R 1 2 is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 2 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 2 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 2 is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 1 2 is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 1 2 is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 1 2 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 2 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 2 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 2 is independently substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl). In embodiments, R 1 2 is independently substituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl). In embodiments, R 1 2 is independently unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl). In embodiments, R 1 2 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 2 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 2 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0262] In embodiments, R 1 2 is independently hydrogen,

halogen, -CX^, -CHX^, -CH 2 X\ -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 20 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 20 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ), R 20 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 20 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 2 is independently hydrogen,

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1 is independently -F, -CI, -Br, or -I.

[0263] In embodiments, R 1 3 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 3 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 3 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 3 is independently unsubstituted methyl. In embodiments, R 1 3 is independently unsubstituted ethyl. In embodiments, R 1 3 is independently unsubstituted propyl. In embodiments, R 1 3 is independently unsubstituted isopropyl. In embodiments, R 1 3 is independently unsubstituted tert-butyl. In embodiments, R 1 3 is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 3 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 3 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 3 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 3 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 3 is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 3 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 3 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 3 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 3 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 3 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 3 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 3 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 3 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 3 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0264] In embodiments, R 1 3 is independently hydrogen,

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 20 -substituted or

unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2), R 20 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ), R 20 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 20 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 3 is independently hydrogen,

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1 is independently -F, -CI, -Br, or -I.

[0265] In embodiments, R 1 4 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 4 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 4 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 4 is independently unsubstituted methyl. In embodiments, R 1 4 is independently unsubstituted ethyl. In embodiments, R 1 4 is independently unsubstituted propyl. In embodiments, R 1 4 is independently unsubstituted isopropyl. In embodiments, R 1 4 is independently unsubstituted tert-butyl. In embodiments, R 1 4 is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 4 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 4 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 1 4 is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 1 4 is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 1 4 is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 1 4 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 4 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 4 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 4 is independently substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 1 4 is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 1 4 is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 1 4 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 4 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 4 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0266] In embodiments, R 1 4 is independently hydrogen,

halogen, -CX^, -CHX^, -CH 2 X\ -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 20 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 20 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ), R 20 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 20 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 4 is independently hydrogen,

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1 is independently -F, -CI, -Br, or -I.

[0267] In embodiments, R 1 5 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 5 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 5 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1 5 is independently unsubstituted methyl. In embodiments, R 1 5 is independently unsubstituted ethyl. In embodiments, R 1 5 is independently unsubstituted propyl. In embodiments, R 1 5 is independently unsubstituted isopropyl. In embodiments, R 1 5 is independently unsubstituted tert-butyl. In embodiments, R 1 5 is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 5 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 5 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1 5 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 5 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 5 is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1 5 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 5 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 5 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1 5 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 5 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 5 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1 5 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 5 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 5 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0268] In embodiments, R 1 5 is independently hydrogen,

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 20 -substituted or

unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2), R 20 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ), R 20 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 20 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1 5 is independently hydrogen,

halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -OCH2X 1 , -OCHX^, -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1 is independently -F, -CI, -Br, or -I.

[0269] R 20 is independently oxo,

halogen, -CX 20 3 , -CHX 20 2 , -CH 2 X 20 , -OCX 20 3 , -OCH2X 20 , -OCHX 20 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, -NHOH, R 21 - substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 21 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 21 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 21 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 21 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 21 - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 20 is independently oxo,

halogen, -CX 20 3 , -CHX 20 2 , -CH 2 X 20 , -OCX 20 3 , -OCH2X 20 , -OCHX 20 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 20 is independently -F, -CI, -Br, or -I. In embodiments, R 20 is independently unsubstituted methyl. In embodiments, R 20 is independently unsubstituted ethyl. [0270] R 21 is independently oxo,

halogen, -CX 21 3 , -CHX 21 2 , -CH 2 X 21 , -OCX 21 3 , -OCH2X 21 , -OCHX 21 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 22 -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 22 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 22 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 22 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 22 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 22 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 21 is independently oxo,

halogen, -CX 21 3 , -CHX 21 2 , -CH 2 X 21 , -OCX 21 3 , -OCH2X 21 , -OCHX 21 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 21 is independently -F, -CI, -Br, or -I. In embodiments, R 21 is independently unsubstituted methyl. In embodiments, R 21 is independently unsubstituted ethyl.

[0271] R 22 is independently oxo,

halogen, -CX 22 3 , -CHX 22 2 , -CH 2 X 22 , -OCX 22 3 , -OCH2X 22 , -OCHX 22 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 22 is independently -F, -CI, -Br, or -I. In embodiments, R 22 is independently unsubstituted methyl. In embodiments, R 22 is independently unsubstituted ethyl.

[0272] In embodiments, R 1A is independently hydrogen. In embodiments, R 1A is

independently -CX 1A 3. In embodiments, R 1A is independently -CHX 1A 2 . In embodiments, R 1A is independently -CH 2 X 1A . In embodiments, R 1A is independently -CN. In embodiments, R 1A is independently -COOH. In embodiments, R 1A is independently -CO H2. In embodiments, X 1A is independently -F, -CI, -Br, or -I.

[0273] In embodiments, R 1A is independently substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1A is independently substituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 1A is independently unsubstituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 1A is independently unsubstituted methyl. In

embodiments, R 1A is independently unsubstituted ethyl. In embodiments, R 1A is independently unsubstituted propyl. In embodiments, R 1A is independently unsubstituted isopropyl. In embodiments, R 1A is independently unsubstituted tert-butyl. In embodiments, R 1A is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1A is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1A is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1A is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ). In embodiments, R 1A is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 1A is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ). In embodiments, R 1A is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1A is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1A is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1A is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 1A is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 1A is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 1A is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0274] In embodiments, R 1A is independently

hydrogen, -CX 1A 3 , -CHX 1A 2 , -CH 2 X 1A , -CN, -COOH, -CO H2, R 20A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 20A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 20A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20A - substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 20A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A is independently hydrogen, -CX 1A 3 , -CHX 1A 2 , -CH 2 X 1A , -CN, -COOH, -CO H2, unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1A is independently -F, -CI, -Br, or -I. In embodiments, R 1A is independently hydrogen. In embodiments, R 1A is independently unsubstituted methyl. In embodiments, R 1A is independently unsubstituted ethyl.

[0275] In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form a R 20A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 20A - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form a R 20A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0276] R 20A is independently oxo,

halogen, -CX 20A 3 , -CHX 20A 2 , -CH 2 X 20A , -OCX 20A 3 , -OCH 2 X 20A , -OCHX 20A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 21A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 21A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 21A -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 21A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 21A -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 21A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 20A is independently oxo,

halogen, -CX 20A 3 , -CHX 20A 2 , -CH 2 X 20A , -OCX 20A 3 , -OCH 2 X 20A , -OCHX 20A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH 2 , -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 20A is independently -F, -CI, -Br, or -I. In embodiments, R 20A is independently unsubstituted methyl. In embodiments, R 20A is independently

unsubstituted ethyl. [0277] R 21A is independently oxo,

halogen, -CX 21A 3 , -CHX 21A 2 , -CH 2 X 21A , -OCX 21A 3 , -OCH 2 X 21A , -OCHX 21A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 22A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 22A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 22A - substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 22A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 22A - substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 22A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 21A is independently oxo,

halogen, -CX 21A 3 , -CHX 21A 2 , -CH 2 X 21A , -OCX 21A 3 , -OCH 2 X 21A , -OCHX 21A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 21A is independently -F, -CI, -Br, or -I. In embodiments, R 21A is independently unsubstituted methyl. In embodiments, R 21A is independently

unsubstituted ethyl.

[0278] R 22A is independently oxo,

halogen, -CX 22A 3 , -CHX 22A 2 , -CH 2 X 22A , -OCX 22A 3 , -OCH 2 X 22A , -OCHX 22A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 22A is independently -F, -CI, -Br, or -I. In embodiments, R 22A is independently unsubstituted methyl. In embodiments, R 22A is independently

unsubstituted ethyl.

[0279] In embodiments, R 1B is independently hydrogen. In embodiments, R 1B is

independently -CX 1B 3 . In embodiments, R 1B is independently -CHX 1B 2 . In embodiments, R 1B is independently -CH 2 X 1B . In embodiments, R 1B is independently -CN. In embodiments, R 1B is independently -COOH. In embodiments, R 1B is independently -CONH2. In embodiments, X 1B is independently -F, -CI, -Br, or -I.

[0280] In embodiments, R 1B is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1B is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 1B is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 1B is independently unsubstituted methyl. In

embodiments, R 1B is independently unsubstituted ethyl. In embodiments, R 1B is independently unsubstituted propyl. In embodiments, R 1B is independently unsubstituted isopropyl. In embodiments, R 1B is independently unsubstituted tert-butyl. In embodiments, R 1B is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1B is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1B is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1B is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1B is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1B is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1B is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1B is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1B is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1B is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1B is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1B is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1B is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1B is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1B is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0281] In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0282] In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0283] In embodiments, R 1B is independently

hydrogen, -CX 1B 3 , -CHX 1B 2 , -CH 2 X 1B , -CN, -COOH, -CO H 2 , R 20B - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 20B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 20B - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20B -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 20B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1B is independently hydrogen, -CX 1B 3 , -CHX 1B 2 , -CH 2 X 1B , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1B is independently -F, -CI, -Br, or -I. In embodiments, R 1B is independently hydrogen. In embodiments, R 1B is independently unsubstituted methyl. In embodiments, R 1B is independently unsubstituted ethyl.

[0284] In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form a R 20B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 20B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form a R 20B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0285] R 20B is independently oxo,

halogen, -CX 20B 3 , -CHX 20B 2 , -CH 2 X 20B , -OCX 20B 3 , -OCH 2 X 20B , -OCHX 20B 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 21B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 21B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 21B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 21B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 21B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 21B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 20B is independently oxo,

halogen, -CX 20B 3 , -CHX 20B 2 , -CH 2 X 20B , -OCX 20B 3 , -OCH 2 X 20B , -OCHX 20B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 20B is independently -F, -CI, -Br, or -I. In embodiments, R 20B is independently unsubstituted methyl. In embodiments, R 20B is independently

unsubstituted ethyl.

[0286] R 21B is independently oxo,

halogen, -CX 21B 3 , -CHX 21B 2 , -CH 2 X 21B , -OCX 21B 3 , -OCH 2 X 21B , -OCHX 21B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 22B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 22B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 22B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 22B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 22B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 22B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 21B is independently oxo,

halogen, -CX 21B 3 , -CHX 21B 2 , -CH 2 X 21B , -OCX 21B 3 , -OCH 2 X 21B , -OCHX 21B 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 21B is independently -F, -CI, -Br, or -I. In embodiments, R 21B is independently unsubstituted methyl. In embodiments, R 21B is independently

unsubstituted ethyl.

[0287] R 22B is independently oxo,

halogen, -CX 22B 3 , -CHX 22B 2 , -CH 2 X 22B , -OCX 22B 3 , -OCH 2 X 22B , -OCHX 22B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 22B is independently -F, -CI, -Br, or -I. In embodiments, R 22B is independently unsubstituted methyl. In embodiments, R 22B is independently

unsubstituted ethyl. [0288] In embodiments, R 1C is independently hydrogen. In embodiments, R 1C is

independently -CX 1C 3 . In embodiments, R 1C is independently -CHX 1C 2 . In embodiments, R 1C is independently -CH 2 X 1C . In embodiments, R 1C is independently -CN. In embodiments, R 1C is independently -COOH. In embodiments, R 1C is independently -CONH2. In embodiments, X 1C is independently -F, -CI, -Br, or -I. [0289] In embodiments, R 1C is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 ,

Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 1C is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 1C is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 1C is independently unsubstituted methyl. In

embodiments, R 1C is independently unsubstituted ethyl. In embodiments, R 1C is independently unsubstituted propyl. In embodiments, R 1C is independently unsubstituted isopropyl. In embodiments, R 1C is independently unsubstituted tert-butyl. In embodiments, R 1C is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1C is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1C is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 1C is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1C is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1C is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 1C is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1C is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1C is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1C is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1C is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1C is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 1C is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1C is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1C is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0290] In embodiments, R 1C is independently

hydrogen, -CX 1C 3 , -CHX 1C 2 , -CH 2 X 1C , -CN, -COOH, -CO H 2 , R 20C -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 20C -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20C -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 20C - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20C -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 20C -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1C is independently hydrogen, -CX 1C 3 , -CHX 1C 2 , -CH 2 X 1C , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1C is independently -F, -CI, -Br, or -I. In embodiments, R 1C is independently hydrogen. In embodiments, R 1C is independently

unsubstituted methyl. In embodiments, R 1C is independently unsubstituted ethyl.

[0291] R 20C is independently oxo,

halogen, -CX 20C 3 , -CHX 20C 2 , -CH 2 X 20C , -OCX 20C 3 , -OCH 2 X 20C , -OCHX 20C 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, - HOH, R 2ic -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 21C - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 2ic -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 21C - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 2ic -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 2ic -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 20C is independently oxo,

halogen, -CX 20C 3 , -CHX 20C 2 , -CH 2 X 20C , -OCX 20C 3 , -OCH 2 X 20C , -OCHX 20C 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 20C is independently -F, -CI, -Br, or -I. In embodiments, R 20C is independently unsubstituted methyl. In embodiments, R 20C is independently

unsubstituted ethyl.

[0292] R 21C is independently oxo,

halogen, -CX 21C 3 , -CHX 21C 2 , -CH 2 X 21C , -0CX 21C 3 , -0CH 2 X 21C , -0CHX 21C 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 22C -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 22C -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 22C -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 22C -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 22C -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 22C -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 21C is independently oxo,

halogen, -CX 21C 3 , -CHX 21C 2 , -CH 2 X 21C , -0CX 21C 3 , -0CH 2 X 21C , -0CHX 21C 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 21C is independently -F, -CI, -Br, or -I. In embodiments, R 21C is independently unsubstituted methyl. In embodiments, R 21C is independently

unsubstituted ethyl.

[0293] R 22C is independently oxo,

halogen, -CX 22C 3 , -CHX 22C 2 , -CH 2 X 22C , -OCX 22C 3 , -OCH 2 X 22C , -OCHX 22C 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 22C is independently -F, -CI, -Br, or -I. In embodiments, R 22C is independently unsubstituted methyl. In embodiments, R 22C is independently

unsubstituted ethyl.

[0294] In embodiments, R 1D is independently hydrogen. In embodiments, R 1D is

independently -CX 1D 3 . In embodiments, R 1D is independently -CHX 1D 2 . In embodiments, R 1D is independently -CH 2 X 1D . In embodiments, R 1D is independently -CN. In embodiments, R 1D is independently -COOH. In embodiments, R 1D is independently -CO H 2 . In embodiments, X 1D is independently -F, -CI, -Br, or -I.

[0295] In embodiments, R 1D is independently substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 1D is independently substituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 1D is independently unsubstituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 1D is independently unsubstituted methyl. In

embodiments, R 1D is independently unsubstituted ethyl. In embodiments, R 1D is independently unsubstituted propyl. In embodiments, R 1D is independently unsubstituted isopropyl. In embodiments, R 1D is independently unsubstituted tert-butyl. In embodiments, R 1D is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1D is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 1D is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 1D is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ). In embodiments, R 1D is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 1D is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ). In embodiments, R 1D is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1D is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1D is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 1D is independently substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl). In embodiments, R 1D is independently substituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl). In embodiments, R 1D is independently unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl). In embodiments, R 1D is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1D is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1D is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0296] In embodiments, R 1D is independently

hydrogen, -CX 1D 3 , -CHX 1D 2 , -CH 2 X 1D , -CN, -COOH, -CO H 2 , R 20D -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 20D -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 20D -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 20D - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 20D -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 20D -substi luted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 1D is independently hydrogen, -CX 1D 3 , -CHX 1D 2 , -CH 2 X 1D , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 1D is independently -F, -CI, -Br, or -I. In embodiments, R 1D is independently hydrogen. In embodiments, R 1D is independently

unsubstituted methyl. In embodiments, R 1D is independently unsubstituted ethyl.

[0297] R 20D is independently oxo,

halogen, -CX 20D 3 , -CHX 20D 2 , -CH 2 X 20D , -OCX 20D 3 , -OCH 2 X 20D , -OCHX 20D 2 , -CN, -OH, -NH 2 , - COOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -SO4H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 21D -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 21D -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 21D -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 21D -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 21D -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 21D -substi luted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 20D is independently oxo,

halogen, -CX 20D 3 , -CHX 20D 2 , -CH 2 X 20D , -OCX 20D 3 , -OCH 2 X 20D , -OCHX 20D 2 , -CN, -OH, -NH 2 , - COOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 20D is independently -F, -CI, -Br, or -I. In embodiments, R 20D is independently unsubstituted methyl. In embodiments, R 20D is independently

unsubstituted ethyl.

[0298] R 21D is independently oxo,

halogen, -CX 21D 3 , -CHX 21D 2 , -CH 2 X 21D , -OCX 21D 3 , -OCH 2 X 21D , -OCHX 21D 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH 2 , -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 22D -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 22D -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 22D -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 22D -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 22D -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 22D -substi luted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 21D is independently oxo,

halogen, -CX 21D 3 , -CHX 21D 2 , -CH 2 X 21D , -OCX 21D 3 , -OCH 2 X 21D , -OCHX 21D 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 21D is independently -F, -CI, -Br, or -I. In embodiments, R 21D is independently unsubstituted methyl. In embodiments, R 21D is independently

unsubstituted ethyl.

[0299] R 22D is independently oxo,

halogen, -CX 22D 3 , -CHX 22D 2 , -CH 2 X 22D , -OCX 22D 3 , -OCH 2 X 22D , -OCHX 22D 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 22D is independently -F, -CI, -Br, or -I. In embodiments, R 22D is independently unsubstituted methyl. In embodiments, R 22D is independently

unsubstituted ethyl.

[0300] In embodiments, R 1 is independently halogen, -CXS, -CHX^, -CH2X 1 , or

unsubstituted C1-C2 alkyl. In embodiments, R 1 is independently halogen, -CF 3 , -CHF2, -CH2F, or -CH 3 . In embodiments, R 1 is independently -F, -CI, or -CF 3 . In embodiments, R 1 is independently halogen, -SCX^, -SCHX^, -SCH2X 1 , or unsubstituted 2 to 3 membered heteroalkyl. In embodiments, R 1 is independently halogen, -SCF 3 , -SCHF2, -SCH2F, or -SCH 3 . In embodiments, R 1 is independently -F, -CI, -SCH 3 , or -CF 3 . [0301] In embodiments, Ring B is aryl (e.g. C 6 -Ci2 aryl, C 6 -Cio aryl, or C 6 aryl). In

embodiments, Ring B is C 6 -Ci2 aryl. In embodiments, Ring B is C 6 -Cio aryl. In embodiments, Ring B is C 6 aryl. It will be understood when z2 is 0, Ring B is unsubstituted (e.g., unsubstituted aryl or unsubstituted heteroaryl) in addition to the bond to - H-. It will be understood when z2 is greater than 0 (e.g., 1, 2, 3, or 4), Ring B is substituted with one or more R 2 substituents (e.g., R 2 - substituted aryl or R 2 -substituted heteroaryl) in addition to the bond to- H-.

[0302] In embodiments, Ring B is heteroaryl (e.g. 5 to 12 membered heteroaryl, 5 to 10 membered heteroaryl, 5 to 9 membered heteroaryl, or 5 to 6 membered heteroaryl). In

embodiments, Ring B is 5 to 12 membered heteroaryl. In embodiments, Ring B is 5 to 10 membered heteroaryl. In embodiments, Ring B is 5 to 9 membered heteroaryl. In embodiments, Ring B is 5 to 6 membered heteroaryl.

[0303] In embodiments, Ring B is naphthyl. In embodiments, Ring B is biphenyl. In embodiments, Ring B is phenyl. In embodiments, Ring B is pyridyl. In embodiments, Ring B is pyrazolyl. In embodiments, Ring B is imidazolyl. In embodiments, Ring B is oxazolyl. In embodiments, Ring B is isoxazolyl. In embodiments, Ring B is thiazolyl. In embodiments, Ring B is fur any 1. In embodiments, Ring B is pyrrolyl. In embodiments, Ring B is thienyl. In embodiments, Ring B is 2-pyridyl. In embodiments, Ring B is 3-pyridyl. In embodiments, Ring B is 4-pyridyl. [0304] In embodiments, Ring B is indolinyl. In embodiments, Ring B is indazolyl. In embodiments, Ring B is benzimidazolyl. In embodiments, Ring B is benzoxazolyl. In embodiments, Ring B is azaindolyl. In embodiments, Ring B is purinyl. In embodiments, Ring B is indolyl. In embodiments, Ring B is pyrazinyl. In embodiments, Ring B is pyrrolyl. In embodiments, Ring B is imidazolyl. In embodiments, Ring B is pyrazolyl. In embodiments, Ring B is triazolyl. In embodiments, Ring B is tetrazolyl.

[0305] In embodiments, Ring B is a phenyl or 5 to 6 membered heteroaryl. In embodiments, Ring B is a phenyl.

[0306] In embodiments, R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , - OCH 2 X 2 , -OCHX 2 2 , -CN, -SO^R 20 , -SO v2 R 2A R 2B , - HC(0) R 2A R 2B , -N(0) m2 , - R 2A R 2B , -C( 0)R 2C , -C(0)-OR 2C , -C(0) R 2A R 2B , -OR 2D , - R 2A S0 2 R 2D , - R 2A C(0)R 2C , - R 2A C(0)OR 2C , -N R 2A OR 2C , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. Two adjacent R 2 substituents may optionally be joined to form a substituted or unsubstituted cycloalkyl, substituted or

unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0307] In embodiments, R 2 is independently -CX 2 3 . In embodiments, R 2 is independently - CHX 2 2 . In embodiments, R 2 is independently -CH 2 X 2 . In embodiments, R 2 is

independently -OCX 2 3 . In embodiments, R 2 is independently -OCH 2 X 2 . In embodiments, R 2 is independently -OCHX 2 2 . In embodiments, R 2 is independently -CN. In embodiments, R 2 is independently -SC R 20 . In embodiments, R 2 is independently -SR 2D . In embodiments, R 2 is independently -SO v2 NR 2A R 2B In embodiments, R 2 is independently -NHC(0)NR 2A R 2B . In embodiments, R 2 is independently -N(0)m2. In embodiments, R 2 is independently -NR 2A R 2B . In embodiments, R 2 is independently -C(0)R 2C . In embodiments, R 2 is independently -C(0)-OR 2C . In embodiments, R 2 is independently -C(0)NR 2A R 2B . In embodiments, R 2 is

independently -OR 2D . In embodiments, R 2 is independently -NR 2A S0 2 R 2D . In embodiments, R 2 is independently -NR 2A C(0)R 2C . In embodiments, R 2 is independently -NR 2A C(0)OR 2C . In embodiments, R 2 is independently -NR 2A OR 2C . In embodiments, R 2 is independently -OH. In embodiments, R 2 is independently -NH 2 . In embodiments, R 2 is independently -COOH. In embodiments, R 2 is independently -CONH 2 . In embodiments, R 2 is independently -N0 2 . In embodiments, R 2 is independently -SH. In embodiments, R 2 is independently halogen. In embodiments, R 2 is independently -F. In embodiments, R 2 is independently -CI. In

embodiments, R 2 is independently -Br. In embodiments, R 2 is independently -I. In embodiments, R 2 is independently -CF 3 . In embodiments, R 2 is independently -CHF2. In embodiments, R 2 is independently -CH2F. In embodiments, R 2 is independently -OCF 3 . In embodiments, R 2 is independently -OCH2F. In embodiments, R 2 is independently -OCHF2. In embodiments, R 2 is independently -OCH 3 . In embodiments, R 2 is independently -OCH2CH 3 . In embodiments, R 2 is independently -OCH2CH2CH3. In embodiments, R 2 is independently - OCH(CH 3 )2. In embodiments, R 2 is independently -OC(CH 3 ) 3 . In embodiments, R 2 is independently -SCH 3 . In embodiments, R 2 is independently -SCH2CH3. In embodiments, R 2 is independently -SCH2CH2CH3. In embodiments, R 2 is independently -SCH(CH 3 )2. In embodiments, R 2 is independently -SC(CH 3 ) 3 . In embodiments, R 2 is independently -CH 3 . In embodiments, R 2 is independently -CH2CH 3 . In embodiments, R 2 is independently - CH2CH2CH 3 . In embodiments, R 2 is independently -CH(CH 3 )2. In embodiments, R 2 is independently -C(CH 3 ) 3 . In embodiments, R 2 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 2 is independently -CH2CH(CH 3 )C(0)OCH 3 . In embodiments, R 2 is

independently -C(0)OCH 3 . In embodiments, R 2 is independently -C(0)OCH 2 CH 3 . In embodiments, R 2 is independently -C(0)OCH(CH 3 )2. In embodiments, R 2 is independently - C(0)OC(CH 3 ) 3 . In embodiments, R 2 is independently - HC(0)CH 3 . In embodiments, R 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 is independently - HC(0)C(CH 3 ) 3 . In embodiments, R 2 is independently -N 3 .

[0308] In embodiments, R 2 is independently hydrogen, halogen, -CX 2 3 , -CHX 2 2, - CH2X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2, -CN, -SO^R 20 , -SO v2 NR 2A R 2B , - HC(0) R 2A R 2B , -N(O) m2, -NR 2A R 2B , -C(0)R 2C , -C(0)-OR 2C , -C(0) R 2A R 2B , -OR 2D , - R 2A S0 2 R 2D , - R 2A C(0)R 2C , -N R 2A C(0)OR 2C , - R 2A OR 2C , substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci- C2), substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0309] In embodiments, R 2 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 2 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 is independently unsubstituted methyl. In embodiments, R 2 is independently unsubstituted ethyl. In embodiments, R 2 is independently unsubstituted propyl. In embodiments, R 2 is independently unsubstituted isopropyl. In embodiments, R 2 is independently unsubstituted tert-butyl. In embodiments, R 2 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 - C 6 , or C5-C6). In embodiments, R 2 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 -C 6 , or C5-C6). In embodiments, R 2 is independently unsubstituted cycloalkyl (e.g., C3-C8, C 3 - C 6 , C 4 -C 6 , or C5-C6). In embodiments, R 2 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In

embodiments, R 2 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0310] In embodiments, R 2 is independently

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH 2 X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -N0 2 , -SH, -SO3H, -SO4H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HS0 2 H, - HC=(0)H, - HC(0)-OH, - HOH, R 23 -substituted or

unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or Ci-C 2 ), R 23 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C 4 -C 6 , or C5-C 6 ), R 23 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23 -substituted or unsubstituted aryl (e.g., C 6 - C 12 , C 6 -Cio, or phenyl), or R 23 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH 2 X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HS0 2 H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2 is independently -F, -CI, -Br, or -I. [0311] In embodiments, two adjacent R 2 substituents may be joined to form a substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , G5-C10, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0312] In embodiments, two adjacent R 2 substituents may be joined to form a substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ). In embodiments, two adjacent R 2 substituents may be joined to form a substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ). In embodiments, two adjacent R 2 substituents may be joined to form an unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ). In embodiments, two adjacent R 2 substituents may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, two adjacent R 2 substituents may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered In embodiments, two adjacent R 2 substituents may be joined to form an unsubstituted

heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, two adjacent R 2 substituents may be joined to form a substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl). In embodiments, two adjacent R 2 substituents may be joined to form a substituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl). In embodiments, two adjacent R 2 substituents may be joined to form an unsubstituted aryl (e.g., C 6 - Ci 2 , C 6 -Cio, or phenyl). In embodiments, two adjacent R 2 substituents may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, two adjacent R 2 substituents may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, two adjacent R 2 substituents may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0313] In embodiments, two adjacent R 2 substituents may be joined to form an R 23 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 23 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23 -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 23 - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, two adjacent R 2 substituents may be joined to form an unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), unsubstituted

heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0314] In embodiments, R 2 1 is independently hydrogen. In embodiments, R 2 1 is

independently -CX 2 3 . In embodiments, R 2 1 is independently -CHX 2 2 . In embodiments, R 2 1 is independently -CH 2 X 2 . In embodiments, R 2 1 is independently -OCX 2 3. In embodiments, R 2 1 is independently -OCH 2 X 2 . In embodiments, R 2 1 is independently -OCHX 2 2 . In embodiments, R 2 1 is independently -CN. In embodiments, R 2 1 is independently -SC R 20 . In embodiments, R 2 1 is independently -SO v2 R 2A R 2B In embodiments, R 2 1 is independently - HC(0) R 2A R 2B . In embodiments, R 2 1 is independently -N(0)m2. In embodiments, R 2 1 is

independently - R 2A R 2B . In embodiments, R 2 1 is independently -C(0)R 2C . In embodiments, R 2 1 is independently -C(0)-OR 2C . In embodiments, R 2 1 is independently -C(0) R 2A R 2B . In embodiments, R 2 1 is independently -OR 2D . In embodiments, R 2 1 is

independently - R 2A S0 2 R 2D . In embodiments, R 2 1 is independently - R 2A C(0)R 2C . In embodiments, R 2 1 is independently - R 2A C(0)OR 2C . In embodiments, R 2 1 is

independently - R 2A OR 2C . In embodiments, R 2 1 is independently -OH. In embodiments, R 2 1 is independently - H 2 . In embodiments, R 2 1 is independently -COOH. In embodiments, R 2 1 is independently -CO H 2 . In embodiments, R 2 1 is independently -N0 2 . In embodiments, R 2 1 is independently -SH. In embodiments, R 2 1 is independently halogen. In embodiments, R 2 1 is independently -F. In embodiments, R 2 1 is independently -CI. In embodiments, R 2 1 is independently -Br. In embodiments, R 2 1 is independently -I. In embodiments, R 2 1 is independently -CF3. In embodiments, R 2 1 is independently -CHF 2 . In embodiments, R 2 1 is independently -CH 2 F. In embodiments, R 2 1 is independently -OCF3. In embodiments, R 2 1 is independently -OCH 2 F. In embodiments, R 2 1 is independently -OCHF 2 . In embodiments, R 2 1 is independently -OCH3. In embodiments, R 2 1 is independently -OCH2CH3. In embodiments, R 2 1 is independently -OCH2CH2CH3. In embodiments, R 2 1 is independently -OCH(CH 3 ) 2 . In embodiments, R 2 1 is independently -OC(CH 3 ) 3 . In embodiments, R 2 1 is independently -SCH 3 . In embodiments, R 2 1 is independently -SCH2CH3. In embodiments, R 2 1 is independently - SCH 2 CH 2 CH 3 . In embodiments, R 2 1 is independently -SCH(CH 3 ) 2 . In embodiments, R 2 1 is independently -SC(CH 3 ) 3 . In embodiments, R 2 1 is independently -CH 3 . In embodiments, R 2 1 is independently -CH 2 CH 3 . In embodiments, R 2 1 is independently -CH 2 CH 2 CH 3 . In embodiments, R 2 1 is independently -CH(CH 3 ) 2 . In embodiments, R 2 1 is independently - C(CH 3 ) 3 . In embodiments, R 2 1 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 2 1 is independently -CH 2 CH(CH 3 )C(0)OCH 3 . In embodiments, R 2 1 is independently -C(0)OCH 3 . In embodiments, R 2 1 is independently -C(0)OCH 2 CH 3 . In embodiments, R 2 1 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 1 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 1 is independently -NHC(0)CH 3 . In embodiments, R 2 1 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 1 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 1 is independently - HC(0)C(CH 3 ) 3 . In embodiments, R 2 1 is independently -N 3 .

[0315] In embodiments, R 2 1 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 1 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 1 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 1 is independently unsubstituted methyl. In embodiments, R 2 1 is independently unsubstituted ethyl. In embodiments, R 2 1 is independently unsubstituted propyl. In embodiments, R 2 1 is independently unsubstituted isopropyl. In embodiments, R 2 1 is independently unsubstituted tert-butyl. In embodiments, R 2 1 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 1 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 1 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 2 1 is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 2 1 is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 2 1 is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 2 1 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 1 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 1 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 1 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 1 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 1 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 1 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 1 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 1 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0316] In embodiments, R 2 1 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH 2 X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 23 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 23 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 23 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 23 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 1 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2 , -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2 is independently -F, -CI, -Br, or -I.

[0317] In embodiments, R 2 2 is independently hydrogen. In embodiments, R 2 2 is

independently -CX 2 3 . In embodiments, R 2 2 is independently -CHX 2 2 . In embodiments, R 2 2 is independently -CH 2 X 2 . In embodiments, R 2 2 is independently -OCX 2 3 . In embodiments, R 2 2 is independently -OCH2X 2 . In embodiments, R 2 2 is independently -OCHX 2 2 . In embodiments, R 2 2 is independently -CN. In embodiments, R 2 2 is independently -SC R 20 . In embodiments, R 2 2 is independently -SO v2 R 2A R 2B In embodiments, R 2 2 is independently - HC(0) R 2A R 2B . In embodiments, R 2 2 is independently -N(0)m2. In embodiments, R 2 2 is

independently - R 2A R 2B . In embodiments, R 2 2 is independently -C(0)R 2C . In embodiments, R 2 2 is independently -C(0)-OR 2C . In embodiments, R 2 2 is independently -C(0) R 2A R 2B . In embodiments, R 2 2 is independently -OR 2D . In embodiments, R 2 2 is

independently - R 2A S0 2 R 2D . In embodiments, R 2 2 is independently - R 2A C(0)R 2C . In embodiments, R 2 2 is independently - R 2A C(0)OR 2C . In embodiments, R 2 2 is

independently - R 2A OR 2C . In embodiments, R 2 2 is independently -OH. In embodiments, R 2 2 is independently - H 2 . In embodiments, R 2 2 is independently -COOH. In embodiments, R 2 2 is independently -CO H2. In embodiments, R 2 2 is independently -NO2. In embodiments, R 2 2 is independently -SH. In embodiments, R 2 2 is independently halogen. In embodiments, R 2 2 is independently -F. In embodiments, R 2 2 is independently -CI. In embodiments, R 2 2 is independently -Br. In embodiments, R 2 2 is independently -I. In embodiments, R 2 2 is independently -CF3. In embodiments, R 2 2 is independently -CHF 2 . In embodiments, R 2 2 is independently -CH 2 F. In embodiments, R 2 2 is independently -OCF3. In embodiments, R 2 2 is independently -OCH2F. In embodiments, R 2 2 is independently -OCHF2. In embodiments, R 2 2 is independently -OCH3. In embodiments, R 2 2 is independently -OCH2CH3. In embodiments, R 2 2 is independently -OCH2CH2CH3. In embodiments, R 2 2 is independently -OCH(CH 3 ) 2 . In embodiments, R 2 2 is independently -OC(CH3)3. In embodiments, R 2 2 is independently -SCH3. In embodiments, R 2 2 is independently -SCH2CH3. In embodiments, R 2 2 is independently - SCH2CH2CH3. In embodiments, R 2 2 is independently -SCH(CH 3 ) 2 . In embodiments, R 2 2 is independently -SC(CH3)3. In embodiments, R 2 2 is independently -CH3. In embodiments, R 2 2 is independently -CH2CH3. In embodiments, R 2 2 is independently -CH2CH2CH3. In embodiments, R 2 2 is independently -CH(CH3) 2 . In embodiments, R 2 2 is independently - C(CH 3 )3. In embodiments, R 2 2 is independently -CH 2 CH 2 C(0)OCH3. In embodiments, R 2 2 is independently -CH 2 CH(CH 3 )C(0)OCH3. In embodiments, R 2 2 is independently -C(0)OCH 3 . In embodiments, R 2 2 is independently -C(0)OCH 2 CH3. In embodiments, R 2 2 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 2 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 2 is independently -NHC(0)CH 3 . In embodiments, R 2 2 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 2 is independently - HC(0)CH(CH3) 2 . In embodiments, R 2 2 is

independently - HC(0)C(CH3)3. In embodiments, R 2 2 is independently -N 3 .

[0318] In embodiments, R 2 2 is independently substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 2 is independently substituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 2 is independently unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 2 is independently unsubstituted methyl. In embodiments, R 2 2 is independently unsubstituted ethyl. In embodiments, R 2 2 is independently unsubstituted propyl. In embodiments, R 2 2 is independently unsubstituted isopropyl. In embodiments, R 2 2 is independently unsubstituted tert-butyl. In embodiments, R 2 2 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 2 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 2 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 2 2 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2 2 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2 2 is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2 2 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 2 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 2 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 2 is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 2 2 is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 2 2 is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 2 2 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 2 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 2 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0319] In embodiments, R 2 2 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 23 -substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2), R 23 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 23 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 23 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 2 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2 is independently -F, -CI, -Br, or -I.

[0320] In embodiments, R 2 3 is independently hydrogen. In embodiments, R 2 3 is

independently -CX 2 3. In embodiments, R 2 3 is independently -CHX 2 2 . In embodiments, R 2 3 is independently -CH 2 X 2 . In embodiments, R 2 3 is independently -OCX 2 3. In embodiments, R 2 3 is independently -OCH2X 2 . In embodiments, R 2 3 is independently -OCHX 2 2 . In embodiments, R 2 3 is independently -CN. In embodiments, R 2 3 is independently -SOn2R 2D . In embodiments, R 2 3 is independently -SO v2 NR 2A R 2B In embodiments, R 2 3 is independently -NHC(0)NR 2A R 2B . In embodiments, R 2 3 is independently -N(0)m2. In embodiments, R 2 3 is

independently -NR 2A R 2B . In embodiments, R 2 3 is independently -C(0)R 2C . In embodiments, R 2 3 is independently -C(0)-OR 2C . In embodiments, R 2 3 is independently -C(0)NR 2A R 2B . In embodiments, R 2 3 is independently -OR 2D . In embodiments, R 2 3 is

independently -NR 2A S0 2 R 2D . In embodiments, R 2 3 is independently -NR 2A C(0)R 2C . In embodiments, R 2 3 is independently -NR 2A C(0)OR 2C . In embodiments, R 2 3 is

independently -NR 2A OR 2C . In embodiments, R 2 3 is independently -OH. In embodiments, R 2 3 is independently -NH 2 . In embodiments, R 2 3 is independently -COOH. In embodiments, R 2 3 is independently -CONH2. In embodiments, R 2 3 is independently -NO2. In embodiments, R 2 3 is independently -SH. In embodiments, R 2 3 is independently halogen. In embodiments, R 2 3 is independently -F. In embodiments, R 2 3 is independently -CI. In embodiments, R 2 3 is independently -Br. In embodiments, R 2 3 is independently -I. In embodiments, R 2 3 is independently -CF3. In embodiments, R 2 3 is independently -CHF 2 . In embodiments, R 2 3 is independently -CH 2 F. In embodiments, R 2 3 is independently -OCF3. In embodiments, R 2 3 is independently -OCH 2 F. In embodiments, R 2 3 is independently -OCHF 2 . In embodiments, R 2 3 is independently -OCH3. In embodiments, R 2 3 is independently -OCH 2 CH3. In embodiments, R 2 3 is independently -OCH 2 CH 2 CH 3 . In embodiments, R 2 3 is independently -OCH(CH 3 ) 2 . In embodiments, R 2 3 is independently -OC(CH 3 ) 3 . In embodiments, R 2 3 is independently -SCH 3 . In embodiments, R 2 3 is independently -SCH 2 CH 3 . In embodiments, R 2 3 is independently - SCH 2 CH 2 CH 3 . In embodiments, R 2 3 is independently -SCH(CH 3 ) 2 . In embodiments, R 2 3 is independently -SC(CH 3 ) 3 . In embodiments, R 2 3 is independently -CH 3 . In embodiments, R 2 3 is independently -CH 2 CH 3 . In embodiments, R 2 3 is independently -CH 2 CH 2 CH 3 . In embodiments, R 2 3 is independently -CH(CH 3 ) 2 . In embodiments, R 2 3 is independently -

C(CH 3 ) 3 . In embodiments, R 2 3 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 2 3 is independently -CH 2 CH(CH 3 )C(0)OCH 3 . In embodiments, R 2 3 is independently -C(0)OCH 3 . In embodiments, R 2 3 is independently -C(0)OCH 2 CH 3 . In embodiments, R 2 3 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 3 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 3 is independently -NHC(0)CH 3 . In embodiments, R 2 3 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 3 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 3 is independently - HC(0)C(CH 3 ) 3 . In embodiments, R 2 3 is independently -N 3 .

[0321] In embodiments, R 2 3 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 2 3 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 2 3 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 2 3 is independently unsubstituted methyl. In embodiments, R 2 3 is independently unsubstituted ethyl. In embodiments, R 2 3 is independently unsubstituted propyl. In embodiments, R 2 3 is independently unsubstituted isopropyl. In embodiments, R 2 3 is independently unsubstituted tert-butyl. In embodiments, R 2 3 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 3 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 3 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 3 is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 2 3 is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 2 3 is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 2 3 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 3 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 3 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 3 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 3 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 3 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 3 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 3 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 3 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0322] In embodiments, R 2 3 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH 2 X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH 2 , -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 23 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 23 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 23 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 23 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 3 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2 , -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2 is independently -F, -CI, -Br, or -I. [0323] In embodiments, R 2 4 is independently hydrogen. In embodiments, R 2 4 is independently -CX 2 3 . In embodiments, R 2 4 is independently -CHX 2 2 . In embodiments, R 2 4 is independently -CH 2 X 2 . In embodiments, R 2 4 is independently -OCX 2 3 . In embodiments, R 2 4 is independently -OCH 2 X 2 . In embodiments, R 2 4 is independently -OCHX 2 2 . In embodiments, R 2 4 is independently -CN. In embodiments, R 2 4 is independently -SC R 20 . In embodiments, R 2 4 is independently -SO v2 R 2A R 2B . In embodiments, R 2 4 is independently - HC(0) R 2A R 2B . In embodiments, R 2 4 is independently -N(0)m2. In embodiments, R 2 4 is

independently - R 2A R 2B . In embodiments, R 2 4 is independently -C(0)R 2C . In embodiments, R 2 4 is independently -C(0)-OR 2C . In embodiments, R 2 4 is independently -C(0) R 2A R 2B . In embodiments, R 2 4 is independently -OR 2D . In embodiments, R 2 4 is

independently - R 2A S0 2 R 2D . In embodiments, R 2 4 is independently - R 2A C(0)R 2C . In embodiments, R 2 4 is independently - R 2A C(0)OR 2C . In embodiments, R 2 4 is

independently - R 2A OR 2C . In embodiments, R 2 4 is independently -OH. In embodiments, R 2 4 is independently - H 2 . In embodiments, R 2 4 is independently -COOH. In embodiments, R 2 4 is independently -CO H2. In embodiments, R 2 4 is independently -NO2. In embodiments, R 2 4 is independently -SH. In embodiments, R 2 4 is independently halogen. In embodiments, R 2 4 is independently -F. In embodiments, R 2 4 is independently -CI. In embodiments, R 2 4 is independently -Br. In embodiments, R 2 4 is independently -I. In embodiments, R 2 4 is independently -CF 3 . In embodiments, R 2 4 is independently -CHF 2 . In embodiments, R 2 4 is independently -CH 2 F. In embodiments, R 2 4 is independently -OCF 3 . In embodiments, R 2 4 is independently -OCH2F. In embodiments, R 2 4 is independently -OCHF2. In embodiments, R 2 4 is independently -OCH 3 . In embodiments, R 2 4 is independently -OCH2CH3. In embodiments, R 2 4 is independently -OCH 2 CH 2 CH 3 . In embodiments, R 2 4 is independently -OCH(CH 3 ) 2 . In embodiments, R 2 4 is independently -OC(CH 3 ) 3 . In embodiments, R 2 4 is independently -SCH 3 . In embodiments, R 2 4 is independently -SCH2CH3. In embodiments, R 2 4 is independently - SCH 2 CH 2 CH 3 . In embodiments, R 2 4 is independently -SCH(CH 3 ) 2 . In embodiments, R 2 4 is independently -SC(CH 3 ) 3 . In embodiments, R 2 4 is independently -CH 3 . In embodiments, R 2 4 is independently -CH 2 CH 3 . In embodiments, R 2 4 is independently -CH 2 CH 2 CH 3 . In embodiments, R 2 4 is independently -CH(CH 3 ) 2 . In embodiments, R 2 4 is independently - C(CH 3 ) 3 . In embodiments, R 2 4 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 2 4 is independently -CH 2 CH(CH 3 )C(0)OCH 3 . In embodiments, R 2 4 is independently -C(0)OCH 3 . In embodiments, R 2 4 is independently -C(0)OCH 2 CH 3 . In embodiments, R 2 4 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 4 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 4 is independently -NHC(0)CH 3 . In embodiments, R 2 4 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 4 is independently - HC(0)CH(CH3)2. In embodiments, R 2 4 is independently - HC(0)C(CH3)3. In embodiments, R 2 4 is independently -N 3 .

[0324] In embodiments, R 2 4 is independently substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 4 is independently substituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 4 is independently unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 4 is independently unsubstituted methyl. In embodiments, R 2 4 is independently unsubstituted ethyl. In embodiments, R 2 4 is independently unsubstituted propyl. In embodiments, R 2 4 is independently unsubstituted isopropyl. In embodiments, R 2 4 is independently unsubstituted tert-butyl. In embodiments, R 2 4 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 4 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 4 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 4 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2 4 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2 4 is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2 4 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 4 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 4 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 4 is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 2 4 is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 2 4 is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 2 4 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 4 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 4 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0325] In embodiments, R 2 4 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 23 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 23 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 23 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 23 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 4 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2 is independently -F, -CI, -Br, or -I. [0326] In embodiments, R 2 5 is independently hydrogen. In embodiments, R 2 5 is

independently -CX 2 3. In embodiments, R 2 5 is independently -CHX 2 2 . In embodiments, R 2 5 is independently -CH 2 X 2 . In embodiments, R 2 5 is independently -OCX 2 3. In embodiments, R 2 5 is independently -OCH2X 2 . In embodiments, R 2 5 is independently -OCHX 2 2 . In embodiments, R 2 5 is independently -CN. In embodiments, R 2 5 is independently -SOn2R 2D . In embodiments, R 2 5 is independently -SOy 2 NR 2A R 2B . In embodiments, R 2 5 is independently -NHC(0)NR 2A R 2B . In embodiments, R 2 5 is independently -N(0)m2. In embodiments, R 2 5 is

independently -NR 2A R 2B . In embodiments, R 2 5 is independently -C(0)R 2C . In embodiments, R 2 5 is independently -C(0)-OR 2C . In embodiments, R 2 5 is independently -C(0)NR 2A R 2B . In embodiments, R 2 5 is independently -OR 2D . In embodiments, R 2 5 is

independently -NR 2A S0 2 R 2D . In embodiments, R 2 5 is independently -NR 2A C(0)R 2C . In embodiments, R 2 5 is independently -NR 2A C(0)OR 2C . In embodiments, R 2 5 is

independently -NR 2A OR 2C . In embodiments, R 2 5 is independently -OH. In embodiments, R 2 5 is independently -NH 2 . In embodiments, R 2 5 is independently -COOH. In embodiments, R 2 5 is independently -CONH2. In embodiments, R 2 5 is independently -NO2. In embodiments, R 2 5 is independently -SH. In embodiments, R 2 5 is independently halogen. In embodiments, R 2 5 is independently -F. In embodiments, R 2 5 is independently -CI. In embodiments, R 2 5 is independently -Br. In embodiments, R 2 5 is independently -I. In embodiments, R 2 5 is independently -CF 3 . In embodiments, R 2 5 is independently -CHF2. In embodiments, R 2 5 is independently -CH2F. In embodiments, R 2 5 is independently -OCF 3 . In embodiments, R 2 5 is independently -OCH2F. In embodiments, R 2 5 is independently -OCHF2. In embodiments, R 2 5 is independently -OCH3. In embodiments, R 2 5 is independently -OCH2CH 3 . In embodiments, R 2 5 is independently -OCH2CH 2 CH 3 . In embodiments, R 2 5 is independently -OCH(CH 3 ) 2 . In embodiments, R 2 5 is independently -OC(CH 3 ) 3 . In embodiments, R 2 5 is independently -SCH 3 . In embodiments, R 2 5 is independently -SCH2CH 3 . In embodiments, R 2 5 is independently - SCH 2 CH 2 CH 3 . In embodiments, R 2 5 is independently -SCH(CH 3 ) 2 . In embodiments, R 2 5 is independently -SC(CH 3 ) 3 . In embodiments, R 2 5 is independently -CH 3 . In embodiments, R 2 5 is independently -CH2CH3. In embodiments, R 2 5 is independently -CH2CH2CH3. In embodiments, R 2 5 is independently -CH(CH 3 )2. In embodiments, R 2 5 is independently - C(CH 3 ) 3 . In embodiments, R 2 5 is independently -CH 2 CH 2 C(0)OCH 3 . In embodiments, R 2 5 is independently -CH 2 CH(CH 3 )C(0)OCH 3 . In embodiments, R 2 5 is independently -C(0)OCH 3 . In embodiments, R 2 5 is independently -C(0)OCH2CH 3 . In embodiments, R 2 5 is independently -C(0)OCH(CH 3 ) 2 . In embodiments, R 2 5 is independently -C(0)OC(CH 3 ) 3 . In embodiments, R 2 5 is independently -NHC(0)CH 3 . In embodiments, R 2 5 is independently - HC(0)CH 2 CH 3 . In embodiments, R 2 5 is independently - HC(0)CH(CH 3 ) 2 . In embodiments, R 2 5 is independently - HC(0)C(CH 3 ) 3 . In embodiments, R 2 5 is independently -N 3 .

[0327] In embodiments, R 2 5 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 5 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 5 is independently unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2 5 is independently unsubstituted methyl. In embodiments, R 2 5 is independently unsubstituted ethyl. In embodiments, R 2 5 is independently unsubstituted propyl. In embodiments, R 2 5 is independently unsubstituted isopropyl. In embodiments, R 2 5 is independently unsubstituted tert-butyl. In embodiments, R 2 5 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 5 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 5 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2 5 is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 2 5 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 2 5 is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 2 5 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 5 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 5 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2 5 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 5 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 5 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2 5 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 5 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 5 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0328] In embodiments, R 2 5 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2 , -CN, -OH, - H 2 , -COOH, -CO H 2 , -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 23 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 23 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ), R 23 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 23 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2 5 is independently hydrogen,

halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2 , -CN, -OH, -NH 2 , -COOH, -CO NH 2 , -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2 is independently -F, -CI, -Br, or -I.

[0329] R 23 is independently oxo,

halogen, -CX 23 3 , -CHX 23 2 , -CH 2 X 23 , -OCX 23 3 , -OCH 2 X 23 , -OCHX 23 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, -NHOH, R 24 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 24 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 24 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 24 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 24 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 24 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 23 is independently oxo,

halogen, -CX 23 3 , -CHX 23 2 , -CH 2 X 23 , -OCX 23 3 , -OCH2X 23 , -OCHX 23 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 23 is independently -F, -CI, -Br, or -I. In embodiments, R 23 is independently unsubstituted methyl. In embodiments, R 23 is independently unsubstituted ethyl.

[0330] R 24 is independently oxo,

halogen, -CX 24 3 , -CHX 24 2 , -CH 2 X 24 , -OCX 24 3 , -OCH2X 24 , -OCHX 24 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 25 -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 25 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 25 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 25 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 25 -substituted or unsubstituted aryl (e.g., C 6 - Ci2, C 6 -Cio, or phenyl), or R 25 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 24 is independently oxo,

halogen, -CX 24 3 , -CHX 24 2 , -CH 2 X 24 , -OCX 24 3 , -OCH 2 X 24 , -OCHX 24 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 24 is independently -F, -CI, -Br, or -I. In embodiments, R 24 is independently unsubstituted methyl. In embodiments, R 24 is independently unsubstituted ethyl.

[0331] R 25 is independently oxo,

halogen, -CX 25 3 , -CHX 25 2 , -CH 2 X 25 , -OCX 25 3 , -OCH2X 25 , -OCHX 25 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 25 is independently -F, -CI, -Br, or -I. In embodiments, R 25 is independently unsubstituted methyl. In embodiments, R 25 is independently unsubstituted ethyl.

[0332] In embodiments, R 2A is independently hydrogen. In embodiments, R 2A is

independently -CX 2A 3 . In embodiments, R 2A is independently -CHX 2A 2 . In embodiments, R 2A is independently -CH 2 X 2A . In embodiments, R 2A is independently -CN. In embodiments, R 2A is independently -COOH. In embodiments, R 2A is independently -CONH2. In embodiments, X 2A is independently -F, -CI, -Br, or -I.

[0333] In embodiments, R 2A is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2A is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 2A is independently unsubstituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 2A is independently unsubstituted methyl. In embodiments, R 2A is independently unsubstituted ethyl. In embodiments, R 2A is independently unsubstituted propyl. In embodiments, R 2A is independently unsubstituted isopropyl. In embodiments, R 2A is independently unsubstituted tert-butyl. In embodiments, R 2A is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2A is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2A is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 2A is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2A is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2A is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2A is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2A is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2A is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2A is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 2A is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 2A is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 2A is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0334] In embodiments, R 2A is independently

hydrogen, -CX 2A 3 , -CHX 2A 2 , -CH 2 X 2A , -CN, -COOH, -CO H2, R 23A -substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or Ci-C2), R 23A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23A -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or Cs-Ce), R 23A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23A -substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 23A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A is independently hydrogen, -CX 2A 3 , -CHX 2A 2 , -CH 2 X 2A , -CN, -COOH, -CO H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2A is independently -F, -CI, -Br, or -I. In embodiments, R 2A is independently hydrogen. In embodiments, R 2A is independently unsubstituted methyl. In embodiments, R 2A is independently unsubstituted ethyl.

[0335] In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form a R 23A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 23A - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form a R 23A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0336] R 23A is independently oxo,

halogen, -CX 23A 3 , -CHX 23A 2 , -CH 2 X 23A , -OCX 23A 3 , -OCH 2 X 23A , -OCHX 23A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 24A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 24A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 24A - substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 24A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 24A - substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 24A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 23A is independently oxo,

halogen, -CX 23A 3 , -CHX 23A 2 , -CH 2 X 23A , -OCX 23A 3 , -OCH 2 X 23A , -OCHX 23A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH 2 , -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 23A is independently -F, -CI, -Br, or -I. In embodiments, R 23A is independently unsubstituted methyl. In embodiments, R 23A is independently

unsubstituted ethyl. [0337] R 24A is independently oxo,

halogen, -CX 24A 3 , -CHX 24A 2 , -CH 2 X 24A , -OCX 24A 3 , -OCH 2 X 24A , -OCHX 24A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 25A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 25A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 25A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 25A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 25A -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 25A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 24A is independently oxo,

halogen, -CX 24A 3 , -CHX 24A 2 , -CH 2 X 24A , -OCX 24A 3 , -OCH 2 X 24A , -OCHX 24A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 24A is independently -F, -CI, -Br, or -I. In embodiments, R 24A is independently unsubstituted methyl. In embodiments, R 24A is independently

unsubstituted ethyl.

[0338] R 25A is independently oxo,

halogen, -CX 25A 3 , -CHX 25A 2 , -CH 2 X 25A , -OCX 25A 3 , -OCH 2 X 25A , -OCHX 25A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 25A is independently -F, -CI, -Br, or -I. In embodiments, R 25A is independently unsubstituted methyl. In embodiments, R 25A is independently

unsub stituted ethyl .

[0339] In embodiments, R 2B is independently hydrogen. In embodiments, R 2B is

independently -CX 2B 3 . In embodiments, R 2B is independently -CHX 2B 2 . In embodiments, R 2B is independently -CH 2 X 2B . In embodiments, R 2B is independently -CN. In embodiments, R 2B is independently -COOH. In embodiments, R 2B is independently -CONH2. In embodiments, X 2B is independently -F, -CI, -Br, or -I.

[0340] In embodiments, R 2B is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2B is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 2B is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 2B is independently unsubstituted methyl. In

embodiments, R 2B is independently unsubstituted ethyl. In embodiments, R 2B is independently unsubstituted propyl. In embodiments, R 2B is independently unsubstituted isopropyl. In embodiments, R 2B is independently unsubstituted tert-butyl. In embodiments, R 2B is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2B is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2B is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 2B is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 2B is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 2B is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 2B is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2B is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2B is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2B is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2B is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2B is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2B is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2B is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2B is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0341] In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0342] In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0343] In embodiments, R 2B is independently

hydrogen, -CX 2B 3 , -CHX 2B 2 , -CH 2 X 2B , -CN, -COOH, -CO H2, R 23B -substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or Ci-C 2 ), R 23B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 23B - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23B -substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 23B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2B is independently hydrogen, -CX 2B 3 , -CHX 2B 2 , -CH 2 X 2B , -CN, -COOH, -CO H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2B is independently -F, -CI, -Br, or -I. In embodiments, R 2B is independently hydrogen. In embodiments, R 2B is independently unsubstituted methyl. In embodiments, R 2B is independently unsubstituted ethyl.

[0344] In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form a R 23B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 23B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form a R 23B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0345] R 23B is independently oxo,

halogen, -CX 23B 3 , -CHX 23B 2 , -CH 2 X 23B , -OCX 23B 3 , -OCH 2 X 23B , -OCHX 23B 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -S0 4 H, -SO2NH2, -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 24B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , Ci-C 4 , or C1-C2), R 24B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 24B -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 24B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 24B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 24B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 23B is independently oxo,

halogen, -CX 23B 3 , -CHX 23B 2 , -CH 2 X 23B , -OCX 23B 3 , -OCH 2 X 23B , -OCHX 23B 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 23B is independently -F, -CI, -Br, or -I. In embodiments, R 23B is independently unsubstituted methyl. In embodiments, R 23B is independently

unsubstituted ethyl.

[0346] R 24B is independently oxo,

halogen, -CX 24B 3 , -CHX 24B 2 , -CH 2 X 24B , -OCX 24B 3 , -OCH 2 X 24B , -OCHX 24B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 25B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 25B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 25B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 25B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 25B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 25B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 24B is independently oxo,

halogen, -CX 24B 3 , -CHX 24B 2 , -CH 2 X 24B , -OCX 24B 3 , -OCH 2 X 24B , -OCHX 24B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 24B is independently -F, -CI, -Br, or -I. In embodiments, R 24B is independently unsubstituted methyl. In embodiments, R 24B is independently

unsubstituted ethyl.

[0347] R 25B is independently oxo,

halogen, -CX 25B 3 , -CHX 25B 2 , -CH 2 X 25B , -OCX 25B 3 , -OCH 2 X 25B , -OCHX 25B 2 , -CN, -OH, - H 2 , -C OOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -SO4H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0) HNH 2 , - HC=(0) H 2 , - HS0 2 H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 25B is independently -F, -CI, -Br, or -I. In embodiments, R 25B is independently unsubstituted methyl. In embodiments, R 25B is independently

unsubstituted ethyl. [0348] In embodiments, R 2C is independently hydrogen. In embodiments, R 2C is

independently -CX 2C 3 . In embodiments, R 2C is independently -CHX 2C 2 . In embodiments, R 2C is independently -CH 2 X 2C . In embodiments, R 2C is independently -CN. In embodiments, R 2C is independently -COOH. In embodiments, R 2C is independently -CONH 2 . In embodiments, X 2C is independently -F, -CI, -Br, or -I. [0349] In embodiments, R 2C is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 ,

Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 2C is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 2C is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 2C is independently unsubstituted methyl. In

embodiments, R 2C is independently unsubstituted ethyl. In embodiments, R 2C is independently unsubstituted propyl. In embodiments, R 2C is independently unsubstituted isopropyl. In embodiments, R 2C is independently unsubstituted tert-butyl. In embodiments, R 2C is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2C is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2C is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 2C is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 2C is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 2C is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 2C is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2C is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2C is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2C is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2C is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2C is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 2C is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2C is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2C is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0350] In embodiments, R 2C is independently

hydrogen, -CX 2C 3 , -CHX 2C 2 , -CH 2 X 2C , -CN, -COOH, -CO H2, R 23C -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 23C -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23C -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 23C - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23C -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 23C -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2C is independently hydrogen, -CX 2C 3 , -CHX 2C 2 , -CH 2 X 2C , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to

6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-G5, C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2C is independently -F, -CI, -Br, or -I. In embodiments, R 2C is independently hydrogen. In embodiments, R 2C is independently

unsubstituted methyl. In embodiments, R 2C is independently unsubstituted ethyl.

[0351] R 23C is independently oxo,

halogen, -CX 23C 3 , -CHX 23C 2 , -CH 2 X 23C , -OCX 23C 3 , -OCH 2 X 23C , -OCHX 23C 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 24C -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 24C -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 24C -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 24C -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 24C -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 24C -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 23C is independently oxo,

halogen, -CX 23C 3 , -CHX 23C 2 , -CH 2 X 23C , -OCX 23C 3 , -OCH 2 X 23C , -OCHX 23C 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 23C is independently -F, -CI, -Br, or -I. In embodiments, R 23C is independently unsubstituted methyl. In embodiments, R 23C is independently

unsubstituted ethyl.

[0352] R 24C is independently oxo,

halogen, -CX 24C 3 , -CHX 24C 2 , -CH 2 X 24C , -OCX 24C 3 , -OCH 2 X 24C , -OCHX 24C 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 25C -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 25C - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 25C -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 25C - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 25C -substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 25C -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 24C is independently oxo,

halogen, -CX 24C 3 , -CHX 24C 2 , -CH 2 X 24C , -OCX 24C 3 , -OCH 2 X 24C , -OCHX 24C 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 24C is independently -F, -CI, -Br, or -I. In embodiments, R 24C is independently unsubstituted methyl. In embodiments, R 24C is independently

unsub stituted ethyl .

[0353] R 25C is independently oxo,

halogen, -CX 25C 3 , -CHX 25C 2 , -CH 2 X 25C , -OCX 25C 3 , -OCH 2 X 25C , -OCHX 25C 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 25C is independently -F, -CI, -Br, or -I. In embodiments, R 25C is independently unsubstituted methyl. In embodiments, R 25C is independently

unsubstituted ethyl.

[0354] In embodiments, R 2D is independently hydrogen. In embodiments, R 2D is

independently -CX 2D 3 . In embodiments, R 2D is independently -CHX 2D 2 . In embodiments, R 2D is independently -CH 2 X 2D . In embodiments, R 2D is independently -CN. In embodiments, R 2D is independently -COOH. In embodiments, R 2D is independently -CONH2. In embodiments, X 2D is independently -F, -CI, -Br, or -I.

[0355] In embodiments, R 2D is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 2D is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 2D is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 2D is independently unsubstituted methyl. In embodiments, R 2D is independently unsubstituted ethyl. In embodiments, R 2D is independently unsubstituted propyl. In embodiments, R 2D is independently unsubstituted isopropyl. In embodiments, R 2D is independently unsubstituted tert-butyl. In embodiments, R 2D is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2D is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 2D is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 2D is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2D is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2D is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 2D is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2D is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2D is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 2D is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 2D is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 2D is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 2D is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2D is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2D is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0356] In embodiments, R 2D is independently

hydrogen, -CX 2D 3 , -CHX 2D 2 , -CH 2 X 2D , -CN, -COOH, -CO H2, R 23D -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C2), R 23D -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 23D -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 23D - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 23D -substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 23D -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 2D is independently hydrogen, -CX 2D 3 , -CHX 2D 2 , -CH 2 X 2D , -CN, -COOH, -CO H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 2D is independently -F, -CI, -Br, or -I. In embodiments, R 2D is independently hydrogen. In embodiments, R 2D is independently

unsubstituted methyl. In embodiments, R 2D is independently unsubstituted ethyl.

[0357] R 23D is independently oxo,

halogen, -CX 23D 3 , -CHX 23D 2 , -CH 2 X 23D , -OCX 23D 3 , -OCH 2 X 23D , -OCHX 23D 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 24D -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 24D -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 24D -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 24D -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 24D -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 24D -substi luted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 23D is independently oxo,

halogen, -CX 23D 3 , -CHX 23D 2 , -CH 2 X 23D , -OCX 23D 3 , -OCH 2 X 23D , -OCHX 23D 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -S0 4 H, -SO2NH2, -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 23D is independently -F, -CI, -Br, or -I. In embodiments, R 23D is independently unsubstituted methyl. In embodiments, R 23D is independently

unsubstituted ethyl. [0358] R 24D is independently oxo,

halogen, -CX 24D 3 , -CHX 24D 2 , -CH 2 X 24D , -OCX 24D 3 , -OCH 2 X 24D , -OCHX 24D 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 25D -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 25D -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 25D -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 25D -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 25D -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 25D -substi luted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 24D is independently oxo,

halogen, -CX 24D 3 , -CHX 24D 2 , -CH 2 X 24D , -OCX 24D 3 , -OCH 2 X 24D , -OCHX 24D 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 24D is independently -F, -CI, -Br, or -I. In embodiments, R 24D is independently unsubstituted methyl. In embodiments, R 24D is independently

unsubstituted ethyl.

[0359] R 25D is independently oxo,

halogen, -CX 25D 3 , -CHX 25D 2 , -CH 2 X 25D , -OCX 25D 3 , -OCH 2 X 25D , -OCHX 25D 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 25D is independently -F, -CI, -Br, or -I. In embodiments, R 25D is independently unsubstituted methyl. In embodiments, R 25D is independently unsubstituted ethyl.

[0360] In embodiments, R 2 is independently -OCX 2 3 , -

OCH 2 X 2 , -OCHX 2 2, -C(0)R 2C , -C(0)OR 2C , -OR 2D , or - R 2A C(0)R 2C ; and each R 2A , R 2B , R 2C , and R 2D is independently hydrogen, -CX 3 , -CHX2, -CH2X, or unsubstituted C1-C2 alkyl. In embodiments, R 2 is independently -OCF 3 , -

OCH2F, -OCHF2, -C(0)OH, -C(0)OCH 2 CH 3 , -OCH 3 , or - HC(0)CH 3 .

[0361] In embodiments, R 3 is independently hydrogen, halogen, -CX 3 3 , -CHX 3 2, - CH 2 X 3 , -OCX 3 3 , - OCH2X 3 , -OCHX 3 2, -CN, -S0 ll R 3A , -SO v3 R 3A R 3B , - HC(0) R 3A R 3B , -N(0) m3 , - R 3A R 3B ,

-C(0)R 3A , -C(0)OR 3A , -C(0) R 3A R 3B , -OR 3A , - R 3A S0 2 R 3B , - R 3A C(0)R 3B , -NR 3A C(0)OR 3B , -NR 3A OR 3B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0362] In embodiments, R 3 is independently hydrogen. In embodiments, R 3 is

independently -CX 3 3 . In embodiments, R 3 is independently -CHXY In embodiments, R 3 is independently -CH2X 3 . In embodiments, R 3 is independently -OCX 3 3 . In embodiments, R 3 is independently -OCH2X 3 . In embodiments, R 3 is independently -OCHX 3 2. In embodiments, R 3 is independently -CN. In embodiments, R 3 is independently -C(0)R 3A . In embodiments, R 3 is independently -C(0)OR 3A . In embodiments, R 3 is independently -C(0)NR 3A R 3B . In

embodiments, R 3 is independently -OR 3A . In embodiments, R 3 is independently -OH. In embodiments, R 3 is independently -COOH. In embodiments, R 3 is independently -CONH2. In embodiments, R 3 is independently -CF 3 . In embodiments, R 3 is independently -CHF2. In embodiments, R 3 is independently -CH2F. In embodiments, R 3 is independently -OCF 3 . In embodiments, R 3 is independently -OCH2F. In embodiments, R 3 is independently -OCHF2. In embodiments, R 3 is independently -OCH 3 . In embodiments, R 3 is independently -OCH2CH 3 . In embodiments, R 3 is independently -OCH2CH2CH3. In embodiments, R 3 is independently - OCH(CH 3 )2. In embodiments, R 3 is independently -OC(CH 3 ) 3 . In embodiments, R 3 is independently -CH 3 . In embodiments, R 3 is independently -CH2CH3. In embodiments, R 3 is independently -CH2CH2CH3. In embodiments, R 3 is independently -CH(CH 3 )2. In

embodiments, R 3 is independently -C(CH 3 ) 3 . In embodiments, R 3 is independently

unsubstituted methyl. In embodiments, R 3 is independently unsubstituted ethyl. In

embodiments, R 3 is independently unsubstituted propyl. In embodiments, R 3 is independently unsubstituted isopropyl. In embodiments, R 3 is independently unsubstituted n-propyl. In embodiments, R 3 is independently unsubstituted butyl. In embodiments, R 3 is independently unsubstituted n-butyl. In embodiments, R 3 is independently unsubstituted t-butyl. In

embodiments, R 3 is independently unsubstituted iso-butyl. In embodiments, R 3 is independently unsubstituted Ci-C 8 alkyl. In embodiments, R 3 is independently halo-substituted methyl. In embodiments, R 3 is independently halo-substituted ethyl. In embodiments, R 3 is independently halo- substituted isopropyl. In embodiments, R 3 is independently halo- substituted n-propyl. In embodiments, R 3 is independently halo-substituted n-butyl. In embodiments, R 3 is

independently halo- substituted t-butyl. In embodiments, R 3 is independently halo- substituted Ci-C 8 alkyl. In embodiments, R 3 is independently -N 3 . [0363] In embodiments, R 3 is independently hydrogen, -CX 3 3 , -CHX 3 2 , -CH 2 X 3 , -OCX 3 3 , - OCH 2 X 3 , -OCHX 3 2 , -CN, -C(0)R 3A , -C(0)OR 3A , -C(0) R 3A R 3B , -OR 3A , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. In embodiments, R 3 is independently hydrogen, -CX 3 3 , - CHX 3 2 , -

CH 2 X 3 , -OCX 3 3 , -OCH 2 X 3 , -OCHX 3 2 , -CN, -C(0)R 3A , -C(0)-OR 3A , -C(0)NR 3A R 3B , -OR 3A , substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), substituted or

unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 - C 6 , or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0364] In embodiments, R 3 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 3 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 3 is independently unsubstituted alkyl (e.g., Ci-C 8 , C1-G5, C1-C4, or Ci-C 2 ). In embodiments, R 3 is independently unsubstituted methyl. In embodiments, R 3 is independently unsubstituted ethyl. In embodiments, R 3 is independently unsubstituted propyl. In embodiments, R 3 is independently unsubstituted isopropyl. In embodiments, R 3 is independently unsubstituted tert-butyl. In embodiments, R 3 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 3 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 3 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 3 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 - C 6 , or C5-C6). In embodiments, R 3 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 -C 6 , or C5-C6). In embodiments, R 3 is independently unsubstituted cycloalkyl (e.g., C3-C8, C3- C 6 , C 4 -C 6 , or C5-C6). In embodiments, R 3 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In

embodiments, R 3 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 3 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 3 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0365] In embodiments, R 3 is independently hydrogen, -CX 3 3, -CHX 3 2 , - CH 2 X 3 , -OCX 3 3, -OCH 2 X 3 , -OCHX 3 2 , -CN, -C(0)R 3A , -C(0)-OR 3A , -C(0) R 3A R 3B , -OR 3A , R 26 - substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or Ci-C 2 ), R 26 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 26 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 -C 6 , or C5-C6), R 26 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 26 -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 26 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3 is independently hydrogen, -CX 3 3, -CHX 3 2 , -

CH 2 X 3 , -OCX 3 3, -OCH 2 X 3 , -OCHX 3 2 , -CN, -C(0)-OH, -C(0)NH 2 , -OH, unsubstituted alkyl (e.g., C1-C8, C1-G5, C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C 4 -C 6 , or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 3 is independently -F, -CI, -Br, or -I. [0366] R 26 is independently oxo,

halogen, -CX 26 3 , -CHX 26 2 , -CH 2 X 26 , -OCX 26 3 , -OCH 2 X 26 , -OCHX 26 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, -NHOH, R 27 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 27 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 27 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 27 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 27 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 27 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 26 is independently oxo,

halogen, -CX 26 3 , -CHX 26 2 , -CH 2 X 26 , -OCX 26 3 , -OCH 2 X 26 , -OCHX 26 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 26 is independently -F, -CI, -Br, or -I. In embodiments, R 26 is independently unsubstituted methyl. In embodiments, R 26 is independently unsubstituted ethyl.

[0367] R 27 is independently oxo,

halogen, -CX 27 3 , -CHX 27 2 , -CH 2 X 27 , -OCX 27 3 , -OCH2X 27 , -OCHX 27 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 28 -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 28 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 28 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 28 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 28 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 28 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 27 is independently oxo,

halogen, -CX 27 3 , -CHX 27 2 , -CH 2 X 27 , -OCX 27 3 , -OCH 2 X 27 , -OCHX 27 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 27 is independently -F, -CI, -Br, or -I. In embodiments, R 27 is independently unsubstituted methyl. In embodiments, R 27 is independently unsubstituted ethyl.

[0368] R 28 is independently oxo,

halogen, -CX 28 3 , -CHX 28 2 , -CH 2 X 28 , -OCX 28 3 , -OCH 2 X 28 , -OCHX 28 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 28 is independently -F, -CI, -Br, or -I. In embodiments, R 28 is independently unsubstituted methyl. In embodiments, R 28 is independently unsubstituted ethyl. [0369] In embodiments, R 3A is independently hydrogen. In embodiments, R 3A is

independently -CX 3A 3 . In embodiments, R 3A is independently -CHX 3A 2 . In embodiments, R 3A is independently -CH 2 X 3A . In embodiments, R 3A is independently -CN. In embodiments, R 3A is independently -COOH. In embodiments, R 3A is independently -CONH2. In embodiments, X 3A is independently -F, -CI, -Br, or -I. [0370] In embodiments, R 3A is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 ,

Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 3A is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 3A is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 3A is independently unsubstituted methyl. In

embodiments, R 3A is independently unsubstituted ethyl. In embodiments, R 3A is independently unsubstituted propyl. In embodiments, R 3A is independently unsubstituted isopropyl. In embodiments, R 3A is independently unsubstituted tert-butyl. In embodiments, R 3A is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 3A is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 3A is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 3A is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 3A is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 3A is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 3A is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3A is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3A is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3A is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 3A is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 3A is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 3A is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0371] In embodiments, R 3A is independently

hydrogen, -CX 3A 3 , -CHX 3A 2 , -CH 2 X 3A , -CN, -COOH, -CO H 2 , R 26A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 26A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 26A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 26A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 26A - substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 26A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A is independently hydrogen, -CX 3A 3 , -CHX 3A 2 , -CH 2 X 3A , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 3A is independently -F, -CI, -Br, or -I. In embodiments, R 3A is independently hydrogen. In embodiments, R 3A is independently unsubstituted methyl. In embodiments, R 3A is independently unsubstituted ethyl.

[0372] In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form a R 26A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 26A - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form a R 26A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0373] R 26A is independently oxo,

halogen, -CX 26A 3 , -CHX 26A 2 , -CH 2 X 26A , -OCX 26A 3 , -OCH 2 X 26A , -OCHX 26A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH 2 , -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, - HOH, R 27A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 27A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 27A - substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 27A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 27A - substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 27A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 26A is independently oxo, halogen, -CX 26A 3 , -CHX 26A 2 , -CH 2 X 26A , -OCX 26A 3 , -OCH 2 X 26A , -OCHX 26A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , - HC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 26A is independently -F, -CI, -Br, or -I. In embodiments, R 26A is independently unsubstituted methyl. In embodiments, R 26A is independently

unsubstituted ethyl.

[0374] R 27A is independently oxo,

halogen, -CX 27A 3 , -CHX 27A 2 , -CH 2 X 27A , -OCX 27A 3 , -OCH 2 X 27A , -OCHX 27A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 28A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 28A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 28A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 28 A -sub stituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 28A - sub stituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 28A -sub stituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 27A is independently oxo,

halogen, -CX 27A 3 , -CHX 27A 2 , -CH 2 X 27A , -OCX 27A 3 , -OCH 2 X 27A , -OCHX 27A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -S0 4 H, -SO2NH2, -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 27A is independently -F, -CI, -Br, or -I. In embodiments, R 27A is independently unsubstituted methyl. In embodiments, R 27A is independently

unsubstituted ethyl. [0375] R 28A is independently oxo,

halogen, -CX 28A 3 , -CHX 28A 2 , -CH 2 X 28A , -OCX 28A 3 , -OCH 2 X 28A , -OCHX 28A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 28A is independently -F, -CI, -Br, or -I. In embodiments, R 28A is independently unsubstituted methyl. In embodiments, R 28A is independently

unsubstituted ethyl.

[0376] In embodiments, R 3B is independently hydrogen. In embodiments, R 3B is

independently -CX 3B 3 . In embodiments, R 3B is independently -CHX 3B 2 . In embodiments, R 3B is independently -CH 2 X 3B . In embodiments, R 3B is independently -CN. In embodiments, R 3B is independently -COOH. In embodiments, R 3B is independently -CONH2. In embodiments, X 3B is independently -F, -CI, -Br, or -I.

[0377] In embodiments, R 3B is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 3B is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 3B is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 3B is independently unsubstituted methyl. In

embodiments, R 3B is independently unsubstituted ethyl. In embodiments, R 3B is independently unsubstituted propyl. In embodiments, R 3B is independently unsubstituted isopropyl. In embodiments, R 3B is independently unsubstituted tert-butyl. In embodiments, R 3B is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 3B is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 3B is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 3B is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 3B is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 3B is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 3B is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3B is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3B is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3B is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 3B is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 3B is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 3B is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3B is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3B is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0378] In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0379] In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0380] In embodiments, R 3B is independently

hydrogen, -CX 3B 3 , -CHX 3B 2 , -CH 2 X 3B , -CN, -COOH, -CO H 2 , R 26B - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 26B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 26B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 26B - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 26B -substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 26B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3B is independently hydrogen, -CX 3B 3 , -CHX 3B 2 , -CH 2 X 3B , -CN, -COOH, -CO H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 3B is independently -F, -CI, -Br, or -I. In embodiments, R 3B is independently hydrogen. In embodiments, R 3B is independently unsubstituted methyl. In embodiments, R 3B is independently unsubstituted ethyl.

[0381] In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form a R 26B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 26B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form a R 26B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0382] R 26B is independently oxo,

halogen, -CX 26B 3 , -CHX 26B 2 , -CH 2 X 26B , -OCX 26B 3 , -OCH 2 X 26B , -OCHX 26B 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 27B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 27B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 27B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 27B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 27B -substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 27B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 26B is independently oxo,

halogen, -CX 26B 3 , -CHX 26B 2 , -CH 2 X 26B , -OCX 26B 3 , -OCH 2 X 26B , -OCHX 26B 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 26B is independently -F, -CI, -Br, or -I. In embodiments, R 26B is independently unsubstituted methyl. In embodiments, R 26B is independently

unsub stituted ethyl .

[0383] R 27B is independently oxo,

halogen, -CX 27B 3 , -CHX 27B 2 , -CH 2 X 27B , -OCX 27B 3 , -OCH 2 X 27B , -OCHX 27B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 28B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 28B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 28B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 28B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 28B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 28B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 27B is independently oxo,

halogen, -CX 27B 3 , -CHX 27B 2 , -CH 2 X 27B , -OCX 27B 3 , -OCH 2 X 27B , -OCHX 27B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 27B is independently -F, -CI, -Br, or -I. In embodiments, R 27B is independently unsubstituted methyl. In embodiments, R 27B is independently

unsubstituted ethyl. [0384] R 28B is independently oxo,

halogen, -CX 28B 3 , -CHX 28B 2 , -CH 2 X 28B , -OCX 28B 3 , -OCH 2 X 28B , -OCHX 28B 2 , -CN, -OH, - H 2 , -C OOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0) HNH 2 , - HC=(0) H 2 , - HS0 2 H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 28B is independently -F, -CI, -Br, or -I. In embodiments, R 28B is independently unsubstituted methyl. In embodiments, R 28B is independently

unsubstituted ethyl.

[0385] In embodiments, R 3 is -CX 3 3 , -CHX 3 2 , -CH 2 X 3 , or unsubstituted Ci-C 3 alkyl. In embodiments, R 3 is unsubstituted methyl.

[0386] In embodiments, R 4 is independently hydrogen. In embodiments, R 4 is

independently -CX 4 3 . In embodiments, R 4 is independently -CHX 4 2 . In embodiments, R 4 is independently -CH 2 X 4 . In embodiments, R 4 is independently -C(0)R 4A . In embodiments, R 4 is independently -C(0)OR 4A . In embodiments, R 4 is independently -C(0) R 4A R 4B . In

embodiments, R 4 is independently -COOH. In embodiments, R 4 is independently -CO H 2 . In embodiments, R 4 is independently -CF 3 . In embodiments, R 4 is independently -CHF 2 . In embodiments, R 4 is independently -CH 2 F. In embodiments, R 4 is independently -CH 3 . In embodiments, R 4 is independently -CH 2 CH 3 . In embodiments, R 4 is independently - CH 2 CH 2 CH 3 . In embodiments, R 4 is independently -CH(CH 3 ) 2 . In embodiments, R 4 is independently -C(CH 3 ) 3 . In embodiments, R 4 is independently unsubstituted methyl. In embodiments, R 4 is independently unsubstituted ethyl. In embodiments, R 4 is independently unsubstituted propyl. In embodiments, R 4 is independently unsubstituted isopropyl. In embodiments, R 4 is independently unsubstituted n-propyl. In embodiments, R 4 is independently unsubstituted butyl. In embodiments, R 4 is independently unsubstituted n-butyl. In

embodiments, R 4 is independently unsubstituted t-butyl. In embodiments, R 4 is independently unsubstituted iso-butyl. In embodiments, R 4 is independently unsubstituted Ci-C 8 alkyl. In embodiments, R 4 is independently halo-substituted methyl. In embodiments, R 4 is independently halo- substituted ethyl. In embodiments, R 4 is independently halo- substituted isopropyl. In embodiments, R 4 is independently halo-substituted n-propyl. In embodiments, R 4 is

independently halo- substituted n-butyl. In embodiments, R 4 is independently halo- substituted t- butyl. In embodiments, R 4 is independently halo- substituted Ci-C 8 alkyl.

[0387] In embodiments, R 4 is independently hydrogen, -CX 4 3 , -CHX 4 2 , - CH 2 X 4 , -C(0)R 4A , -C(0)-OR 4A , -C(0) R 4A R 4B , substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0388] In embodiments, R 4 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 4 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 4 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ). In embodiments, R 4 is independently unsubstituted methyl. In embodiments, R 4 is independently unsubstituted ethyl. In embodiments, R 4 is independently unsubstituted propyl. In embodiments, R 4 is independently unsubstituted isopropyl. In embodiments, R 4 is independently unsubstituted tert-butyl. In embodiments, R 4 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 4 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 4 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 4 is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 - C 6 , or C5-C 6 ). In embodiments, R 4 is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 4 is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 - C 6 , C4-C6, or C5-C 6 ). In embodiments, R 4 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 4 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 4 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 4 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0389] In embodiments, R 4 is independently hydrogen, -CX 4 3 , -CHX 4 2 , - CH 2 X 4 , -C(0)R 4A , -C(0)-OR 4A , -C(0) R 4A R 4B , R 29 -substituted or unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), R 29 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 29 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 29 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 29 -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 29 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4 is independently hydrogen, -CX 4 3 , - CHX 4 2, -CH2X 4 , -C(0)-OH, -C(0) H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 4 is independently -F, -CI, -Br, or -I. [0390] R 29 is independently oxo,

halogen, -CX 29 3 , -CHX 29 2 , -CH 2 X 29 , -OCX 29 3 , -OCH2X 29 , -OCHX 29 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, R 30 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 30 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 30 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 30 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 30 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 30 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 29 is independently oxo,

halogen, -CX 29 3 , -CHX 29 2 , -CH 2 X 29 , -OCX 29 3 , -OCH 2 X 29 , -OCHX 29 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 29 is independently -F, -CI, -Br, or -I. In embodiments, R 29 is independently unsubstituted methyl. In embodiments, R 29 is independently unsubstituted ethyl.

[0391] R 30 is independently oxo,

halogen, -CX 30 3 , -CHX 30 2 , -CH 2 X 30 , -OCX 30 3 , -OCH2X 30 , -OCHX 30 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 31 - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 31 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 31 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 31 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 31 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 31 - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 30 is independently oxo,

halogen, -CX 30 3 , -CHX 30 2 , -CH 2 X 30 , -OCX 30 3 , -OCH2X 30 , -OCHX 30 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 30 is independently -F, -CI, -Br, or -I. In embodiments, R 30 is independently unsubstituted methyl. In embodiments, R 30 is independently unsubstituted ethyl.

[0392] R 31 is independently oxo,

halogen, -CX 31 3 , -CHX 31 2 , -CH 2 X 31 , -OCX 31 3 , -OCH 2 X 31 , -OCHX 31 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 31 is independently -F, -CI, -Br, or -I. In embodiments, R 31 is independently unsubstituted methyl. In embodiments, R 31 is independently unsubstituted ethyl. [0393] In embodiments, R 4A is independently hydrogen. In embodiments, R 4A is

independently -CX 4A 3 . In embodiments, R 4A is independently -CHX 4A 2 . In embodiments, R 4A is independently -CH 2 X 4A . In embodiments, R 4A is independently -CN. In embodiments, R 4A is independently -COOH. In embodiments, R 4A is independently -CONH2. In embodiments, X 4A is independently -F, -CI, -Br, or -I. [0394] In embodiments, R 4A is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 ,

Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 4A is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 4A is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 4A is independently unsubstituted methyl. In

embodiments, R 4A is independently unsubstituted ethyl. In embodiments, R 4A is independently unsubstituted propyl. In embodiments, R 4A is independently unsubstituted isopropyl. In embodiments, R 4A is independently unsubstituted tert-butyl. In embodiments, R 4A is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 4A is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 4A is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 4A is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 4A is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 4A is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 4A is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4A is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4A is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4A is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 4A is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 4A is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 4A is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0395] In embodiments, R 4A is independently

hydrogen, -CX 4A 3 , -CHX 4A 2 , -CH 2 X 4A , -CN, -COOH, -CO H 2 , R 29A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 29A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 29A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 29A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 29A -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 29A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A is independently hydrogen, -CX 4A 3 , -CHX 4A 2 , -CH 2 X 4A , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 4A is independently -F, -CI, -Br, or -I. In embodiments, R 4A is independently hydrogen. In embodiments, R 4A is independently unsubstituted methyl. In embodiments, R 4A is independently unsubstituted ethyl. [0396] In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form a R 29A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 29A - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form a R 29A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0397] R 29A is independently oxo,

halogen, -CX 29A 3 , -CHX 29A 2 , -CH 2 X 29A , -OCX 29A 3 , -OCH 2 X 29A , -OCHX 29A 2 , -CN, -OH, - H 2 , - COOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0)NHNH 2 , -NHC=(0) NH 2 , - HS0 2 H, - HC= (O)H, - HC(0)-OH, - HOH, R 30A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C 1 -C 4 , or Ci-C 2 ), R 30A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 30A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), R 30A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 30A - substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 30A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 29A is independently oxo,

halogen, -CX 29A 3 , -CHX 29A 2 , -CH 2 X 29A , -OCX 29A 3 , -OCH 2 X 29A , -OCHX 29A 2 , -CN, -OH, -NH 2 , - COOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , Ci-C 4 , or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 29A is independently -F, -CI, -Br, or -I. In embodiments, R 29A is independently unsubstituted methyl. In embodiments, R 29A is independently

unsubstituted ethyl.

[0398] R 30A is independently oxo,

halogen, -CX 30A 3 , -CHX 30A 2 , -CH 2 X 30A , -OCX 30A 3 , -OCH 2 X 30A , -OCHX 30A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , -NHC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 31A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 31A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 31A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 31A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 31A -substituted or unsubstituted aryl (e.g., C6-C12, G5-C10, or phenyl), or R 31A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 30A is independently oxo,

halogen, -CX 30A 3 , -CHX 30A 2 , -CH 2 X 30A , -OCX 30A 3 , -OCH 2 X 30A , -OCHX 30A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 30A is independently -F, -CI, -Br, or -I. In embodiments, R 30A is independently unsubstituted methyl. In embodiments, R 30A is independently

unsubstituted ethyl.

[0399] R 31A is independently oxo,

halogen, -CX 31A 3 , -CHX 31A 2 , -CH 2 X 31A , -OCX 31A 3 , -OCH 2 X 31A , -OCHX 31A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 31A is independently -F, -CI, -Br, or -I. In embodiments, R 31A is independently unsubstituted methyl. In embodiments, R 31A is independently

unsubstituted ethyl. [0400] In embodiments, R 4B is independently hydrogen. In embodiments, R 4B is

independently -CX 4B 3 . In embodiments, R 4B is independently -CHX 4B 2. In embodiments, R 4B is independently -0¾Χ . In embodiments, R 4B is independently -CN. In embodiments, R 4B is independently -COOH. In embodiments, R 4B is independently -CO H2. In embodiments, X 4B is independently -F, -CI, -Br, or -I. [0401] In embodiments, R 4B is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 ,

Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 4B is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 4B is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 4B is independently unsubstituted methyl. In

embodiments, R 4B is independently unsubstituted ethyl. In embodiments, R 4B is independently unsubstituted propyl. In embodiments, R 4B is independently unsubstituted isopropyl. In embodiments, R 4B is independently unsubstituted tert-butyl. In embodiments, R 4B is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 4B is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 4B is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 4B is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 4B is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 4B is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 4B is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4B is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4B is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4B is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 4B is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 4B is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 4B is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4B is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4B is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0402] In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0403] In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0404] In embodiments, R 4B is independently

hydrogen, -CX 4B 3 , -CHX 4B 2 , -CH 2 X 4B , -CN, -COOH, -CO H 2 , R 29B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 29B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 29B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 29B - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 29B -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 29B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4B is independently hydrogen, -CX 4B 3 , -CHX 4B 2 , -CH 2 X 4B , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 4B is independently -F, -CI, -Br, or -I. In embodiments, R 4B is independently hydrogen. In embodiments, R 4B is independently

unsubstituted methyl. In embodiments, R 4B is independently unsubstituted ethyl. [0405] In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form a R 29B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 29B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form a R 29B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0406] R 29B is independently oxo,

halogen, -CX 29B 3 , -CHX 29B 2 , -CH 2 X 29B , -OCX 29B 3 , -OCH 2 X 29B , -OCHX 29B 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, - HOH, R 30B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 30B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 30B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 30B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 30B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 30B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 29B is independently oxo,

halogen, -CX 29B 3 , -CHX 29B 2 , -CH 2 X 29B , -OCX 29B 3 , -OCH 2 X 29B , -OCHX 29B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 29B is independently -F, -CI, -Br, or -I. In embodiments, R 29B is independently unsubstituted methyl. In embodiments, R 29B is independently

unsubstituted ethyl.

[0407] R 30B is independently oxo,

halogen, -CX 30B 3 , -CHX 30B 2 , -CH 2 X 30B , -OCX 30B 3 , -OCH 2 X 30B , -OCHX 30B 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 31B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 31B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 31B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 31B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 31B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 31B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 30B is independently oxo,

halogen, -CX 30B 3 , -CHX 30B 2 , -CH 2 X 30B , -OCX 30B 3 , -OCH 2 X 30B , -OCHX 30B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 30B is independently -F, -CI, -Br, or -I. In embodiments, R 30B is independently unsubstituted methyl. In embodiments, R 30B is independently

unsubstituted ethyl.

[0408] R 31B is independently oxo,

halogen, -CX 31B 3 , -CHX 31B 2 , -CH 2 X 31B , -OCX 31B 3 , -OCH 2 X 31B , -OCHX 31B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 31B is independently -F, -CI, -Br, or -I. In embodiments, R 31B is independently unsubstituted methyl. In embodiments, R 31B is independently

unsubstituted ethyl.

[0409] In embodiments, R 4 is hydrogen, -CX 4 3 , -CHX 4 2 , -CH 2 X 4 , or unsubstituted C1-C2 alkyl. In embodiments, R 4 is hydrogen.

[0410] In embodiments, L is independently a bond. In embodiments, L is independently - N(R 5 )-.

[0411] In embodiments, R 5 is independently hydrogen. In embodiments, R 5 is

independently -CX 5 3 . In embodiments, R 5 is independently -CHX 5 2 . In embodiments, R 5 is independently -CH2X 5 . In embodiments, R 5 is independently -C(0)R 5A . In embodiments, R 5 is independently -C(0)OR 5A . In embodiments, R 5 is independently -C(0) R 5A R 5B . In

embodiments, R 5 is independently -COOH. In embodiments, R 5 is independently -CO H2. In embodiments, R 5 is independently -CF 3 . In embodiments, R 5 is independently -CHF 2 . In embodiments, R 5 is independently -CH 2 F. In embodiments, R 5 is independently -CH 3 . In embodiments, R 5 is independently -CH 2 CH 3 . In embodiments, R 5 is independently - CH2CH2CH3. In embodiments, R 5 is independently -CH(CH 3 ) 2 . In embodiments, R 5 is independently -C(CH 3 ) 3 . In embodiments, R 5 is independently unsubstituted methyl. In embodiments, R 5 is independently unsubstituted ethyl. In embodiments, R 5 is independently unsubstituted propyl. In embodiments, R 5 is independently unsubstituted isopropyl. In embodiments, R 5 is independently unsubstituted n-propyl. In embodiments, R 5 is independently unsubstituted butyl. In embodiments, R 5 is independently unsubstituted n-butyl. In

embodiments, R 5 is independently unsubstituted t-butyl. In embodiments, R 5 is independently unsubstituted iso-butyl. In embodiments, R 5 is independently unsubstituted Ci-C 8 alkyl. In embodiments, R 5 is independently halo-substituted methyl. In embodiments, R 5 is independently halo- substituted ethyl. In embodiments, R 5 is independently halo- substituted isopropyl. In embodiments, R 5 is independently halo-substituted n-propyl. In embodiments, R 5 is

independently halo- substituted n-butyl. In embodiments, R 5 is independently halo- substituted t- butyl. In embodiments, R 5 is independently halo- substituted Ci-C 8 alkyl. [0412] In embodiments, R 5 is independently hydrogen, -CX 5 3 , -CHX 5 2, - CH 2 X 5 , -C(0)R 5A , -C(0)-OR 5A , -C(0) R 5A R 5B , substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0413] In embodiments, R 5 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 5 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 5 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 5 is independently unsubstituted methyl. In embodiments, R 5 is independently unsubstituted ethyl. In embodiments, R 5 is independently unsubstituted propyl. In embodiments, R 5 is independently unsubstituted isopropyl. In embodiments, R 5 is independently unsubstituted tert-butyl. In embodiments, R 5 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 5 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 5 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 5 is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 - C 6 , or C5-C 6 ). In embodiments, R 5 is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 5 is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 - C 6 , C4-C6, or C5-C 6 ). In embodiments, R 5 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5 is independently substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In

embodiments, R 5 is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 5 is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 5 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0414] In embodiments, R 5 is independently hydrogen, -CX 5 3 , -CHX 5 2, - CH 2 X 5 , -C(0)R 5A , -C(0)-OR 5A , -C(0) R 5A R 5B , R 32 -substituted or unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), R 32 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 32 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 32 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 32 -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 32 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5 is independently hydrogen, -CX 5 3 , - CHX 5 2, -CH2X 5 , -C(0)-OH, -C(0) H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 5 is independently -F, -CI, -Br, or -I.

[0415] R 32 is independently oxo,

halogen, -CX 32 3 , -CHX 32 2 , -CH 2 X 32 , -OCX 32 3 , -OCH2X 32 , -OCHX 32 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, -NHOH, R 33 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 33 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 33 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 33 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 33 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 33 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 32 is independently oxo,

halogen, -CX 32 3 , -CHX 32 2 , -CH 2 X 32 , -OCX 32 3 , -OCH2X 32 , -OCHX 32 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 32 is independently -F, -CI, -Br, or -I. In embodiments, R 32 is independently unsubstituted methyl. In embodiments, R 32 is independently unsubstituted ethyl.

[0416] R 33 is independently oxo,

halogen, -CX 33 3 , -CHX 33 2 , -CH 2 X 33 , -OCX 33 3 , -OCH2X 33 , -OCHX 33 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 34 -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 34 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 34 -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ), R 34 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 34 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 34 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 33 is independently oxo,

halogen, -CX 33 3 , -CHX 33 2 , -CH 2 X 33 , -OCX 33 3 , -OCH2X 33 , -OCHX 33 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 33 is independently -F, -CI, -Br, or -I. In embodiments, R 33 is independently unsubstituted methyl. In embodiments, R 33 is independently unsubstituted ethyl.

[0417] R 34 is independently oxo,

halogen, -CX 34 3 , -CHX 34 2 , -CH 2 X 34 , -OCX 34 3 , -OCH2X 34 , -OCHX 34 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 34 is independently -F, -CI, -Br, or -I. In embodiments, R 34 is independently unsubstituted methyl. In embodiments, R 34 is independently unsubstituted ethyl.

[0418] In embodiments, R 5A is independently hydrogen. In embodiments, R 5A is

independently -CX 5A 3 . In embodiments, R 5A is independently -CHX 5A 2. In embodiments, R 5A is independently -0¾Χ . In embodiments, R 5A is independently -CN. In embodiments, R 5A is independently -COOH. In embodiments, R 5A is independently -CO H2. In embodiments, X 5A is independently -F, -CI, -Br, or -I.

[0419] In embodiments, R 5A is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 5A is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 5A is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 5A is independently unsubstituted methyl. In

embodiments, R 5A is independently unsubstituted ethyl. In embodiments, R 5A is independently unsubstituted propyl. In embodiments, R 5A is independently unsubstituted isopropyl. In embodiments, R 5A is independently unsubstituted tert-butyl. In embodiments, R 5A is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 5A is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 5A is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 5A is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 5A is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 5A is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 5A is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5A is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5A is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5A is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 5A is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 5A is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 5A is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0420] In embodiments, R 5A is independently

hydrogen, -CX 5A 3 , -CHX 5A 2 , -CH 2 X 5A , -CN, -COOH, -CO H 2 , R 32A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 32A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 32A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or Cs-Ce), R 32A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 32A -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 32A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A is independently hydrogen, -CX 5A 3 , -CHX 5A 2 , -CH 2 X 5A , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 5A is independently -F, -CI, -Br, or -I. In embodiments, R 5A is independently hydrogen. In embodiments, R 5A is independently unsubstituted methyl. In embodiments, R 5A is independently unsubstituted ethyl.

[0421] In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form a R 32A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 32A - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form a R 32A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0422] R 32A is independently oxo,

halogen, -CX 32A 3 , -CHX 32A 2 , -CH 2 X 32A , -OCX 32A 3 , -OCH 2 X 32A , -OCHX 32A 2 , -CN, -OH, - H 2 , - COOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0)NHNH 2 , -NHC=(0) NH 2 , - HS0 2 H, - HC= (O)H, - HC(0)-OH, -NHOH, R 33A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C 1 -C 4 , or Ci-C 2 ), R 33A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 33A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), R 33A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 33A -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 33A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 32A is independently oxo,

halogen, -CX 32A 3 , -CHX 32A 2 , -CH 2 X 32A , -OCX 32A 3 , -OCH 2 X 32A , -OCHX 32A 2 , -CN, -OH, -NH 2 , - COOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , Ci-C 4 , or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 32A is independently -F, -CI, -Br, or -I. In embodiments, R 32A is independently unsubstituted methyl. In embodiments, R 32A is independently

unsubstituted ethyl.

[0423] R 33A is independently oxo,

halogen, -CX 33A 3 , -CHX 33A 2 , -CH 2 X 33A , -OCX 33A 3 , -OCH 2 X 33A , -OCHX 33A 2 , -CN, -OH, -NH 2 , - COOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 34A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 34A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 34A -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 34A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 34A - substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 34A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 33A is independently oxo,

halogen, -CX 33A 3 , -CHX 33A 2 , -CH 2 X 33A , -OCX 33A 3 , -OCH 2 X 33A , -OCHX 33A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 33A is independently -F, -CI, -Br, or -I. In embodiments, R 33A is independently unsubstituted methyl. In embodiments, R 33A is independently

unsubstituted ethyl. [0424] R 34A is independently oxo,

halogen, -CX 34A 3 , -CHX 34A 2 , -CH 2 X 34A , -OCX 34A 3 , -OCH 2 X 34A , -OCHX 34A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 34A is independently -F, -CI, -Br, or -I. In embodiments, R 34A is independently unsubstituted methyl. In embodiments, R 34A is independently

unsubstituted ethyl.

[0425] In embodiments, R 5B is independently hydrogen. In embodiments, R 5B is

independently -CX 5B 3. In embodiments, R 5B is independently -CHX 5B 2 . In embodiments, R 5B is independently -CH 2 X 5B . In embodiments, R 5B is independently -CN. In embodiments, R 5B is independently -COOH. In embodiments, R 5B is independently -CO H2. In embodiments, X 5B is independently -F, -CI, -Br, or -I.

[0426] In embodiments, R 5B is independently substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 5B is independently substituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 5B is independently unsubstituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 5B is independently unsubstituted methyl. In

embodiments, R 5B is independently unsubstituted ethyl. In embodiments, R 5B is independently unsubstituted propyl. In embodiments, R 5B is independently unsubstituted isopropyl. In embodiments, R 5B is independently unsubstituted tert-butyl. In embodiments, R 5B is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 5B is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 5B is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 5B is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ). In embodiments, R 5B is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 5B is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C4-C6, or C5-C 6 ). In embodiments, R 5B is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5B is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5B is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5B is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 5B is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 5B is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 5B is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5B is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5B is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0427] In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0428] In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0429] In embodiments, R 5B is independently

hydrogen, -CX 5B 3 , -CHX 5B 2 , -CH 2 X 5B , -CN, -COOH, -CO H 2 , R 32B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 32B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 32B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 32B - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 32B -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 32B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5B is independently hydrogen, -CX 5B 3 , -CHX 5B 2 , -CH 2 X 5B , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 5B is independently -F, -CI, -Br, or -I. In embodiments, R 5B is independently hydrogen. In embodiments, R 5B is independently unsubstituted methyl. In embodiments, R 5B is independently unsubstituted ethyl.

[0430] In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form a R 32B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 32B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form a R 32B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0431] R 32B is independently oxo,

halogen, -CX 32B 3 , -CHX 32B 2 , -CH 2 X 32B , -OCX 32B 3 , -OCH 2 X 32B , -OCHX 32B 2 , -CN, -OH, - H 2 , - COOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HS0 2 H, - HC= (O)H, - HC(0)-OH, -NHOH, R 33B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 33B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 33B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), R 33B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 33B -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 33B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 32B is independently oxo,

halogen, -CX 32B 3 , -CHX 32B 2 , -CH 2 X 32B , -OCX 32B 3 , -OCH 2 X 32B , -OCHX 32B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , Ci-C 4 , or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 32B is independently -F, -CI, -Br, or -I. In embodiments, R 32B is independently unsubstituted methyl. In embodiments, R 32B is independently

unsubstituted ethyl. [0432] R 33B is independently oxo,

halogen, -CX 33B 3 , -CHX 33B 2 , -CH 2 X 33B , -OCX 33B 3 , -OCH 2 X 33B , -OCHX 33B 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 34B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 34B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 34B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 34B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 34B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 34B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 33B is independently oxo,

halogen, -CX 33B 3 , -CHX 33B 2 , -CH 2 X 33B , -OCX 33B 3 , -OCH 2 X 33B , -OCHX 33B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 33B is independently -F, -CI, -Br, or -I. In embodiments, R 33B is independently unsubstituted methyl. In embodiments, R 33B is independently

unsubstituted ethyl.

[0433] R 34B is independently oxo,

halogen, -CX 34B 3 , -CHX 34B 2 , -CH 2 X 34B , -OCX 34B 3 , -OCH 2 X 34B , -OCHX 34B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 34B is independently -F, -CI, -Br, or -I. In embodiments, R 34B is independently unsubstituted methyl. In embodiments, R 34B is independently unsubstituted ethyl.

[0434] In embodiments, R 5 is hydrogen, -CX 5 3 , -CHX 5 2 , -CH 2 X 5 , or unsubstituted Ci-C 2 alkyl. In embodiments, R 5 is hydrogen. [0435] In embodiments, R 6 is independently hydrogen. In embodiments, R 6 is

independently -CX 6 3 . In embodiments, R 6 is independently -CHX 6 2 . In embodiments, R 6 is independently -CH 2 X 6 . In embodiments, R 6 is independently -C(0)R 6A . In embodiments, R 6 is independently -C(0)OR 6A . In embodiments, R 6 is independently -C(0) R 6A R 6B . In

embodiments, R 6 is independently -COOH. In embodiments, R 6 is independently -CO H 2 . In embodiments, R 6 is independently -CF 3 . In embodiments, R 6 is independently -CHF 2 . In embodiments, R 6 is independently -CH 2 F. In embodiments, R 6 is independently -CH 3 . In embodiments, R 6 is independently -CH 2 CH 3 . In embodiments, R 6 is independently - CH 2 CH 2 CH 3 . In embodiments, R 6 is independently -CH(CH 3 ) 2 . In embodiments, R 6 is independently -C(CH 3 ) 3 . In embodiments, R 6 is independently unsubstituted methyl. In embodiments, R 6 is independently unsubstituted ethyl. In embodiments, R 6 is independently unsubstituted propyl. In embodiments, R 6 is independently unsubstituted isopropyl. In embodiments, R 6 is independently unsubstituted n-propyl. In embodiments, R 6 is independently unsubstituted butyl. In embodiments, R 6 is independently unsubstituted n-butyl. In

embodiments, R 6 is independently unsubstituted t-butyl. In embodiments, R 6 is independently unsubstituted iso-butyl. In embodiments, R 6 is independently unsubstituted Ci-C 8 alkyl. In embodiments, R 6 is independently halo-substituted methyl. In embodiments, R 6 is independently halo- substituted ethyl. In embodiments, R 6 is independently halo- substituted isopropyl. In embodiments, R 6 is independently halo-substituted n-propyl. In embodiments, R 6 is

independently halo- substituted n-butyl. In embodiments, R 6 is independently halo- substituted t- butyl. In embodiments, R 6 is independently halo- substituted Ci-C 8 alkyl.

[0436] In embodiments, R 6 is independently hydrogen, -CX 6 3 , -CHX 6 2 , - CH 2 X 6 , -C(0)R 6A , -C(0)-OR 6A , -C(0) R 6A R 6B , substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0437] In embodiments, R 6 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 6 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 6 is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 6 is independently unsubstituted methyl. In embodiments, R 6 is independently unsubstituted ethyl. In embodiments, R 6 is independently unsubstituted propyl. In embodiments, R 6 is independently unsubstituted isopropyl. In embodiments, R 6 is independently unsubstituted tert-butyl. In embodiments, R 6 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 - C 6 , or C5-C 6 ). In embodiments, R 6 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 -C 6 , or C5-C 6 ). In embodiments, R 6 is independently unsubstituted cycloalkyl (e.g., C3-C8, C 3 - C 6 , C4-C6, or C5-C 6 ). In embodiments, R 6 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6 is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In

embodiments, R 6 is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 6 is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 6 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0438] In embodiments, R 6 is independently hydrogen, -CX 6 3 , -CHX 6 2 , -

CH 2 X 6 , -C(0)R 6A , -C(0)-OR 6A , -C(0) R 6A R 6B , R 35 -substituted or unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), R 35 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 35 -substituted or unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-C 6 ), R 35 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 35 -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 35 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6 is independently hydrogen, -CX 6 3 , - CHX 6 2, -CH 2 X 6 , -C(0)-OH, -C(0) H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , Ci-C 4 , or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 6 is independently -F, -CI, -Br, or -I.

[0439] R 35 is independently oxo,

halogen, -CX 35 3 , -CHX 35 2 , -CH 2 X 35 , -OCX 35 3 , -OCH 2 X 35 , -OCHX 35 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, -NHOH, R 36 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , Ci-C 4 , or C1-C2), R 36 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 36 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), R 36 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 36 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 36 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 35 is independently oxo,

halogen, -CX 35 3 , -CHX 35 2 , -CH 2 X 35 , -OCX 35 3 , -OCH2X 35 , -OCHX 35 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -S0 4 H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , Ci-C 4 , or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 35 is independently -F, -CI, -Br, or -I. In embodiments, R 35 is independently unsubstituted methyl. In embodiments, R 35 is independently unsubstituted ethyl. [0440] R 36 is independently oxo,

halogen, -CX 36 3 , -CHX 36 2 , -CH 2 X 36 , -OCX 36 3 , -OCH 2 X 36 , -OCHX 36 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 37 -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 37 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 37 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 37 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 37 -substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 37 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 36 is independently oxo,

halogen, -CX 36 3 , -CHX 36 2 , -CH 2 X 36 , -OCX 36 3 , -OCH 2 X 36 , -OCHX 36 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 36 is independently -F, -CI, -Br, or -I. In embodiments, R 36 is independently unsubstituted methyl. In embodiments, R 36 is independently unsubstituted ethyl.

[0441] R 37 is independently oxo,

halogen, -CX 37 3 , -CHX 37 2 , -CH 2 X 37 , -OCX 37 3 , -OCH2X 37 , -OCHX 37 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 37 is independently -F, -CI, -Br, or -I. In embodiments, R 37 is independently unsubstituted methyl. In embodiments, R 37 is independently unsubstituted ethyl.

[0442] In embodiments, R 6A is independently hydrogen. In embodiments, R 6A is

independently -CX 6A 3 . In embodiments, R 6A is independently -CHX 6A 2. In embodiments, R 6A is independently -0¾Χ . In embodiments, R 6A is independently -CN. In embodiments, R 6A is independently -COOH. In embodiments, R 6A is independently -CO H2. In embodiments, X 6A is independently -F, -CI, -Br, or -I.

[0443] In embodiments, R 6A is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 6A is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 6A is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 6A is independently unsubstituted methyl. In

embodiments, R 6A is independently unsubstituted ethyl. In embodiments, R 6A is independently unsubstituted propyl. In embodiments, R 6A is independently unsubstituted isopropyl. In embodiments, R 6A is independently unsubstituted tert-butyl. In embodiments, R 6A is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6A is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6A is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6A is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 6A is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 6A is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 6A is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6A is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6A is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6A is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 6A is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 6A is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 6A is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0444] In embodiments, R 6A is independently

hydrogen, -CX 6A 3 , -CHX 6A 2 , -CH 2 X 6A , -CN, -COOH, -CO H 2 , R 35A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 35A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 35A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or Cs-Ce), R 35A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 35 A - substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 35A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A is independently hydrogen, -CX 6A 3 , -CHX 6A 2 , -CH 2 X 6A , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 6A is independently -F, -CI, -Br, or -I. In embodiments, R 6A is independently hydrogen. In embodiments, R 6A is independently unsubstituted methyl. In embodiments, R 6A is independently unsubstituted ethyl.

[0445] In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form a R 35A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 35A - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form a R 35A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0446] R 35A is independently oxo,

halogen, -CX 35A 3 , -CHX 35A 2 , -CH 2 X 35A , -OCX 35A 3 , -OCH 2 X 35A , -OCHX 35A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH 2 , -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 36A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 36A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 36A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 36A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 36A - substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 36A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 35A is independently oxo,

halogen, -CX 35A 3 , -CHX 35A 2 , -CH 2 X 35A , -OCX 35A 3 , -OCH 2 X 35A , -OCHX 35A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 35A is independently -F, -CI, -Br, or -I. In embodiments, R 35A is independently unsubstituted methyl. In embodiments, R 35A is independently

unsubstituted ethyl.

[0447] R 36A is independently oxo,

halogen, -CX 36A 3 , -CHX 36A 2 , -CH 2 X 36A , -OCX 36A 3 , -OCH 2 X 36A , -OCHX 36A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 37A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 37A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 37A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 37A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 37A - substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 37A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 36A is independently oxo,

halogen, -CX 36A 3 , -CHX 36A 2 , -CH 2 X 36A , -OCX 36A 3 , -OCH 2 X 36A , -OCHX 36A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH 2 , -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 36A is independently -F, -CI, -Br, or -I. In embodiments, R 36A is independently unsubstituted methyl. In embodiments, R 36A is independently

unsubstituted ethyl. [0448] R 37A is independently oxo,

halogen, -CX 37A 3 , -CHX 37A 2 , -CH 2 X 37A , -OCX 37A 3 , -OCH 2 X 37A , -OCHX 37A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 37A is independently -F, -CI, -Br, or -I. In embodiments, R 37A is independently unsubstituted methyl. In embodiments, R 37A is independently

unsubstituted ethyl.

[0449] In embodiments, R 6B is independently hydrogen. In embodiments, R 6B is

independently -CX 6B 3 . In embodiments, R 6B is independently -CHX 6B 2 . In embodiments, R 6B is independently -CH 2 X 6B . In embodiments, R 6B is independently -CN. In embodiments, R 6B is independently -COOH. In embodiments, R 6B is independently -CONH2. In embodiments, X 6B is independently -F, -CI, -Br, or -I.

[0450] In embodiments, R 6B is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 6B is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 6B is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 6B is independently unsubstituted methyl. In embodiments, R 6B is independently unsubstituted ethyl. In embodiments, R 6B is independently unsubstituted propyl. In embodiments, R 6B is independently unsubstituted isopropyl. In embodiments, R 6B is independently unsubstituted tert-butyl. In embodiments, R 6B is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6B is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6B is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 6B is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 6B is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 6B is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 6B is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6B is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6B is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6B is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 6B is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 6B is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 6B is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6B is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6B is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0451] In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0452] In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0453] In embodiments, R 6B is independently

hydrogen, -CX 6B 3 , -CHX 6B 2 , -CH 2 X 6B , -CN, -COOH, -CO H 2 , R 35B - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 35B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 35B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 35B - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 35B -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 35B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6B is independently hydrogen, -CX 6B 3 , -CHX 6B 2 , -CH 2 X 6B , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 6B is independently -F, -CI, -Br, or -I. In embodiments, R 6B is independently hydrogen. In embodiments, R 6B is independently unsubstituted methyl. In embodiments, R 6B is independently unsubstituted ethyl.

[0454] In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form a R 35B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 35B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form a R 35B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0455] R 35B is independently oxo,

halogen, -CX 35B 3 , -CHX 35B 2 , -CH 2 X 35B , -OCX 35B 3 , -OCH 2 X 35B , -OCHX 35B 2 , -CN, -OH, - H 2 , - COOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HS0 2 H, - HC= (O)H, - HC(0)-OH, -NHOH, R 36B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C 1 -C 4 , or Ci-C 2 ), R 36B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 36B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), R 36B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 36B -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 36B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 35B is independently oxo,

halogen, -CX 35B 3 , -CHX 35B 2 , -CH 2 X 35B , -OCX 35B 3 , -OCH 2 X 35B , -OCHX 35B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , Ci-C 4 , or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 35B is independently -F, -CI, -Br, or -I. In embodiments, R 35B is independently unsubstituted methyl. In embodiments, R 35B is independently

unsubstituted ethyl.

[0456] R 36B is independently oxo,

halogen, -CX 36B 3 , -CHX 36B 2 , -CH 2 X 36B , -OCX 36B 3 , -OCH 2 X 36B , -OCHX 36B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 37B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , Ci-C 4 , or Ci-C 2 ), R 37B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 37B -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 37B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 37B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 37B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 36B is independently oxo,

halogen, -CX 36B 3 , -CHX 36B 2 , -CH 2 X 36B , -OCX 36B 3 , -OCH 2 X 36B , -OCHX 36B 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -SO3H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 36B is independently -F, -CI, -Br, or -I. In embodiments, R 36B is independently unsubstituted methyl. In embodiments, R 36B is independently

unsubstituted ethyl.

[0457] R 37B is independently oxo,

halogen, -CX 37B 3 , -CHX 37B 2 , -CH 2 X 37B , -OCX 37B 3 , -OCH 2 X 37B , -OCHX 37B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -SO3H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-C6, C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 37B is independently -F, -CI, -Br, or -I. In embodiments, R 37B is independently unsubstituted methyl. In embodiments, R 37B is independently

unsubstituted ethyl. [0458] In embodiments, R 6 is hydrogen, -CX 6 3 , -CHX 6 2 , -CH 2 X 6 , or unsubstituted C1-C2 alkyl. In embodiments, R 6 is hydrogen.

[0459] In embodiments, R 7 is independently hydrogen, halogen, -CX 7 3, -CHX 7 2 , -

OCH2X 7 , -OCHX 7 2, -CN, -SOnvR 7A , -SOvvNR 7A R 7B , -NHC(0)NR 7A R 7B , -N(0) m7 , -NR 7A R 7B , -C(0)R 7A , -C(0)OR 7A , -C(0) R 7A R 7B , -OR 7A , - R 7A S0 2 R 7B , - R 7A C(0)R 7B , - R 7A C(0)OR 7B , -NR 7A OR 7B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. [0460] In embodiments, R 7 is independently hydrogen. In embodiments, R 7 is

independently -CX 7 3 . In embodiments, R 7 is independently -CHX 7 2 . In embodiments, R 7 is independently -CH 2 X 7 . In embodiments, R 7 is independently -OCX 7 3 . In embodiments, R 7 is independently -OCH 2 X 7 . In embodiments, R 7 is independently -OCHX 7 2 . In embodiments, R 7 is independently -CN. In embodiments, R 7 is independently -C(0)R 7A . In embodiments, R 7 is independently -C(0)OR 7A . In embodiments, R 7 is independently -C(0) R 7A R 7B . In

embodiments, R 7 is independently -OR 7A . In embodiments, R 7 is independently -OH. In embodiments, R 7 is independently -COOH. In embodiments, R 7 is independently -CO H 2 . In embodiments, R 7 is independently -CF 3 . In embodiments, R 7 is independently -CHF 2 . In embodiments, R 7 is independently -CH 2 F. In embodiments, R 7 is independently -OCF 3 . In embodiments, R 7 is independently -OCH 2 F. In embodiments, R 7 is independently -OCHF 2 . In embodiments, R 7 is independently -OCH 3 . In embodiments, R 7 is independently -OCH 2 CH 3 . In embodiments, R 7 is independently -OCH 2 CH 2 CH 3 . In embodiments, R 7 is independently - OCH(CH 3 ) 2 . In embodiments, R 7 is independently -OC(CH 3 ) 3 . In embodiments, R 7 is independently -CH 3 . In embodiments, R 7 is independently -CH 2 CH 3 . In embodiments, R 7 is independently -CH 2 CH 2 CH 3 . In embodiments, R 7 is independently -CH(CH 3 ) 2 . In

embodiments, R 7 is independently -C(CH 3 ) 3 . In embodiments, R 7 is independently

unsubstituted methyl. In embodiments, R 7 is independently unsubstituted ethyl. In

embodiments, R 7 is independently unsubstituted propyl. In embodiments, R 7 is independently unsubstituted isopropyl. In embodiments, R 7 is independently unsubstituted n-propyl. In embodiments, R 7 is independently unsubstituted butyl. In embodiments, R 7 is independently unsubstituted n-butyl. In embodiments, R 7 is independently unsubstituted t-butyl. In

embodiments, R 7 is independently unsubstituted iso-butyl. In embodiments, R 7 is independently unsubstituted Ci-C 8 alkyl. In embodiments, R 7 is independently halo-substituted methyl. In embodiments, R 7 is independently halo-substituted ethyl. In embodiments, R 7 is independently halo- sub stituted isopropyl. In embodiments, R 7 is independently halo- sub stituted n-propyl. In embodiments, R 7 is independently halo-substituted n-butyl. In embodiments, R 7 is

independently halo- sub stituted t-butyl. In embodiments, R 7 is independently halo- sub stituted Ci-C 8 alkyl. In embodiments, R 7 is independently -N 3 . [0461] In embodiments, R 7 is independently hydrogen, -CX 7 3 , -CHX 7 2 , -CH 2 X 7 , -OCX 7 3 , - OCH 2 X 7 , -OCHX 7 2 , -CN, -C(0)R 7A , -C(0)OR 7A , -C(0) R 7A R 7B , -OR 7A , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. In embodiments, R 7 is independently hydrogen, -CX 7 3 , -

CH 2 X 7 , -OCX 7 3 , -OCH2X 7 , -OCHX 7 2, -CN, -C(0)R 7A , -C(0)-OR 7A , -C(0)NR 7A R 7B , -OR 7A , substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), substituted or

unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 - C 6 , or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). [0462] In embodiments, R 7 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 7 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 7 is independently unsubstituted alkyl (e.g., Ci-C 8 , C1-G5, C1-C4, or C1-C2). In embodiments, R 7 is independently unsubstituted methyl. In embodiments, R 7 is independently unsubstituted ethyl. In embodiments, R 7 is independently unsubstituted propyl. In embodiments, R 7 is independently unsubstituted isopropyl. In embodiments, R 7 is independently unsubstituted tert-butyl. In embodiments, R 7 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 7 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 7 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 7 is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 - C 6 , or C5-C 6 ). In embodiments, R 7 is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 7 is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 - C 6 , C4-C6, or C5-C 6 ). In embodiments, R 7 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 7 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 7 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 7 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0463] In embodiments, R 7 is independently hydrogen, -CX 7 3 , -CHX 7 2, - CH 2 X 7 , -OCX 7 3 , -OCH2X 7 , -OCHX 7 2, -CN, -C(0)R 7A , -C(0)-OR 7A , -C(0) R 7A R 7B , -OR 7A , R 38 - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 38 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 38 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6), R 38 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 38 -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 38 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7 is independently hydrogen, -CX 7 3 , -CHX 7 2 , -

CH2X 7 , -OCX 7 3 , -OCH2X 7 , -OCHX 7 2, -CN, -C(0)-OH, -C(0)NH 2 , -OH, unsubstituted alkyl (e.g., Ci-C 8 , C1-G5, C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 7 is independently -F, -CI, -Br, or -I.

[0464] R 38 is independently oxo,

halogen, -CX 38 3 , -CHX 38 2 , -CH 2 X 38 , -OCX 38 3 , -OCH 2 X 38 , -OCHX 38 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, R 39 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 39 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 39 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 39 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 39 - substituted or unsubstituted aryl (e.g., C 6 - Co, C 6 -Cio, or phenyl), or R 39 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 38 is independently oxo,

halogen, -CX 38 3 , -CHX 38 2 , -CH 2 X 38 , -OCX 38 3 , -OCH 2 X 38 , -OCHX 38 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 38 is independently -F, -CI, -Br, or -I. In embodiments, R 38 is independently unsubstituted methyl. In embodiments, R 38 is independently unsubstituted ethyl. [0465] R 39 is independently oxo,

halogen, -CX 39 3 , -CHX 39 2 , -CH 2 X 39 , -OCX 39 3 , -OCH2X 39 , -OCHX 39 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 40 -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 40 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 40 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 40 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 40 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 40 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 39 is independently oxo,

halogen, -CX 39 3 , -CHX 39 2 , -CH 2 X 39 , -OCX 39 3 , -OCH2X 39 , -OCHX 39 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 39 is independently -F, -CI, -Br, or -I. In embodiments, R 39 is independently unsubstituted methyl. In embodiments, R 39 is independently unsubstituted ethyl.

[0466] R 40 is independently oxo,

halogen, -CX 40 3 , -CHX 40 2 , -CH 2 X 40 , -OCX 40 3 , -OCH 2 X 40 , -OCHX 40 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 40 is independently -F, -CI, -Br, or -I. In embodiments, R 40 is independently unsubstituted methyl. In embodiments, R 40 is independently unsubstituted ethyl.

[0467] In embodiments, R 7A is independently hydrogen. In embodiments, R 7A is

independently -CX 7A 3 . In embodiments, R 7A is independently -CHX 7A 2 . In embodiments, R 7A is independently -CH 2 X 7A . In embodiments, R 7A is independently -CN. In embodiments, R 7A is independently -COOH. In embodiments, R 7A is independently -CONH2. In embodiments, X 7A is independently -F, -CI, -Br, or -I.

[0468] In embodiments, R 7A is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 7A is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 7A is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 7A is independently unsubstituted methyl. In

embodiments, R 7A is independently unsubstituted ethyl. In embodiments, R 7A is independently unsubstituted propyl. In embodiments, R 7A is independently unsubstituted isopropyl. In embodiments, R 7A is independently unsubstituted tert-butyl. In embodiments, R 7A is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 7A is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 7A is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 7A is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 7A is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 7A is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 7A is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7A is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7A is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7A is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 7A is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 7A is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 7A is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0469] In embodiments, R 7A is independently

hydrogen, -CX 7A 3 , -CHX 7A 2 , -CH 2 X 7A , -CN, -COOH, -CO H 2 , R 38 A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 38A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 38A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 38A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 38A - substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 38A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A is independently hydrogen, -CX 7A 3 , -CHX 7A 2 , -CH 2 X 7A , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C 8 , C3-G5, C 4 -C 6 , or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 7A is independently -F, -CI, -Br, or -I. In embodiments, R 7A is independently hydrogen. In embodiments, R 7A is independently unsubstituted methyl. In embodiments, R 7A is independently unsubstituted ethyl. [0470] In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form a R 38 A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 38A - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form a R 38 A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0471] R 38A is independently oxo,

halogen, -CX 38A 3 , -CHX 38A 2 , -CH 2 X 38A , -OCX 38A 3 , -OCH 2 X 38A , -OCHX 38A 2 , -CN, -OH, - H 2 , - COOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0)NHNH 2 , -NHC=(0) NH 2 , - HS0 2 H, - HC= (O)H, - HC(0)-OH, - HOH, R 39 A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C 1 -C 4 , or Ci-C 2 ), R 39A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 39 A - substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), R 39A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 39A -substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 39A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 38A is independently oxo,

halogen, -CX 38A 3 , -CHX 38A 2 , -CH 2 X 38A , -OCX 38A 3 , -OCH 2 X 38A , -OCHX 38A 2 , -CN, -OH, -NH 2 , - COOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHS0 2 H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , Ci-C 4 , or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 38A is independently -F, -CI, -Br, or -I. In embodiments, R 38A is independently unsubstituted methyl. In embodiments, R 38A is independently

unsubstituted ethyl.

[0472] R 39A is independently oxo,

halogen, -CX 39A 3 , -CHX 39A 2 , -CH 2 X 39A , -OCX 39A 3 , -OCH 2 X 39A , -OCHX 39A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , -NHC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 40A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 40A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 40A - substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 40A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 40A - substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 40A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 39A is independently oxo,

halogen, -CX 39A 3 , -CHX 39A 2 , -CH 2 X 39A , -OCX 39A 3 , -OCH 2 X 39A , -OCHX 39A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 39A is independently -F, -CI, -Br, or -I. In embodiments, R 39A is independently unsubstituted methyl. In embodiments, R 39A is independently

unsubstituted ethyl.

[0473] R 40A is independently oxo,

halogen, -CX 40A 3 , -CHX 40A 2 , -CH 2 X 40A , -OCX 40A 3 , -OCH 2 X 40A , -OCHX 40A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 40A is independently -F, -CI, -Br, or -I. In embodiments, R 40A is independently unsubstituted methyl. In embodiments, R 40A is independently

unsubstituted ethyl. [0474] In embodiments, R 7B is independently hydrogen. In embodiments, R 7B is

independently -CX 7B 3 . In embodiments, R 7B is independently -CHX 7B 2. In embodiments, R 7B is independently -0¾Χ . In embodiments, R 7B is independently -CN. In embodiments, R 7B is independently -COOH. In embodiments, R 7B is independently -CO H2. In embodiments, X 7B is independently -F, -CI, -Br, or -I. [0475] In embodiments, R 7B is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 ,

Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 7B is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 7B is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 7B is independently unsubstituted methyl. In

embodiments, R 7B is independently unsubstituted ethyl. In embodiments, R 7B is independently unsubstituted propyl. In embodiments, R 7B is independently unsubstituted isopropyl. In embodiments, R 7B is independently unsubstituted tert-butyl. In embodiments, R 7B is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 7B is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 7B is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 7B is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 7B is independently substituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 7B is independently unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ). In embodiments, R 7B is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7B is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7B is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7B is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 7B is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 7B is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 7B is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7B is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7B is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0476] In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0477] In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0478] In embodiments, R 7B is independently

hydrogen, -CX 7B 3 , -CHX 7B 2 , -CH 2 X 7B , -CN, -COOH, -CO H 2 , R 38B - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), R 38B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 38B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 38B - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 38B -substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or R 38B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7B is independently hydrogen, -CX 7B 3 , -CHX 7B 2 , -CH 2 X 7B , -CN, -COOH, -CONH 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 7B is independently -F, -CI, -Br, or -I. In embodiments, R 7B is independently hydrogen. In embodiments, R 7B is independently

unsubstituted methyl. In embodiments, R 7B is independently unsubstituted ethyl. [0479] In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form a R 38B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 38B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form a R 38B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0480] R 38B is independently oxo,

halogen, -CX 38B 3 , -CHX 38B 2 , -CH 2 X 38B , -OCX 38B 3 , -OCH 2 X 38B , -OCHX 38B 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, - HOH, R 39B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 39B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 39B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 39B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 39B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 39B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 38B is independently oxo,

halogen, -CX 38B 3 , -CHX 38B 2 , -CH 2 X 38B , -OCX 38B 3 , -OCH 2 X 38B , -OCHX 38B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 38B is independently -F, -CI, -Br, or -I. In embodiments, R 38B is independently unsubstituted methyl. In embodiments, R 38B is independently

unsubstituted ethyl.

[0481] R 39B is independently oxo,

halogen, -CX 39B 3 , -CHX 39B 2 , -CH 2 X 39B , -OCX 39B 3 , -OCH 2 X 39B , -OCHX 39B 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, R 40B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 40B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 40B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 40B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 40B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 40B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 39B is independently oxo,

halogen, -CX 39B 3 , -CHX 39B 2 , -CH 2 X 39B , -OCX 39B 3 , -OCH 2 X 39B , -OCHX 39B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 39B is independently -F, -CI, -Br, or -I. In embodiments, R 39B is independently unsubstituted methyl. In embodiments, R 39B is independently

unsubstituted ethyl.

[0482] R 40B is independently oxo,

halogen, -CX 40B 3 , -CHX 40B 2 , -CH 2 X 40B , -OCX 40B 3 , -OCH 2 X 40B , -OCHX 40B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH 2 , -N0 2 , -SH, -S0 3 H, -S0 4 H, -S0 2 NH 2 , -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 40B is independently -F, -CI, -Br, or -I. In embodiments, R 40B is independently unsubstituted methyl. In embodiments, R 40B is independently

unsubstituted ethyl.

[0483] In embodiments, R 7 is hydrogen, -CX 7 3 , -CHX 7 2 , -CH 2 X 7 , or unsubstituted C1-C2 alkyl. In embodiments, R 7 is hydrogen.

[0484] In embodiments, R 8 is independently hydrogen, halogen, -CX 8 3 , -CHX 8 2 , - CH 2 X 8 , -OCX 8 3 , -

OCH2X 8 , -OCHX 8 2, -CN, -SO n8 R 8A , -SO v8 R 8A R 8B , - HC(0) R 8A R 8B , -N(0) m8 , - R 8A R 8B , -C(0)R 8A , -C(0)OR 8A , -C(0) R 8A R 8B , -OR 8A , - R 8A S0 2 R 8B , - R 8A C(0)R 8B , -NR 8A C(0)OR 8B , -NR 8A OR 8B , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.

[0485] In embodiments, R 8 is independently hydrogen. In embodiments, R 8 is

independently -CX 8 3 . In embodiments, R 8 is independently -CHX 8 2 . In embodiments, R 8 is independently -CH 2 X 8 . In embodiments, R 8 is independently -OCX 8 3 . In embodiments, R 8 is independently -OCH2X 8 . In embodiments, R 8 is independently -OCHX 8 2 . In embodiments, R 8 is independently -CN. In embodiments, R 8 is independently -C(0)R 8A . In embodiments, R 8 is independently -C(0)OR 8A . In embodiments, R 8 is independently -C(0)NR 8A R 8B . In

embodiments, R 8 is independently -OR 8A . In embodiments, R 8 is independently -OH. In embodiments, R 8 is independently -COOH. In embodiments, R 8 is independently -CONH2. In embodiments, R 8 is independently -CF 3 . In embodiments, R 8 is independently -CHF 2 . In embodiments, R 8 is independently -CH 2 F. In embodiments, R 8 is independently -OCF 3 . In embodiments, R 8 is independently -OCH2F. In embodiments, R 8 is independently -OCHF2. In embodiments, R 8 is independently -OCH 3 . In embodiments, R 8 is independently -OCH 2 CH 3 . In embodiments, R 8 is independently -OCH 2 CH 2 CH 3 . In embodiments, R 8 is independently - OCH(CH 3 ) 2 . In embodiments, R 8 is independently -OC(CH 3 ) 3 . In embodiments, R 8 is independently -CH 3 . In embodiments, R 8 is independently -CH2CH3. In embodiments, R 8 is independently -CH 2 CH 2 CH 3 . In embodiments, R 8 is independently -CH(CH 3 ) 2 . In

embodiments, R 8 is independently -C(CH 3 ) 3 . In embodiments, R 8 is independently unsubstituted methyl. In embodiments, R 8 is independently unsubstituted ethyl. In embodiments, R 8 is independently unsubstituted propyl. In embodiments, R 8 is independently unsubstituted isopropyl. In embodiments, R 8 is independently unsubstituted n-propyl. In embodiments, R 8 is independently unsubstituted butyl. In embodiments, R 8 is independently unsubstituted n-butyl. In embodiments, R 8 is independently unsubstituted t-butyl. In

embodiments, R 8 is independently unsubstituted iso-butyl. In embodiments, R 8 is independently unsubstituted Ci-C 8 alkyl. In embodiments, R 8 is independently halo-substituted methyl. In embodiments, R 8 is independently halo-substituted ethyl. In embodiments, R 8 is independently halo- substituted isopropyl. In embodiments, R 8 is independently halo- substituted n-propyl. In embodiments, R 8 is independently halo-substituted n-butyl. In embodiments, R 8 is

independently halo- substituted t-butyl. In embodiments, R 8 is independently halo- substituted Ci-C 8 alkyl. In embodiments, R 8 is independently -N 3 .

[0486] In embodiments, R 8 is independently hydrogen, -CX 8 3 , -CHX 8 2 , -CH 2 X 8 , -OCX 8 3 , - OCH 2 X 8 , -OCHX 8 2 , -CN, -C(0)R 8A , -C(0)OR 8A , -C(0) R 8A R 8B , -OR 8A , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl. In embodiments, R 8 is independently hydrogen, -CX 8 3 , -

CH 2 X 8 , -OCX 8 3 , -OCH2X 8 , -OCHX 8 2, -CN, -C(0)R 8A , -C(0)-OR 8A , -C(0)NR 8A R 8B , -OR 8A , substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), substituted or

unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 - C 6 , or C5-C 6 ), substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), substituted or unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or substituted or unsubstituted heteroaryl (e.g., 5 to 12, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0487] In embodiments, R 8 is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 8 is independently substituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 8 is independently unsubstituted alkyl (e.g., Ci-C 8 , C1-G5, C1-C4, or C1-C2). In embodiments, R 8 is independently unsubstituted methyl. In embodiments, R 8 is independently unsubstituted ethyl. In embodiments, R 8 is independently unsubstituted propyl. In embodiments, R 8 is independently unsubstituted isopropyl. In embodiments, R 8 is independently unsubstituted tert-butyl. In embodiments, R 8 is independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 8 is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 8 is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 8 is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 - C 6 , or C5-C6). In embodiments, R 8 is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 -C 6 , or C5-C6). In embodiments, R 8 is independently unsubstituted cycloalkyl (e.g., C3-C8, C 3 - C 6 , C 4 -C 6 , or C5-C6). In embodiments, R 8 is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8 is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8 is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8 is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In

embodiments, R 8 is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 8 is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 8 is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8 is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8 is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0488] In embodiments, R 8 is independently hydrogen, -CX -CHX 8 2, -

CH2X 8 , -OCX 8 3, -OCH2X 8 , -OCHX 8 2, -CN, -C(0)R 8A , -C(0)-OR 8A , -C(0) R 8A R 8B , -OR 8A , R 41 - substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or C1-C2), R 41 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 41 - substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C 4 -C 6 , or C5-C6), R 41 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 41 - substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or R 41 - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8 is independently hydrogen, -CX 8 3, -CHX 8 2, -

CH2X 8 , -OCX 8 3, -OCH2X 8 , -OCHX 8 2, -CN, -C(0)-OH, -C(0)NH 2 , -OH, unsubstituted alkyl (e.g., C1-C8, C1-G5, C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-G5, C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 8 is independently -F, -CI, -Br, or -I.

[0489] R 41 is independently oxo,

halogen, -CX 41 3 , -CHX 41 2 , -CH 2 X 41 , -OCX 41 3 , -OCH 2 X 41 , -OCHX 41 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, -NHOH, R 42 -substituted or

unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 42 -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 42 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 42 -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 42 - substituted or unsubstituted aryl (e.g., C 6 - C12, C 6 -Cio, or phenyl), or R 42 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 41 is independently oxo,

halogen, -CX 41 3 , -CHX 41 2 , -CH 2 X 41 , -OCX 41 3 , -OCH2X 41 , -OCHX 41 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered,

4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 41 is independently -F, -CI, -Br, or -I. In embodiments, R 41 is independently unsubstituted methyl. In embodiments, R 41 is independently unsubstituted ethyl.

[0490] R 42 is independently oxo,

halogen, -CX 42 3 , -CHX 42 2 , -CH 2 X 42 , -OCX 42 3 , -OCH2X 42 , -OCHX 42 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 43 -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 43 - substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 43 -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 43 - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 43 -substituted or unsubstituted aryl (e.g., C 6 - Ci2, C 6 -Cio, or phenyl), or R 43 -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 42 is independently oxo,

halogen, -CX 42 3 , -CHX 42 2 , -CH 2 X 42 , -OCX 42 3 , -OCH 2 X 42 , -OCHX 42 2 , -CN, -OH, - H 2 , -COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -O H2, -NHC=(0) HNH 2 ,

- HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 42 is independently -F, -CI, -Br, or -I. In embodiments, R 42 is independently unsubstituted methyl. In embodiments, R 42 is independently unsubstituted ethyl.

[0491] R 43 is independently oxo,

halogen, -CX 43 3 , -CHX 43 2 , -CH 2 X 43 , -OCX 43 3 , -OCH2X 43 , -OCHX 43 2 , -CN, -OH, -NH 2 , -COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 ,

-NHC=(0)NH 2 , -NHSO2H, -NHC=(0)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 43 is independently -F, -CI, -Br, or -I. In embodiments, R 43 is independently unsubstituted methyl. In embodiments, R 43 is independently unsubstituted ethyl.

[0492] In embodiments, R 8A is independently hydrogen. In embodiments, R 8A is

independently -CX 8A 3 . In embodiments, R 8A is independently -CHX 8A 2 . In embodiments, R 8A is independently -CH 2 X 8A . In embodiments, R 8A is independently -CN. In embodiments, R 8A is independently -COOH. In embodiments, R 8A is independently -CONH2. In embodiments, X 8A is independently -F, -CI, -Br, or -I.

[0493] In embodiments, R 8A is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 8A is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 8A is independently unsubstituted alkyl (e.g., Ci-Cs, Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 8A is independently unsubstituted methyl. In embodiments, R 8A is independently unsubstituted ethyl. In embodiments, R 8A is independently unsubstituted propyl. In embodiments, R 8A is independently unsubstituted isopropyl. In embodiments, R 8A is independently unsubstituted tert-butyl. In embodiments, R 8A is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 8A is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 8A is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 8A is independently substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 8A is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 8A is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ). In embodiments, R 8A is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8A is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8A is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8A is independently substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl). In embodiments, R 8A is independently substituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 8A is independently unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl). In embodiments, R 8A is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0494] In embodiments, R 8A is independently

hydrogen, -CX 8A 3 , -CHX 8A 2 , -CH 2 X 8A , -CN, -COOH, -CO H2, R 41A -substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or Ci-C2), R 41A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 41A -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or Cs-Ce), R 41A - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 41A - substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 41A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A is independently hydrogen, -CX 8A 3 , -CHX 8A 2 , -CH 2 X 8A , -CN, -COOH, -CO H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 8A is independently -F, -CI, -Br, or -I. In embodiments, R 8A is independently hydrogen. In embodiments, R 8A is independently unsubstituted methyl. In embodiments, R 8A is independently unsubstituted ethyl.

[0495] In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form a R 41A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 41A - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form a R 41A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered).

[0496] R 41A is independently oxo,

halogen, -CX 41A 3 , -CHX 41A 2 , -CH 2 X 41A , -OCX 41A 3 , -OCH 2 X 41A , -OCHX 41A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 42A - substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 42A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 42A - substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 42A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 42A - substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 42A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 41A is independently oxo,

halogen, -CX 41A 3 , -CHX 41A 2 , -CH 2 X 41A , -OCX 41A 3 , -OCH 2 X 41A , -OCHX 41A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH 2 , -O H2, - HC=(0)NHNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 41A is independently -F, -CI, -Br, or -I. In embodiments, R 41A is independently unsubstituted methyl. In embodiments, R 41A is independently

unsubstituted ethyl. [0497] R 42A is independently oxo,

halogen, -CX 42A 3 , -CHX 42A 2 , -CH 2 X 42A , -OCX 42A 3 , -OCH 2 X 42A , -OCHX 42A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 43A -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 43A -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 43A -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-G5, or C5-C 6 ), R 43A -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 43A -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 43A -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 42A is independently oxo,

halogen, -CX 42A 3 , -CHX 42A 2 , -CH 2 X 42A , -OCX 42A 3 , -OCH 2 X 42A , -OCHX 42A 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 42A is independently -F, -CI, -Br, or -I. In embodiments, R 42A is independently unsubstituted methyl. In embodiments, R 42A is independently

unsubstituted ethyl.

[0498] R 43A is independently oxo,

halogen, -CX 43A 3 , -CHX 43A 2 , -CH 2 X 43A , -OCX 43A 3 , -OCH 2 X 43A , -OCHX 43A 2 , -CN, -OH, - H 2 , - COOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0)NHNH 2 , - HC=(0) H 2 , - HSO2H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 43A is independently -F, -CI, -Br, or -I. In embodiments, R 43A is independently unsubstituted methyl. In embodiments, R 43A is independently

unsub stituted ethyl .

[0499] In embodiments, R 8B is independently hydrogen. In embodiments, R 8B is

independently -CX 8B 3 . In embodiments, R 8B is independently -CHX 8B 2 . In embodiments, R 8B is independently -CH 2 X 8B . In embodiments, R 8B is independently -CN. In embodiments, R 8B is independently -COOH. In embodiments, R 8B is independently -CONH2. In embodiments, X 8B is independently -F, -CI, -Br, or -I.

[0500] In embodiments, R 8B is independently substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2). In embodiments, R 8B is independently substituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 8B is independently unsubstituted alkyl (e.g., Ci-C 8 , Ci- C 6 , C1-C4, or C1-C2). In embodiments, R 8B is independently unsubstituted methyl. In

embodiments, R 8B is independently unsubstituted ethyl. In embodiments, R 8B is independently unsubstituted propyl. In embodiments, R 8B is independently unsubstituted isopropyl. In embodiments, R 8B is independently unsubstituted tert-butyl. In embodiments, R 8B is

independently substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered,

4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 8B is independently substituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered). In embodiments, R 8B is independently unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered). In embodiments, R 8B is independently substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C6). In embodiments, R 8B is independently substituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 8B is independently unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6). In embodiments, R 8B is independently substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8B is independently substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8B is independently unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8B is independently substituted or unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 8B is independently substituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 8B is independently unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl). In embodiments, R 8B is independently substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8B is independently substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8B is independently unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0501] In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may be joined to form a substituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0502] In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may be joined to form a substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may be joined to form a substituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may be joined to form an unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered).

[0503] In embodiments, R 8B is independently

hydrogen, -CX 8B 3 , -CHX 8B 2 , -CH 2 X 8B , -CN, -COOH, -CO H 2 , R 41B - substituted or unsubstituted alkyl (e.g., Ci-Cs, Ci-C 6 , C1-C4, or Ci-C 2 ), R 41B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 41B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C 5 -C 6 ), R 41B - substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 41B -substituted or unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or R 41B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8B is independently hydrogen, -CX 8B 3 , -CHX 8B 2 , -CH 2 X 8B , -CN, -COOH, -CO H 2 , unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C 4 -C 6 , or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci2, C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 8B is independently -F, -CI, -Br, or -I. In embodiments, R 8B is independently hydrogen. In embodiments, R 8B is independently unsubstituted methyl. In embodiments, R 8B is independently unsubstituted ethyl.

[0504] In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form a R 41B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or R 41B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered) or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form a R 41B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). In embodiments, R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form an unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered). [0505] R 41B is independently oxo,

halogen, -CX 41B 3 , -CHX 41B 2 , -CH 2 X 41B , -OCX 41B 3 , -OCH 2 X 41B , -OCHX 41B 2 , -CN, -OH, -NH 2 , - COOH, -CONH2, -NO2, -SH, -S0 3 H, -S0 4 H, -SO2NH2, -NHNH 2 , -ONH 2 , -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 42B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , Ci-C 4 , or C1-C2), R 42B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to

5 membered), R 42B -substituted or unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C 6 ), R 42B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to

6 membered, 4 to 5 membered, or 5 to 6 membered), R 42B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 42B - substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 41B is independently oxo,

halogen, -CX 41B 3 , -CHX 41B 2 , -CH 2 X 41B , -OCX 41B 3 , -OCH 2 X 41B , -OCHX 41B 2 , -CN, -OH, - H 2 , -C OOH, -CO H2, -NO2, -SH, -S0 3 H, -SO4H, -SO2 H2, - HNH2, -O H2, - HC=(0) HNH 2 , - HC=(0) NH 2 , - HSO2H, - HC= (O)H, - HC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -Ci 2 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 41B is independently -F, -CI, -Br, or -I. In embodiments, R 41B is independently unsubstituted methyl. In embodiments, R 41B is independently

unsubstituted ethyl.

[0506] R 42B is independently oxo,

halogen, -CX 42B 3 , -CHX 42B 2 , -CH 2 X 42B , -OCX 42B 3 , -OCH 2 X 42B , -OCHX 42B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, R 43B -substituted or unsubstituted alkyl (e.g., Ci-C 8 , Ci-C 6 , C1-C4, or C1-C2), R 43B -substituted or unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), R 43B -substituted or unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-C 6 ), R 43B -substituted or unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), R 43B -substituted or unsubstituted aryl (e.g., C6-C12, C 6 -Cio, or phenyl), or R 43B -substituted or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). In embodiments, R 42B is independently oxo,

halogen, -CX 42B 3 , -CHX 42B 2 , -CH 2 X 42B , -OCX 42B 3 , -OCH 2 X 42B , -OCHX 42B 2 , -CN, -OH, -NH 2 , -C OOH, -CONH2, -NO2, -SH, -S0 3 H, -SO4H, -SO2NH2, -NHNH2, -ONH2, -NHC=(0)NHNH 2 , -NHC=(0) NH 2 , -NHSO2H, -NHC= (O)H, -NHC(0)-OH, -NHOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or C1-C2), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C3-C8, C3-C6, C4-C6, or C5-C6), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 42B is independently -F, -CI, -Br, or -I. In embodiments, R 42B is independently unsubstituted methyl. In embodiments, R 42B is independently

unsubstituted ethyl.

[0507] R 43B is independently oxo,

halogen, -CX 43B 3 , -CHX 43B 2 , -CH 2 X 43B , -OCX 43B 3 , -OCH 2 X 43B , -OCHX 43B 2 , -CN, -OH, - H 2 , -C OOH, -CO H 2 , -N0 2 , -SH, -S0 3 H, -SO4H, -S0 2 H 2 , - HNH 2 , -O H 2 , - HC=(0) HNH 2 , - HC=(0) H 2 , - HS0 2 H, - HC=(0)H, - HC(0)-OH, - HOH, unsubstituted alkyl (e.g., Ci- C 8 , Ci-C 6 , C1-C4, or Ci-C 2 ), unsubstituted heteroalkyl (e.g., 2 to 8 membered, 2 to 6 membered, 4 to 6 membered, 2 to 3 membered, or 4 to 5 membered), unsubstituted cycloalkyl (e.g., C 3 -C 8 , C 3 -C 6 , C4-C6, or C5-G5), unsubstituted heterocycloalkyl (e.g., 3 to 8 membered, 3 to 6 membered, 4 to 6 membered, 4 to 5 membered, or 5 to 6 membered), unsubstituted aryl (e.g., C 6 -C 12 , C 6 -Cio, or phenyl), or unsubstituted heteroaryl (e.g., 5 to 12 membered, 5 to 10 membered, 5 to 9 membered, or 5 to 6 membered). X 43B is independently -F, -CI, -Br, or -I. In embodiments, R 43B is independently unsubstituted methyl. In embodiments, R 43B is independently

unsubstituted ethyl. [0508] In embodiments, R 8 is hydrogen, -CX 8 3 , -CHX 8 2 , -CH 2 X 8 , or unsubstituted C1-C2 alkyl. In embodiments, R 8 is hydrogen.

[0509] In embodiments, X is -F. In embodiments, X is -CI. In embodiments, X is -Br. In embodiments, X is -I. In embodiments, X 1 is -F. In embodiments, X 1 is -CI. In embodiments, X 1 is -Br. In embodiments, X 1 is -I. In embodiments, X 2 is -F. In embodiments, X 2 is -CI. In embodiments, X 2 is -Br. In embodiments, X 2 is -I. In embodiments, X 3 is -F. In embodiments, X 3 is -CI. In embodiments, X 3 is -Br. In embodiments, X 3 is -I. In embodiments, X 4 is -F. In embodiments, X 4 is -CI. In embodiments, X 4 is -Br. In embodiments, X 4 is -I. In

embodiments, X 5 is -F. In embodiments, X 5 is -CI. In embodiments, X 5 is -Br. In

embodiments, X 5 is -I. In embodiments, X 6 is -F. In embodiments, X 6 is -CI. In embodiments, X 6 is -Br. In embodiments, X 6 is -I. In embodiments, X 7 is -F. In embodiments, X 7 is -CI. In embodiments, X 7 is -Br. In embodiments, X 7 is -I. In embodiments, X 8 is -F. In embodiments, X 8 is -CI. In embodiments, X 8 is -Br. In embodiments, X 8 is -I. [0510] In embodiments, nl is 0. In embodiments, nl is 1. In embodiments, nl is 2. In embodiments, nl is 3. In embodiments, nl is 4. In embodiments, n2 is 0. In embodiments, n2 is 1. In embodiments, n2 is 2. In embodiments, n2 is 3. In embodiments, n2 is 4.

[0511] In embodiments, ml is 1. In embodiments, ml is 2. In embodiments, m2 is 1. In embodiments, m2 is 2.

[0512] In embodiments, vl is 1. In embodiments, vl is 2. In embodiments, v2 is 1. In embodiments, v2 is 2.

[0513] In embodiments, zl is 0. In embodiments, zl is 1. In embodiments, zl is 2. In embodiments, zl is 3. In embodiments, zl is 4. In embodiments, zl is 5. In embodiments, z2 is 0. In embodiments, z2 is 1. In embodiments, z2 is 2. In embodiments, z2 is 3. In embodiments, z2 is 4. In embodiments, z2 is 5.

[0514] In some embodiments, a compound as described herein may include multiple instances of R 1 and/or other variables. In such embodiments, each variable may optional be different and be appropriately labeled to distinguish each group for greater clarity. For example, where each R 1 is different, they may be referred to, for example, as R 1 J , R 1 2 , R 1 3 , R 1 4 , R 1 5 , respectively, wherein the definition of R 1 is assumed by R 1 J , R 1 2 , R 1 3 , R 1 4 , R 1 5 . The variables used within a definition of R 1 and/or other variables that appear at multiple instances and are different may similarly be appropriately labeled to distinguish each group for greater clarity. In some embodiments, the compound is a compound described herein (e.g., in an aspect, embodiment, example, claim, table, scheme, drawing, or figure).

[0515] In embodiments, R 7 is independently alkyl or hydrogen. In embodiments, R 7 is alkyl. In embodiments, R 7 is hydrogen. In embodiments, R 103 is independently hydrogen or -L 2 -(Ring B)-(R 2 )z2. In embodiments, R 103 is hydrogen. In embodiments, R 103 is -L 2 -(Ring B)-(R 2 ) Z 2. 1 n embodiments, L 2 is independently -N(R 6 )-, -S-, or -0-. In embodiments, L 2 is-N(R 6 )-. In embodiments, L 2 is -S-. In embodiments, L 2 is -0-. In embodiments, Ring B is independently an aryl or heteroaryl. In embodiments, Ring B is an aryl. In embodiments, z2 is an integer from 0 to 3. In embodiments, z2 is 0 or 1. In embodiments, z2 is 0. In embodiments, R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , -OCH 2 X 2 , -OCHX 2 2 , or substituted or unsubstituted alkyl. In embodiments, R 2 is independently -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , or unsubstituted alkyl. In embodiments, R 2 is independently unsubstituted alkyl. In embodiments, R 2 is independently unsubstituted C1-C4 alkyl. In embodiments, R 2 is methyl. In embodiments, R 3 is hydrogen or unsubstituted C1-C4 alkyl. In embodiments, R 3 is propyl. In embodiments, R 3 is ethyl. In embodiments, R 3 is methyl. In embodiments, R 101 is independently - H 2 , -NO2, or -NCR^-L^R 102 . In embodiments, R 101 is - H 2 . In embodiments, R 101 is, -N0 2 . In embodiments, R 101 is -N^R^-I^-R 102 . In embodiments, R 4 is independently hydrogen or unsubstituted alkyl. In embodiments, R 4 is hydrogen. In embodiments, R 4 is unsubstituted Ci- C 4 alkyl. In embodiments, R 4 is methyl. In embodiments, L 1 is independently -C(O)-, - C(0)N(R 5 )-, -C(0)CH 2 -, -C(0)CH 2 N(R 5 )-, -C(0)N(R 5 )CH 2 -, -C(S)-, -

C(S)N(R 5 )-, -C(S)CH 2 -, -C(S)CH 2 N(R 5 )-, or -C(S)N(R 5 )CH 2 -, S(0) 2 -. In embodiments, L 1 is independently -C(O)- or -C(0)CH 2 -. In embodiments, L 1 is independently -C(O)-. In embodiments, L 1 is -C(0)N(R 5 )- or -C(0)N(R 5 )CH 2 -. In embodiments, L 1 is -S(0) 2 -. In embodiments, R 5 is hydrogen or unsubstituted C1-C4 alkyl. In embodiments, R 5 is hydrogen. In embodiments, R 5 is propyl. In embodiments, R 5 is ethyl. In embodiments, R 5 is methyl. In embodiments, R 102 is substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted unsubstituted heteroaryl. In embodiments, R 102 is substituted or unsubstituted alkyl. In embodiments, R 102 is substituted or unsubstituted heteroalkyl. In embodiments, R 102 is substituted heteroalkyl. In embodiments, R 102 is substituted or

unsubstituted cycloalkyl. In embodiments, R 102 is substituted or unsubstituted heterocycloalkyl. In embodiments, R 102 is substituted heterocycloalkyl. In embodiments, R 102 is substituted or unsubstituted phenyl. In embodiments, R 102 is unsubstituted phenyl. In embodiments, R 102 is or substituted unsubstituted heteroaryl. In embodiments, the compound is 06A, 07A, 08A, 09A, 10A, 11 A, 12A, 13A, 14A, 15A, 16A, 17A, 18A, 19A, 15B, 16B, 17B, 18B, 19B, 20B, 55C, 56D, 57C, 7, 24E, 25E, 26E, or 27E.

[0516] In some embodiments, a compound as described herein may include multiple instances of R 2 and/or other variables. In such embodiments, each variable may optional be different and be appropriately labeled to distinguish each group for greater clarity. For example, where each R 2 is different, they may be referred to, for example, as R 2 J , R 2 2 , R 2 3 , R 2 4 , R 2 5 , respectively, wherein the definition of R 2 is assumed by R 2 J , R 2 2 , R 2 3 , R 2 4 , R 2 5 . The variables used within a definition of R 2 and/or other variables that appear at multiple instances and are different may similarly be appropriately labeled to distinguish each group for greater clarity. In some embodiments, the compound is a compound described herein (e.g., in an aspect, embodiment, example, claim, table, scheme, drawing, or figure).

[0517] In embodiments, unless otherwise indicated, a compound described herein is a racemic mixture of all stereoisomers. In embodiments, unless otherwise indicated, a compound described herein is a racemic mixture of all enantiomers. In embodiments, unless otherwise indicated, a compound described herein is a racemic mixture of two opposite stereoisomers. In embodiments, unless otherwise indicated, a compound described herein is a racemic mixture of two opposite enantiomers. In embodiments, unless otherwise indicated, a compound described herein is a single stereoisomer. In embodiments, unless otherwise indicated, a compound described herein is a single enantiomer. In embodiments, the compound is a compound described herein (e.g., in an aspect, embodiment, example, figure, table, scheme, or claim).

[0518] In embodiments, the compound is a compound described herein, including in an example, figure, table, scheme, aspect, embodiment, or claim. In embodiments, the compound is not a compound described in Argyros et al., European Journal of Medicinal Chemistry 126 (2017) 954-968. In embodiments, the compound is not a compound described in U.S.

Publication No. US2007/0123494 published May 31, 2007, Seipelt et al. In embodiments, the

com ound is In embodiments, the compound

In embodiments, the compound is

bodiments, the compound is

In embodiments, the compound is

In embodiments, the compound is

In embodiments, the compound is embodiments, the compound is

In embodiments, the compound is

In embodiments, the compound is

III. Pharmaceutical compositions

[0519] In an aspect is provided a pharmaceutical composition including a compound described herein, or pharmaceutically acceptable salt thereof, and a pharmaceutically acceptable excipient.

[0520] In embodiments of the pharmaceutical compositions, the compound, or

pharmaceutically acceptable salt thereof, is included in a therapeutically effective amount.

[0521] In embodiments of the pharmaceutical compositions, the pharmaceutical composition includes a second agent (e.g. therapeutic agent). In embodiments of the pharmaceutical compositions, the pharmaceutical composition includes a second agent (e.g. therapeutic agent) in a therapeutically effective amount. In embodiments of the pharmaceutical compositions, the second agent is an agent for treating cancer. In embodiments, the second agent is an anti-cancer agent. In embodiments, the second agent is a chemotherapeutic. In embodiments, the second agent is an anti-inflammatory agent.

IV. Methods of Treatment

[0522] In an aspect is provided a method of treating cancer, the method including

administering to a subject in need thereof an effective amount of a compound described herein. In embodiments, the compound is included in a therapeutically effective amount. [0523] In embodiments, the method includes administering to a subject in need thereof an effective amount of a compound of Formula (XIA). In embodiments, the method includes administering to a subject in need thereof an effective amount of a compound of Formula (XIA), wherein the cancer is not breast cancer.

[0524] In embodiments, the compound has the formula: (XIA), wherein R 7 , R 8 , R 101 , R 103 , and R 3 are as described herein, including embodiments.

[0525] In embodiments, the compound has the formula:

(XIB). R , z2, Ring B, L , R 3 , R , R , and R are as described herein.

[0526] In embodiments, the compound has the formula:

R , z2, Ring B, L , R 3 , R , R , R , L , and

R are as described herein.

[0527] In embodiments, the compound has the formula: )zi (I). R , z2, Ring B, R , R 3 , R , R , R and L are as described herein.

[0528] In embodiments, R is independently a substituted or unsubstituted alkyl or hydrogen. In embodiments, R 7 is a substituted or unsubstituted alkyl. In embodiments, R 7 is a substituted alkyl. In embodiments, R 7 is an unsubstituted alkyl. In embodiments, R 7 is hydrogen. In embodiments, R 103 is independently hydrogen or -L 2 -(Ring B)-(R 2 ) z2 . In embodiments, R 103 is hydrogen. In embodiments, R 103 is -L 2 -(Ring B)-(R 2 ) z2 . In embodiments, L 2 is independently - N(R 6 )-, -S-, or -0-. In embodiments, L 2 is-N(R 6 )-. In embodiments, L 2 is -S-. In embodiments, L 2 is -0-. In embodiments, Ring B is independently a substituted or unsubstituted aryl or substituted or unsubstituted heteroaryl. In embodiments, Ring B is a substituted or unsubstituted aryl. In embodiments, Ring B is a substituted aryl. In embodiments, Ring B is an unsubstituted aryl. In embodiments, z2 is an integer from 0 to 3. In embodiments, z2 is 0 or 1. In

embodiments, z2 is 0. In embodiments, R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , -

CH 2 X 2 , -OCX 2 3 , -OCH 2 X 2 , -OCHX 2 2 , or substituted or unsubstituted alkyl. In embodiments, R 2 is independently -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , or unsubstituted alkyl. In embodiments, R 2 is independently unsubstituted alkyl. In embodiments, R 2 is independently unsubstituted C1-C4 alkyl. In embodiments, R 2 is unsubstituted methyl. In embodiments, R 3 is hydrogen or unsubstituted C1-C4 alkyl. In embodiments, R 3 is unsubstituted propyl. In embodiments, R 3 is unsubstituted ethyl. In embodiments, R 3 is unsubstituted methyl. In embodiments, R 101 is independently - H 2 , -N0 2 , or -Ν(Ί 4 )-ΐ Κ 102 . In embodiments, R 101 is - H 2 . In embodiments, R 101 is -N0 2 . In embodiments, R 101 is -Ν(Ί 4 )-ΐ Κ 102 . In embodiments, R 4 is independently hydrogen or unsubstituted alkyl. In embodiments, R 4 is hydrogen. In embodiments, R 4 is unsubstituted C1-C4 alkyl. In embodiments, R 4 is unsubstituted methyl. In embodiments, L 1 is independently -C(O)-, -C(0)N(R 5 )-, -C(0)CH 2 -, -C(0)CH 2 N(R 5 )-, -C(0)N(R 5 )CH 2 -, -C(S)-, - C(S)N(R 5 )-, -C(S)CH 2 -, -C(S)CH 2 N(R 5 )-, -C(S)N(R 5 )CH 2 -, or -S(0) 2 -. In embodiments, L 1 is independently -C(O)- or -C(0)CH 2 -. In embodiments, L 1 is independently -C(O)-. In embodiments, L 1 is -C(0)N(R 5 )- or -C(0)N(R 5 )CH 2 -. In embodiments, L 1 is -S(0) 2 -. In embodiments, R 5 is hydrogen or unsubstituted C1-C4 alkyl. In embodiments, R 5 is hydrogen. In embodiments, R 5 is unsubstituted propyl. In embodiments, R 5 is unsubstituted ethyl. In embodiments, R 5 is unsubstituted methyl. In embodiments, R 102 is substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted unsubstituted heteroaryl. In embodiments, R 102 is substituted or unsubstituted alkyl. In embodiments, R 102 is substituted or unsubstituted heteroalkyl. In embodiments, R 102 is substituted heteroalkyl. In embodiments, R 102 is substituted or unsubstituted cycloalkyl. In embodiments, R 102 is substituted or unsubstituted heterocycloalkyl. In embodiments, R 102 is substituted heterocycloalkyl. In embodiments, R 102 is substituted or unsubstituted phenyl. In embodiments, R 102 is unsubstituted phenyl. In embodiments, R 102 is substituted or unsubstituted heteroaryl. In embodiments, the compound is 06A, 07A, 08A, 09A, 10A, 1 1 A, 12A, 13A, 14A, 15A, 16A, 17A, 18A, 19A, 15B, 16B, 17B, 18B, 19B, 20B, 55C, 56D, 57C, 7, 24E, 25E, 26E, or 27E.

[0529] In embodiments, the cancer is lung cancer. In embodiments, the cancer is small cell lung cancer. In embodiments, the cancer is non-small cell lung cancer. In embodiments, the cancer is prostate cancer. In embodiments, the cancer is hormone sensitive prostate cancer. In embodiments, the cancer is hormone refractory prostate cancer. In embodiments, the cancer is melanoma. In embodiments, the cancer is lymphoma. In embodiments, the cancer is sarcoma. In embodiments, the cancer is breast cancer. In embodiments, the cancer is ovarian cancer. In embodiments, the cancer is pancreatic cancer. In embodiments, the cancer is bladder cancer. In embodiments, the cancer is bone cancer. In embodiments, the cancer is brain cancer. In embodiments, the cancer is cervical cancer. In embodiments, the cancer is colorectal cancer. In embodiments, the cancer is esophageal cancer. In embodiments, the cancer is gastric cancer. In embodiments, the cancer is liver cancer. In embodiments, the cancer is head and neck cancer. In embodiments, the cancer is kidney cancer. In embodiments, the cancer is myeloma. In embodiments, the cancer is leukemia. In embodiments, the cancer is thyroid cancer. In embodiments, the cancer is metastatic cancer. In embodiments, the cancer is not breast cancer.

[0530] In embodiments, the method includes administering a second agent (e.g. therapeutic agent). In embodiments, the method includes administering a second agent (e.g. therapeutic agent) in a therapeutically effective amount. In embodiments, the second agent is an agent for treating cancer. In embodiments, the second agent is an anti-cancer agent. In embodiments, the second agent is a chemotherapeutic.

[0531] In an aspect is provided a method of treating a proliferative disease, the method including administering to a subject in need thereof an effective amount of a compound described herein. In embodiments, the compound is included in a therapeutically effective amount. In embodiments, the proliferative disease is a disease described in Spon and Harris (Am J Med. 1981 Jun;70(6): 1231-5) which is incorporated herein by reference in its entirety.

V. Methods of Inhibition

[0532] In an aspect is provided a method of inhibiting cell proliferation, the method including contacting a cell with a compound described herein. In embodiments, the method includes contacting the cell with an effective amount of the compound. In embodiments, the method includes contacting the cell with a second agent (e.g. therapeutic agent). In embodiments, the method includes contacting the cell with a second agent (e.g. therapeutic agent) in an effective amount. In embodiments, the second agent is an agent for treating cancer. In embodiments, the second agent is an anti-cancer agent. In embodiments, the second agent is a chemotherapeutic. In embodiments, the cell forms part of an organism. In embodiments, the organism is a mammal. In embodiments, the cell is a cancer cell. In embodiments, the cell is a lung cancer cell. In embodiments, the cell is a small cell lung cancer cell. In embodiments, the cell is a non- small cell lung cancer cell. In embodiments, the cell is a prostate cancer cell. In embodiments, the cell is a melanoma cell.

[0533] In embodiments, the cell is A549 non-small cell lung cancer cell. In embodiments, the cell is DMS273 small cell lung cancer cell. In embodiments, the cell is H69 small cell lung cancer cell. In embodiments, the cell is H513 non-small cell lung cancer cell. In embodiments, the cell is H2461 non-small cell lung cancer cell. In embodiments, the cell is DMSl 14 small cell lung cancer cell. In embodiments, the cell is H358 non-small cell lung cancer cell. In embodiments, the cell is H2596 non-small cell lung cancer cell. In embodiments, the cell is DU145 prostate cancer cell. In embodiments, the cell is A2058 melanoma cell. [0534] In embodiments, the cell is an A2058 melanoma cell. In embodiments, the cell is a melanoma cell. In embodiments, the cell is a DU145 prostate cancer cell. In embodiments, the cell is a prostate cancer cell. In embodiments, the cell is an A549 cell, DMS273 cell, H69 cell, H513 cell, H2461 cell, DMSl 14 cell, H358 cell, or H2596 cell. In embodiments, the cell is an A549 cell. In embodiments, the cell is a DMS273 cell. In embodiments, the cell is a H69 cell. In embodiments, the cell is a H513 cell. In embodiments, the cell is a H2461 cell. In embodiments, the cell is a DMSl 14 cell. In embodiments, the cell is a H358 cell. In embodiments, the cell is a H2596 cell.

[0535] In embodiments, the method includes administering to a subject in need thereof an effective amount of a compound of Formula (XIA). In embodiments, the method includes administering to a subject in need thereof an effective amount of a compound of Formula (XIA), wherein the cancer is not breast cancer.

In embodiments, wherein R7, R8, R101, R103, and R3 are as described herein, including embodiments.

[0536] In embodiments, the compound has the formula:

(XIB). R 2 , z2, Ring B, L 2 , R 3 , R 7 , R 8 , and R 101 are as described herein.

[0537] In embodiments, the compound has the formula: (XIC). R 2 , z2, Ring B, L 2 , R 3 , R 7 , R 8 , R 4 , L 1 , and

R are as described herein.

[0538] In embodiments, the compound has the formula:

(I). R 2 , z2, Ring B, R 6 , R 3 , R 7 , R 8 , R 4 , and L are as described herein.

[0539] In embodiments, R 7 is independently a substituted or unsubstituted alkyl or hydrogen. In embodiments, R 7 is a substituted or unsubstituted alkyl. In embodiments, R 7 is a substituted alkyl. In embodiments, R 7 is an unsubstituted alkyl. In embodiments, R 7 is hydrogen. In embodiments, R 103 is independently hydrogen or -L 2 -(Ring B)-(R 2 ) Z 2. In embodiments, R 103 is hydrogen. In embodiments, R 103 is -L 2 -(Ring B)-(R 2 ) Z 2. In embodiments, L 2 is independently - N(R 6 )-, -S-, or -0-. In embodiments, L 2 is-N(R 6 )-. In embodiments, L 2 is -S-. In embodiments, L 2 is -0-. In embodiments, Ring B is independently a substituted or unsubstituted aryl or substituted or unsubstituted heteroaryl. In embodiments, Ring B is a substituted or unsubstituted aryl. In embodiments, Ring B is a substituted aryl. In embodiments, Ring B is an unsubstituted aryl. In embodiments, z2 is an integer from 0 to 3. In embodiments, z2 is 0 or 1. In

embodiments, z2 is 0. In embodiments, R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , - CH 2 X 2 , -OCX 2 3 , -OCH2X 2 , -OCHX 2 2, or substituted or unsubstituted alkyl. In embodiments, R 2 is independently -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , or unsubstituted alkyl. In embodiments, R 2 is independently unsubstituted alkyl. In embodiments, R 2 is independently unsubstituted C1-C4 alkyl. In embodiments, R 2 is unsubstituted methyl. In embodiments, R 3 is hydrogen or unsubstituted C1-C4 alkyl. In embodiments, R 3 is propyl. In embodiments, R 3 is ethyl. In embodiments, R 3 is methyl. In embodiments, R 101 is independently - H 2 , -NO2, or -Ν(Ε1 4 )-ΐ R 102 . In embodiments, R 101 is - H 2 . In embodiments, R 101 is, -NO2. In embodiments, R 101 is -IN^R 4 )-!. 1 -!^ 102 . In embodiments, R 4 is independently hydrogen or unsubstituted alkyl. In embodiments, R 4 is hydrogen. In embodiments, R 4 is unsubstituted C1-C4 alkyl. In

embodiments, R 4 is unsubstituted methyl. In embodiments, L 1 is independently -C(O)-, - C(0)N(R 5 )-, -C(0)CH 2 -, -C(0)CH 2 N(R 5 )-, -C(0)N(R 5 )CH 2 -, -C(S)-, - C(S)N(R 5 )-, -C(S)CH 2 -, -C(S)CH 2 N(R 5 )-, -C(S)N(R 5 )CH 2 -, or -S(0) 2 -. In embodiments, L 1 independently -C(O)- or -C(0)CH 2 -. In embodiments, L 1 is independently -C(O)-. In embodiments, L 1 is -C(0)N(R 5 )- or -C(0)N(R 5 )CH 2 -. In embodiments, L 1 is -S(0) 2 -. In embodiments, R 5 is hydrogen or unsubstituted C1-C4 alkyl. In embodiments, R 5 is hydrogen. In embodiments, R 5 is unsubstituted propyl. In embodiments, R 5 is unsubstituted ethyl. In embodiments, R 5 is unsubstituted methyl. In embodiments, R 102 is substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted unsubstituted heteroaryl. In embodiments, R 102 is substituted or unsubstituted alkyl. In embodiments, R 102 is substituted or unsubstituted heteroalkyl. In embodiments, R 102 is substituted heteroalkyl. In embodiments, R 102 is substituted or unsubstituted cycloalkyl. In embodiments, R 102 is substituted or unsubstituted heterocycloalkyl. In embodiments, R 102 is substituted heterocycloalkyl. In embodiments, R 102 is substituted or unsubstituted phenyl. In embodiments, R 102 is unsubstituted phenyl. In embodiments, R 102 is substituted or unsubstituted heteroaryl. In embodiments, the compound is 06A, 07A, 08A, 09A, 10A, 11 A, 12A, 13A, 14A, 15A, 16A, 17A, 18A, 19A, 15B, 16B, 17B, 18B, 19B, 20B, 55C, 56D, 57C, 7, 24E, 25E, 26E, or 27E.

VI. Embodiments

[0540] Embodiment 1. A compound having the formula:

(I), wherein, Ring A is an aryl or heteroaryl; R 1 is independently halogen, -CX^, -CHX^, -CH2X 1 , -OCX^, -

OCItX 1 , -OCHX^, -CN, -SOniR 1D , -SO v i R 1A R 1B , - HC(0) R 1A R 1B , -N(0) m i, - R 1A R 1B , -C( 0)R 1C , -C(0)-OR lc , -C(0) R 1A R 1B , -OR 1D , - R 1A S0 2 R 1D , - R 1A C(0)R 1C , - R 1A C(0)OR lc , -N R 1A OR lc , -N3, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; zl is an integer from 0 to 5; Ring B is an aryl or heteroaryl; R 2 is independently halogen, -CX 2 3 , -CHX 2 2 , -CH 2 X 2 , -OCX 2 3 , - OCH 2 X 2 , -OCHX 2 2 , -CN, -SO^R 20 , -SO v2 NR 2A R 2B , -NHC(0)NR 2A R 2B , -N(0) m2 , -NR 2A R 2B , -C( 0)R 2C , -C(0)-OR 2C , -C(0)NR 2A R 2B , -OR 2D , -NR 2A S0 2 R 2D , -NR 2A C(0)R 2C , -NR 2A C(0)OR 2C , -N R 2A OR 2C , -N 3 , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; z2 is an integer from 0 to 5; R 3 is independently hydrogen, -CX 3 3 , -CHX 3 2 , -CH 2 X 3 , -OCX 3 3 , -

OCH 2 X 3 , -OCHX 3 2 , -CN, -C(0)R 3A , -C(0)OR 3A , -C(0) R 3A R 3B , -OR 3A , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; R 4 is independently hydrogen, -CX 4 3 , -CHX 4 2 , -

CH 2 X 4 , -C(0)R 4A , -C(0)OR 4A , -C(0) R 4A R 4B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl; L is a bond or -N(R 5 )-; R 5 is independently hydrogen, -CX 5 3 , - CHX 5 2 , -CH 2 X 5 , -C(0)R 5A , -C(0)OR 5A , -C(0) R 5A R 5B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl; R 6 is independently hydrogen, -CX 6 3 , -CHX 6 2 , - CH 2 X 6 , -C(0)R 6A , -C(0)OR 6A , -C(0) R 6A R 6B , substituted or unsubstituted alkyl, or substituted or unsubstituted heteroalkyl; R 7 is independently hydrogen, -CX 7 3 , -CHX 7 2 , -CH 2 X 7 , -OCX 7 3 , - OCH 2 X 7 , -OCHX 7 2 , -CN, -C(0)R 7A , -C(0)OR 7A , -C(0)NR 7A R 7B , -OR 7A , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; R 8 is independently hydrogen, -CX 8 3 , -CHX 8 2 , -

CH 2 X 8 , -OCX 8 3 , -OCH 2 X 8 , -OCHX 8 2 , -CN, -C(0)R 8A , -C(0)OR 8A , -C(0)NR 8A R 8B , -OR 8A , substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; Each R 1A , R 1B , R 1C , R 1D , R 2A , R 2B , R 2C , R 2D , R 3A , R B , R 4A , R 4B , R 5A , R 5B , R 6A , R 6B , R 7A , R 7B , R 8A , and R 8B is independently hydrogen, -CX 3 , -COOH, -CONH 2 , -CHX 2 , -CH 2 X, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; R 1A and R 1B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 2A and R 2B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 3A and R 3B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 4A and R 4B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 5A and R 5B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 6A and R 6B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 7A and R 7B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; R 8A and R 8B substituents bonded to the same nitrogen atom may optionally be joined to form a substituted or unsubstituted heterocycloalkyl or substituted or unsubstituted heteroaryl; each X, X 1 , X 2 , X 3 , X 4 , X 5 , X 6 , X 7 , and X 8 is independently -F, -CI, -Br, or -I; nl and n2 are independently an integer from 0 to 4; and ml, ml, vl, and v2 are independently 1 or 2.

[0541] Embodiment 2. The compound of embodiment 1, wherein L is -N(R 5 )-.

[0542] Embodiment s. The compound of embodiment 1, wherein L is a bond.

[0543] Embodiment 4. The compound of one of embodiments 1 to 3, wherein R 8 is hydrogen, -CX 8 3 , -CHX 8 2 , -CH 2 X 8 , or unsubstituted C1-C2 alkyl.

[0544] Embodiment 5. The compound of one of embodiments 1 to 3, wherein R 8 is hydrogen.

[0545] Embodiment 6. The compound of one of embodiments 1 to 5, wherein R 7 is hydrogen, -CX 7 3 , -CHX 7 2 , -CH 2 X 7 , or unsubstituted C1-C2 alkyl.

[0546] Embodiment 7. The compound of one of embodiments 1 to 5, wherein R 7 is hydrogen. [0547] Embodiment 8. The compound of embodiment 1 having the formula:

[0548] Embodiment 9. The compound of one of embodiments 1 to 8, wherein R 6 is hydrogen, -CX 6 3 , -CHX 6 2 , -CH 2 X 6 , or unsubstituted C1-C2 alkyl.

[0549] Embodiment 10. The compound of one of embodiments 1 to 8, wherein R 6 is hydrogen.

[0550] Embodiment 11. The compound of one of embodiments 1 to 10, wherein R 5 is hydrogen, -CX 5 3 , -CHX 5 2 , -CH 2 X 5 , or unsubstituted C1-C2 alkyl.

[0551] Embodiment 12. The compound of one of embodiments 1 to 10, wherein R 5 is hydrogen. [0552] Embodiment 13. The compound of one of embodiments 1 to 12, wherein R 4 is hydrogen, -CX 4 3 , -CHX 4 2 , -CH 2 X 4 , or unsubstituted C1-C2 alkyl. [0553] Embodiment 14. The compound of one of embodiments 1 to 12, wherein R 4 is hydrogen.

[0554] Embodiment 15. The compound of one of embodiments 1 to 14, wherein R 3 is -CX 3 3, -CHX 3 2, -CH 2 X 3 , or unsubstituted C1-C3 alkyl.

[0555] Embodiment 16. The compound of one of embodiments 1 to 14, wherein R 3 is unsubstituted methyl.

[0556] Embodiment 17. The compound of embodiment 1 having the formula:

[0557] Embodiment 18. The compound of one of embodiments 1 to 17, wherein Ring A is phenyl or 5 to 6 membered heteroaryl.

[0558] Embodiment 19. The compound of one of embodiments 1 to 17, wherein Ring A is phenyl.

[0559] Embodiment 20. The compound of one of embodiments 1 to 19, wherein R 1 is independently halogen, -CX^, -CHX^, -CH2X 1 , -SCX^, -SCHX^, -SCH2X 1 , unsubstituted Ci- C 2 alkyl, or unsubstituted 2 to 4 membered heteroalkyl.

[0560] Embodiment 21. The compound of one of embodiments 1 to 19, wherein R 1 is independently halogen, -CX^, -CHX^, -CH2X 1 , or unsubstituted C1-C2 alkyl.

[0561] Embodiment 22. The compound of one of embodiments 1 to 19, wherein R 1 is independently halogen, -CF 3 , -CHF 2 , -CH 2 F, -CH 3 , -SCF 3 , -SCHF 2 , -SCH 2 F, or -SCH 3

[0562] Embodiment 23. The compound of one of embodiments 1 to 19, wherein R 1 is independently halogen, -CX^, or -SCH 3 .

[0563] Embodiment 24. The compound of one of embodiments 1 to 19, wherein R 1 is independently -F, -CI, -SCH 3 , or -CF 3 .

[0564] Embodiment 25. The compound of one of embodiments 1 to 24, wherein zl is 2.

[0565] Embodiment 26. The compound of one of embodiments 1 to 24, wherein zl is 1.

[0566] Embodiment 27. The compound of one of embodiments 1 to 24, wherein zl is 0.

[0567] Embodiment 28. The compound of embodiment 1 having the formula:

[0568] Embodiment 29. The compound of embodiment 1 having the formula:

[0569] Embodiment 30. The compound of embodiment 1 having the formula:

Embodiment 31. The compound of embodiment 1 having the formula:

[0571] Embodiment 32. The compound of one of embodiments 1 to 31, wherein Ring B is a phenyl or 5 to 6 membered heteroaryl.

[0572] Embodiment 33. The compound of one of embodiments 1 to 31, wherein Ring B is a phenyl.

[0573] Embodiment 34. The compound of one of embodiments 1 to 33, wherein R 2 is independently -OCX 2 3 , -OCH 2 X 2 , -OCHX 2 2 , -C(0)R 2C , -C(0)OR 2C , -OR 2D , or - R 2A C(0)R 2C ; and; Each R 2A , R 2B , R 2C , and R 2D is independently hydrogen, -CX 3 , -CHX 2 , -CH 2 X,

unsubstituted Ci-C 2 alkyl.

[0574] Embodiment 35. The compound of one of embodiments 1 to 33, wherein R 2 is independently -OCF 3 , -OCH 2 F, -OCHF 2 , -C(0)OH, -C(0)OCH 2 CH 3 , -OCH 3 , or - HC(0)CH 3 . Client Ret. No.

[0575] Embodiment 36. The compound of one of embodiments 1 to 35, wherein z2 is 3.

[0576] Embodiment 37. The compound of one of embodiments 1 to 35, wherein z2 is 2.

[0577] Embodiment 38. The compound of one of embodiments 1 to 35, wherein z2 is 1.

[0578] Embodiment 39. The compound of one of embodiments 1 to 35, wherein z2 is 0.

[0579] Embodiment 40. The compound of embodiment 38 having the formula:

[0580] Embodiment 41. The compound of embodiment 38 having the formula:

[0581] Embodiment 42. The compound of embodiment 39 having the formula:

[0582] Embodiment 43. The compound of embodiment 38 having the formula:

[0583] Embodiment 44. The compound of embodiment 38 having the formula: [0584] Embodiment 45. The compound of embodiment 39 having the formula:

[0585] Embodiment 46. The compound of embodiment 38 having the formula:

[0586] Embodiment 47. The compound of embodiment 38 having the formula:

[0587] Embodiment 48. The compound of embodiment 39 having the formula:

[0588] Embodiment 49. The compound of embodiment 38 having the formula:

[0589] Embodiment 50. The compound of embodiment 38 having the formula:

[0590] Embodiment 51. The compound of embodiment 39 having the formula:

[0591] Embodiment 52. A pharmaceutical composition comprising a compound of one of embodiments 1 to 51 or a pharmaceutically acceptable salt thereof, and a pharmaceutically acceptable excipient. [0592] Embodiment 53. The pharmaceutical composition of embodiment 52, comprising a therapeutically effective amount of said compound.

[0593] Embodiment 54. A method of treating cancer, said method comprising administering to a subject in need thereof an effective amount of a compound of one of embodiments 1 to 51.

[0594] Embodiment 55. The method of embodiment 54, wherein the cancer is lung cancer. [0595] Embodiment 56. The method of embodiment 54, wherein the cancer is small cell lung cancer.

[0596] Embodiment 57. The method of embodiment 54, wherein the cancer is non-small cell lung cancer.

[0597] Embodiment 58. The method of embodiment 54, wherein the cancer is prostate cancer. [0598] Embodiment 59. The method of embodiment 54, wherein the cancer is hormone sensitive prostate cancer.

[0599] Embodiment 60. The method of embodiment 54, wherein the cancer is hormone refractory prostate cancer.

[0600] Embodiment 61. The method of embodiment 54, wherein the cancer is melanoma. [0601] Embodiment 62. The method of embodiment 54, wherein the cancer is lung cancer, prostate cancer, melanoma, lymphoma, sarcoma, breast cancer, ovarian cancer, pancreatic cancer, bladder cancer, bone cancer, brain cancer, cervical cancer, colorectal cancer, esophageal cancer, gastric cancer, liver cancer, head and neck cancer, kidney cancer, myeloma, leukemia, or thyroid cancer.

EXAMPLES Example 1. Compounds 2] Table 1

215 03] Table 2

604] Table 3

05] Table 4

[0606] Table 5

Cmpd/cell 16 17 18 29 28

(IC50 μΜ) (IC50 μΜ) (IC50 μΜ) (IC50 μΜ) (IC50 μΜ)

A549 1.54 0.92

NSCLC

DMS273 1.09 0.32

small cell lung

cancer

H69 small 0.98 0.51

cell lung cancer

H513 1.26 0.69

NSCLC H2461 1.71 0.8

NSCLC

DMS114 3.15 0.72

small cell lung

cancer

H358 1.97 1.18

NSCLC

H2596 1.07 0.62

NSCLC

DU145 1.72 1.04 2.4 12.8 9.9 prostate cancer

A2058 1.29 1.13 1.3 6.1 7.1 melanoma

Example 2. Synthesis

[0607] General information:

[0608] Melting points were determined on a Biichi apparatus and are uncorrected. ¾ NMR spectra were recorded on a Bruker Avance III 600 instrument, whereas 13 C NMR spectra were recorded on a Bruker Avance III 600 or a Bruker AC 200 spectrometer in deuterated solvents and were referenced to TMS (δ scale). Flash chromatography was performed on Merck silica gel 60 (0.040-0.063 mm). Analytical thin layer chromatography (TLC) was carried out on precoated (0.25 mm) Merck silica gel F-254 plates. The purity of all the synthesized compounds was >95% as ascertained by elemental analysis. Elemental analyses were undertaken using a PerkinElmer PE 240C elemental analyzer (Norwalk, CT, U.S.) and the measured values for C, H, and N were within ± 0.4% of the theoretical values.

[0609] Synthesis Example 1

[0610] Synthesis of substituted benzamides 8-12. [0611] The synthesis of the target amides 8-12 was performed using 3-chloro-6-methyl-7- nitropyrido[2,3-b]pyrazine (5) as the key intermediate. The latter was prepared through a four- step procedure, starting from 6-methylpyridin-2-amine (1), as previously described in the literature. Briefly, pyridine 1 was nitrated with excess of nitric acid to result into the 3,5-dinitro derivative 2 (Step 1, H. Ritter, H. Licht, J. Heterocyclic Chem. 32 (1995) 585-590). Compound 2 was subjected to selective reduction of the 3-nitro group to provide diamine 3 (Step 2, N.

Lougiakis, P. Marakos, et al, Chem. Pharm. Bull. 63 (2015) 134-142). The diamine 3 was converted upon treatment with ethyl glyoxalate to the pyridopyrazinone 4 (Step 3), from which, upon treatment with phosphorus oxychloride in the presence of triethylamine, the chloride 5 was prepared (Step 4, O. Argyros, N. Lougiakis, et al, Eur. J. Med. Chem. 126 (2017) 954-968).

8-12

[0612] Step 5: 6-Methyl-7-nitro-N-phenylpyrido[2,3-£]pyrazin-3 -amine (6). [0613] A mixture of chloro compound 5 (540 mg, 2.41 mmol) and aniline (0.48 mL, 5.3 mmol), in 20 mL of absolute ethanol was refluxed, under argon, for 1 hour. Upon cooling, 80 mL of cold water was added in the flask and the yellow precipitate was filtered, washed with water and air-dried to provide 675 mg of pure amine 6 as a yellow solid. Yield 100%. M.p. >300 °C (dec.)(EtOH). 1 H - MR (600 MHz, DMSO-d 6 ) δ 2.85 (s, 3H), 7.15 (t, 1H, J=7.3 Hz), 7.43 (t, 2H, J=8.0 Hz), 7.98 (d, 2H, J=7.8 Hz), 8.62 (s, 1H), 8.77 (s, 1H), 10.63 (brs, 1H, D 2 0 exch.). 13 C - MR (50 MHz, DMSO-i/e) δ 24.52, 119.99, 123.87, 128.31, 129.06, 133.62, 138.96, 141.50, 144.18, 152.20, 153.20, 155.46. HRMS (ESI) m/z: calcd. for Ci 4 Hi 2 N 5 0 2 : [Ml + H] + = 282.0986, found 282.0984. [0614] Step 6: 6-Methyl-N 3 -phenylpyrido[2,3-£]pyrazine-3,7-diamine (7).

[0615] Triethylsilane (3.2 mL, 20 mmol) was added dropwise into a suspension of nitro derivative 6 (560 mg, 1.99 mmol) and 60 mg of 10 % Pd/C in 15 mL of dry methanol, under argon, and this mixture was stirred at room temperature for 4 hours. Then, the solution was filtered through a celite pad to remove the catalyst, the solvent was evaporated and the residue was dry-packed and purified by column chromatography, using a mixture of 99 II of

dichloromethane / methanol as the eluent, providing 460 mg of compound 7 as a yellow solid. Yield 92%. M.p. >300 °C (dec.) (EtOAc). ¾ -NMR (600 MHz, DMSO-^) δ 2.49 (s, 3H), 5.41 (brs, 2H, D 2 0 exch.), 6.98 (t, 1H, J=7.3 Hz), 7.27 (s, 1H), 7.35 (t, 2H, J=8.0 Hz), 7.95 (d, 2H, J=7.7 Hz), 8.42 (s, 1H), 9.70 (brs, 1H, D 2 0 exch.). 13 C -NMR (50 MHz, DMSO-d 6 ) δ 21.45,

1 14.83, 1 18.09, 121.32, 128.71, 131.95, 139.44, 140.79, 141.29, 141.86, 149.02, 150.99. HRMS (ESI) m/z: calcd. for Ci 4 Hi 4 N 5 : [Ml + H] + = 252.1244, found 252.1239.

[0616] Step 7: General procedure for the synthesis of amides 8-12.

[0617] Benzoyl chloride or the appropriate substituted benzoyl chloride (0.35 mmol) and triethylamine (0.049 mL, 0.35 mmol) were added into a suspension of 7 (80 mg, 0.32 mmol) in 8 mL of dry tetrahydrofuran and the reaction mixture was stirred at room temperature for 24 hours. The solvent was then removed under reduced pressure, water was added in the flask and the precipitate was extracted with ethyl acetate (3 x 40 mL). The organic extracts were dried

(Na 2 S0 4 ) and concentrated to dryness and the residue was dry-packed and purified by column chromatography, providing amides 8-12.

[0618] N-(6-Methyl-3-(phenylamino)pyrido[2,3-^]pyrazin-7-yl)benzami de (8).

[0619] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 3 / 7 of cyclohexane / ethyl acetate as the eluent. 100 mg of amide 8 were obtained as a yellow solid. Yield 88 %. M.p. 247-8 °C (EtOH). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.65 (s, 3H), 7.08 (t, 1H, J=7.3 Hz), 7.42 (t, 2H, J=7.9 Hz), 7.57 (t, 2H, J=7.6 Hz), 7.64 (t, 1H, J=7.3 Hz), 8.01-8.06 (m, 4H), 8.26 (s, 1H), 8.59 (s, 1H), 10.17 (brs, 1H, D 2 0 exch.), 10.20 (brs, 1H, D 2 0 exch.). 13 C -NMR (50 MHz, DMSO-d 6 ) 5 21.79, 1 19.00, 122.49, 127.76, 128.49, 128.82, 129.76, 129.95, 131.86, 132.55, 134.07, 139.92, 141.12, 147.54, 151.60, 158.28, 165.88. HRMS (ESI) m/z: calcd. for C 2 iHi 8 N 5 0: [Ml + H] + = 356.1506, found 356.1502. Anal. Calcd for C 2 iHi 7 N 5 0: C, 70.97; H, 4.82; N, 19.71. Found: C, 70.83; H, 4.67; N, 20.01.

[0620] 4-Methyl-N-(6-methyl-3-(phenylamino)pyrido[2,3-^]pyrazin-7-y l)benzamide (9). [0621] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 7 / 3 of

dichlorom ethane / ethyl acetate as the eluent. 110 mg of amide 9 were obtained as a yellow solid. Yield 94 %. M.p. 246 °C (EtOH). ¾ -NMR (600 MHz, DMSO-^) δ 2.41 (s, 3H), 2.64 (s, 3H), 7.08 (t, 1H, J=7.3 Hz), 7.38 (d, 2H, J=7.9 Hz), 7.42 (t, 2H, J=7.9 Hz), 7.95 (d, 2H, J=8.0 Hz), 8.02 (d, 2H, J=8.2 Hz), 8.25 (s, 1H), 8.59 (s, 1H), 10.11 (brs, 1H, D 2 0 exch.), 10.17 (brs, 1H, D 2 O exch.). 13 C -NMR (50 MHz, DMSO-d 6 ) δ 21.03, 21.80, 119.00, 122.50, 127.80, 128.84, 129.02, 129.78, 130.06, 131.24, 132.53, 139.94, 141.12, 141.92, 147.49, 151.59, 158.30, 165.72. HRMS (ESI) m/z: calcd. for C 22 H 20 N 5 O: [Ml + H] + = 370.1662, found 370.1656. Anal. Calcd for C 22 Hi 9 N 5 0: C, 71.53; H, 5.18; N, 18.96. Found: C, 71.41; H, 5.09; N, 19.16.

[0622] N-(6-Methyl-3-(phenylamino)pyrido[2,3-^]pyrazin-7-yl)-4-nitr obenzamide (10).

[0623] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 1 / 1 of

dichlorom ethane / ethyl acetate as the eluent. 115 mg of amide 10 were obtained as a yellow solid. Yield 90 %. M.p. 299-301 °C (EtOH). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.65 (s, 3H),

7.07 (t, 1H, J=7.3 Hz), 7.42 (t, 2H, J=7.8 Hz), 8.03 (d, 2H, J=7.8 Hz), 8.24-8.29 (m, 3H), 8.42 (d, 2H, J=8.6 Hz), 8.60 (s, 1H), 10.20 (brs, 1H, D 2 0 exch.), 10.54 (brs, 1H, D 2 0 exch.). 13 C -NMR (50 MHz, DMSO-i&) 5 21.78, 119.06, 122.57, 123.65, 128.83, 129.32, 129.39, 129.69, 132.79, 139.78, 139.87, 141.29, 147.80, 149.35, 151.71, 158.13, 164.43. HRMS (ESI) m/z: calcd. for C 2 iHi 7 N 6 0 3 : [Ml + H] + = 401.1357, found 401.1355. Anal. Calcd for C 2 iHi 6 N 6 0 3 : C, 63.00; H, 4.03; N, 20.99. Found: C, 62.81; H, 4.17; N, 21.16.

[0624] 3,4,5-Trimethoxy-N-(6-methyl-3-(phenylamino)pyrido[2,3-^]pyr azin-7-yl)benzamide (11).

[0625] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 6 / 4 of

dichlorom ethane / ethyl acetate as the eluent. 130 mg of amide 11 were obtained as a yellow solid. Yield 92 %. M.p. 162-4 °C (EtOH). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.63 (s, 3H), 3.75 (s, 3H), 3.89 (s, 6H), 7.08 (t, 1H, J=7.3 Hz), 7.38 (s, 2H), 7.42 (t, 2H, J=7.9 Hz), 8.03 (d, 2H, J=7.9 Hz), 8.21 (s, 1H), 8.60 (s, 1H), 10.15 (brs, 1H, D 2 0 exch.), 10.18 (brs, 1H, D 2 0 exch.). 13 C -NMR (50 MHz, DMSO-i&) 5 21.82, 56.11, 60.14, 105.41, 119.03, 122.52, 128.83, 129.07,

129.77, 129.96, 132.75, 139.92, 140.59, 141.17, 147.64, 151.65, 152.72, 158.54, 165.22. HRMS (ESI) m/z: calcd. for C24H24N5O4: [Ml + H] + = 446.1823, found 446.1818. Anal. Calcd for C24H23N5O4: C, 64.71; H, 5.20; N, 15.72. Found: C, 64.88; H, 5.12; N, 15.49.

[0626] N-(6-Methyl-3-(phenylamino)pyrido[2,3-^]pyrazin-7-yl)-3-(tri fluoromethyl)benzamide (12). [0627] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 3 / 7 of cyclohexane / ethyl acetate as the eluent. 130 mg of amide 12 were obtained as a yellow solid. Yield 95 %. M.p. 177-9 °C (EtOAc/«-hexane). ¾ - MR (600 MHz, DMSO-d) δ 2.64 (s, 3H), 7.09 (t, 1H, J=7.3 Hz), 7.42 (t, 2H, J=8.0 Hz), 7.83 (t, 1H, J=7.9 Hz), 8.03 (m, 3H), 8.26 (s, 1H), 8.34 (d, 1H, J=7.9 Hz), 8.38 (s, 1H), 8.60 (s, 1H), 10.20 (brs, 1H, D 2 0 exch.), 10.47 (brs, 1H, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-i/e) 5 21.82, 119.07, 122.58, 123.08, 124.42, 124.88, 128.44, 128.86, 129.00, 129.21, 129.42, 129.57, 129.64, 129.74, 129.89, 131.92, 132.97, 135.03, 139.91, 141.27, 147.80, 151.72, 158.37, 164.57. HRMS (ESI) m/z: calcd. for C22H17F3N5O: [Ml + H] + =

424.1380, found 424.1373. Anal. Calcd for C22H16F3N5O: C, 62.41; H, 3.81; N, 16.54. Found: C, 62.27; H, 3.76; N, 16.67.

[0628] Synthesis Example 2

[0629] Synthesis of N-(6-methyl-3-(phenylamino)pyrido[2,3-^]pyrazin-7-yl)-4-(3- phenylureido)benzamide (14).

[0630] Step 1 : 4-Amino-N-(6-methyl-3-(phenylamino)pyrido[2,3-^]pyrazin-7-yl )benzamide (13).

[0631] Triethylsilane (1.5 mL, 9.4 mmol) was added dropwise into a suspension of nitro compound 10 (200 mg, 0.5 mmol, its synthesis is described at Step 7, Example 1) and 50 mg of 10 % Pd/C in 12 mL of dry methanol, under argon, and this mixture was stirred at room temperature for 4 hours. Then, the solution was filtered through a celite pad to remove the catalyst, the solvent was evaporated and the residue was dry-packed and purified by column chromatography, using a mixture of 95 /5 of dichloromethane / methanol as the eluent, providing 140 mg of compound 13 as a yellow solid. Yield 76 %. M.p. 265 °C (MeOH). ¾ -NMR (600 MHz, DMSO-i&) δ 2.62 (s, 3H), 5.82 (brs, 2H, D 2 0 exch.), 6.63 (d, 2H, J=8.6 Hz), 7.03 (t, 1H, J=7.3 Hz), 7.41 (t, 2H, J=7.9 Hz), 7.77 (d, 2H, J=8.6 Hz), 8.02 (d, 2H, J=7.9 Hz), 8.22 (s, 1H), 8.58 (s, 1H), 9.69 (brs, 1H, D 2 0 exch.), 10.13 (brs, 1H, D 2 0 exch.). 13 C -NMR (50 MHz,

DMSO-i&) 5 21.82, 112.61, 118.94, 120.28, 122.40, 128.81, 129.48, 129.85, 130.72, 131.91,

139.99, 140.90, 147.10, 151.44, 152.39, 158.26, 165.61. HRMS (ESI) m/z: calcd. for C 2 iHi 9 N 6 0: [Ml + H] + = 371.1615, found 371.1611. Anal. Calcd for C 2 iHi 8 N 6 0: C, 68.09; H, 4.90; N, 22.69.

Found: C, 68.17; H, 4.93; N, 22.76.

14

[0632] Step 2: N-(6-Methyl-3-(phenylamino)pyrido[2,3-6]pyrazin- phenylureido)benzamide (14).

[0633] Phenylisocyanate (0.026 mL, 0.24 mmol) was added into a suspension of 13 (80 mg, 0.22 mmol) in 8 mL of dry tetrahydrofuran and this reaction mixture was heated at 70 °C for 20 hours. The solvent was removed under reduced pressure and the residue was dry-packed and purified by column chromatography using a mixture of 2 / 8 of cyclohexane / ethyl acetate as the eluent, providing 55 mg of 14 as a yellow solid. Yield 52 %. M.p. 262-4 °C (dec.) (MeOH). ¾ - NMR (600 MHz, DMSO-d 6 ) δ 2.64 (s, 3H), 7.00 (t, IH, J=7.4 Hz), 7.07 (t, IH, J=7.4 Hz), 7.30 (t, 2H, J=7.4 Hz + 8.6 Hz), 7.42 (t, 2H, J=7.4 Hz + 8.6 Hz), 7.48 (d, 2H, J=8.6 Hz), 7.63 (d, 2H, J=9.0 Hz), 8.02 (m, 4H), 8.25 (s, IH), 8.59 (s, IH), 8.80 (brs, IH, D 2 0 exch.), 9.05 (brs, IH, D 2 0 exch.), 10.05 (brs, IH, D 2 0 exch.), 10.17 (brs, IH, D 2 0 exch.). 13 C -NMR (50 MHz, DMSO-i&) 5 21.83, 117.23, 118.41, 119.00, 122.15, 122.48, 126.90, 128.82, 128.90, 129.80, 130.22, 132.37, 139.37, 139.96, 141.07, 143.18, 147.41, 151.57, 152.29, 158.31, 165.32. HRMS (ESI) m/z: calcd. for C 28 H 24 N 7 0 2 : [Ml + H] + = 490.1986, found 490.1980. Anal. Calcd for C 28 H 23 N 7 0 2 : C, 68.70; H, 4.74; N, 20.03. Found: C, 68.88; H, 4.56; N, 20.22.

[0634] Synthesis Example 3

[0635] Synthesis of phenylurea derivatives 15-19.

7 15-19

15; R-| R 2 R3 R 4 H

16i R- | R3 R 4 = H , R2 = CF3

17: R^R^H , R 2 =CI, R 3 =F

18i R- | R 2 R 4 = H , R3 = SCH3

19: R-| R 3 =CI, R 2 R 4 =H

[0636] Step 1 : General procedure for the synthesis of urea derivatives 15-19.

[0637] Phenyl isocyanate or the appropriate substituted phenyl isocyanate (0.45 mmol) was added into a suspension of 7 (80 mg, 0.32 mmol, its synthesis is described at Step 6 of Example 1) in 10 mL of dry tetrahydrofuran and this reaction mixture was refluxed, under argon, for 20 hours. The solvent was then removed under reduced pressure, the residue was dissolved in a mixture of dichloromethane and methanol, dry-packed and purified by column chromatography, providing compounds 15-19.

[0638] l-(6-Methyl-3-(phenylamino)pyrido[2,3-^]pyrazin-7-yl)-3-phen ylurea (15). [0639] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 4 / 6 of cyclohexane / ethyl acetate as the eluent. 90 mg of compound 15 were obtained as a yellow solid. Yield 76 %. M.p. 232-4 °C (EtOH). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.67 (s, 3H), 7.00 (t, 1H, J=7.4 Hz), 7.05 (t, 1H, J=7.4 Hz), 7.32 (t, 2H, J=7.4 Hz + 8.2 Hz), 7.40 (t, 2H, J=7.4 Hz + 8.2 Hz), 7.50 (d, 2H, J=7.4 Hz), 8.00 (d, 2H, J=7.8 Hz), 8.30 (brs, 1H, D 2 0 exch.), 8.55 (s, 1H), 8.68 (s, 1H), 9.22 (brs, 1H, D 2 0 exch.), 10.04 (brs, 1H, D 2 0 exch.). 13 C -NMR (50 MHz, DMSO-d 6 ) δ 21.90, 118.22, 118.72, 122.08, 122.13, 124.96, 128.78, 128.88, 130.22, 131.53, 139.46, 140.18, 140.79, 145.07, 150.86, 152.61, 153.37. HRMS (ESI) m/z: calcd. for C 2 iHi 9 N 6 0: [Ml + H] + = 371.1615, found 371.1609. Anal. Calcd for C 2 iHi 8 N 6 0: C, 68.09; H, 4.90; N, 22.69. Found: C, 68.22; H, 4.81; N, 22.58.

[0640] l-(6-Methyl-3-(phenylamino)pyrido[2,3-6]pyrazin-7-yl)-3-(3- (trifluoromethyl)phenyl)urea (16).

[0641] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 100 / 5 of dichlorom ethane / methanol as the eluent. 90 mg of compound 16 were obtained as a yellow solid. Yield 65 %. M.p. 236-7 °C (EtOH). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.66 (s, 3H), 7.05 (t, IH, J=7.3 Hz), 7.34 (d, IH, J=7.6 Hz), 7.39 (t, 2H, J=8.0 Hz), 7.55 (t, IH, J=7.9 Hz), 7.61 (d, IH, J=8.2 Hz), 7.99 (d, 2H, J=7.8 Hz), 8.05 (s, IH), 8.40 (brs, IH, D 2 0 exch.), 8.56 (s, IH), 8.63 (s, IH), 9.55 (brs, IH, D 2 0 exch.), 10.04 (brs, IH, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) 5 21.88, 114.13, 118.35, 118.79, 121.83, 122.23, 123.30, 125.10, 125.89, 128.81, 129.31, 129.52, 129.73, 129.93, 130.07, 130.15, 131.08, 140.15, 140.38, 140.92, 145.46, 151.01, 152.69, 153.89. HRMS (ESI) m/z: calcd. for C 22 Hi 8 F 3 N 6 0: [Ml + H] + = 439.1489, found 439.1484. Anal. Calcd for C 22 HivF 3 N 6 0: C, 60.27; H, 3.91; N, 19.17. Found: C, 60.33; H, 3.96; N, 19.01. [0642] l-(3-Chloro-4-fluorophenyl)-3-(6-methyl-3-(phenylamino)pyrid o[2,3-^]pyrazin-7- yl)urea (17).

[0643] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 100 / 4 of

dichlorom ethane / methanol as the eluent. 110 mg of compound 17 were obtained as a yellow solid. Yield 82 %. M.p. 215-6 °C (EtOH). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.65 (s, 3H), 7.05 (t, IH, J=7.3 Hz), 7.30-7.33 (m, IH), 7.36 (t, IH, J=9.0 Hz), 7.39 (t, 2H, J=8.0 Hz), 7.86 (dd, IH, J=6.8 Hz + 2.5 Hz), 7.99 (d, 2H, J=7.8 Hz), 8.34 (brs, IH, D 2 0 exch.), 8.55 (s, IH), 8.61 (s, IH), 9.36 (brs, IH, D 2 0 exch.), 10.03 (brs, IH, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO^) δ 21.89, 116.93, 117.07, 118.52, 118.57, 118.78, 119.22, 119.34, 119.56, 122.21, 125.76, 128.81, 130.16, 131.14, 136.78, 140.16, 140.90, 145.40, 150.98, 151.70, 152.65, 153.30, 153.81. HRMS (ESI) m/z: calcd. for C 2 iHi 7 ClFN 6 0: [Ml + H] + = 423.1131, found 423.1127. Anal. Calcd for C 2I H I6 C1FN 6 0: C, 59.65; H, 3.81; N, 19.88. Found: C, 59.80; H, 3.84; N, 19.64.

[0644] l-(6-Methyl-3-(phenylamino)pyrido[2,3-^]pyrazin-7-yl)-3-(4-( methylthio)phenyl)urea (18). [0645] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 1 / 1 of

dichlorom ethane / ethyl acetate as the eluent. 100 mg of compound 18 were obtained as a yellow solid. Yield 76 %. M.p. 229-231 °C (EtOAc). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.45 (s, 3H), 2.66 (s, 3H), 7.05 (t, IH, J=7.3 Hz), 7.26 (d, 2H, J=8.5 Hz), 7.39 (t, 2H, J=7.7 Hz), 7.47 (d, 2H, J=8.5 Hz), 7.99 (d, 2H, J=7.9 Hz), 8.30 (brs, IH, D 2 0 exch.), 8.55 (s, IH), 8.66 (s, IH), 9.24 (brs, IH, D 2 0 exch.), 10.02 (brs, IH, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) δ 15.93, 21.91, 118.73, 119.00, 122.16, 125.00, 127.79, 128.80, 130.22, 130.28, 131.51, 137.18, 140.19, 140.81, 145.10, 150.87, 152.59, 153.43. HRMS (ESI) m/z: calcd. for C 22 H 2 iN 6 OS: [Ml + H] + = 417.1492, found 417.1484. Anal. Calcd for C 22 H 20 N 6 OS: C, 63.44; H, 4.84; N, 20.18. Found: C, 63.63; H, 4.89; N, 19.99.

[0646] l-(2,4-Dichlorophenyl)-3-(6-methyl-3-(phenylamino)pyrido[2,3 -^]pyrazin-7-yl)urea (19).

[0647] This compound was synthesized according to the general procedure described above. The product was purified by column chromatography, using a mixture of 7 / 3 of

dichlorom ethane / ethyl acetate as the eluent. 110 mg of compound 19 were obtained as a yellow solid. Yield 79 %. M.p. >300 °C (EtOAc). ¾ -NMR (600 MHz, DMSO^) δ 2.68 (s, 3H), 7.05 (t, 1H, J=7.3 Hz), 7.37-7.43 (m, 3H), 7.65 (d, 1H, J=2.3 Hz), 7.99 (d, 2H, J=7.9 Hz), 8.20 (d, 1H, J=8.9 Hz), 8.55 (s, 1H), 8.63 (s, 1H), 8.98-9.01 (m, 2H, D 2 0 exch.), 10.04 (brs, 1H, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) δ 22.14, 118.78, 122.22, 122.90, 123.07, 125.99, 126.52, 127.64, 128.65, 128.81, 130.07, 130.99, 135.08, 140.13, 140.93, 145.41, 151.01, 152.44, 153.72. HRMS (ESI) m/z: calcd. for C 2 iHi 7 Cl 2 N 6 0: [Ml + H] + = 439.0835, found 439.0830. Anal. Calcd for CnHieChNeO: C, 57.42; H, 3.67; N, 19.13. Found: C, 57.31; H, 3.64; N, 19.29.

[0648] Synthesis Example 4

[0649] Synthesis of urea derivatives 28-34.

28-34 24-27

24: R 1 R 3 =H, R 2 =C0 2 Et

28: R 1 R 3 =H, R 2 =C0 2 Et, R 4 =CI, R 5 =F

25: R^NHCOCHs R 2 R 3 =H 29: R 1 R 3 R 5 =H, R 2 =C0 2 Et, R 4 =CF 3

26: RT R 3 =H, R 2 =NHC0CH 3 30: R 1 =NHCOCH 3 R 2 R 3 =H, R 4 =CI, R 5 =F

27: R-, ' R 2 R 3 =OCH 3 31 : R- | =NHCOCH 3 R 2 R 3 R 5 =H, R 4 =CF 3

32: R 1 R 3 =H, R 2 =NHC ' OCH 3 R 4 =CI, R 5 =F

33: R 1 R 3 R 5 =H, R 2 =NHCOCH 3 R 4 =CF 3

34: R 1 R 2 R 3 =OCH 3 R 4 =CF 3 R 5 =H [0650] Step 1 : General procedure for the synthesis of nitro derivatives 20-23.

[0651] Compounds 20-23 were synthesized following an analogous synthetic procedure to that described for the preparation of compound 6 (Step 5, Example 1), starting from chloro derivative 5 (320 mg, 1.43 mmol). The crude products were purified by column chromatography. [0652] Ethyl 4-((6-methyl-7-nitropyrido[2,3-^]pyrazin-3-yl)amino)benzoate (20).

[0653] Eluent of purification: dichlorom ethane / methanol 100/5. Yield 98%. Yellow solid, m.p. 298-300 °C (EtOAc). 1 H - MR (600 MHz, DMSO^) δ 1.33 (t, 3H, J=7.1 Hz), 2.89 (s, 3H), 4.32 (q, 2H, J=7.1 Hz), 8.02 (d, 2H, J=8.5 Hz), 8.13 (d, 2H, J=8.5 Hz), 8.72 (s, 1H), 8.86 (s, 1H), 10.95 (brs, 1H, D 2 0 exch.). HRMS (ESI) m/z: calcd. for CnHieNsC : [Ml + H] + =

354.1197, found 354.1191.

[0654] N-(3-((6-Methyl-7-nitropyrido[2,3-^]pyrazin-3-yl)amino)pheny l)acetamide (21).

[0655] Eluent of purification: dichlorom ethane / methanol 100/5. Yield 87%. Yellow solid, m.p. >300 °C (EtOAc). ¾ - MR (600 MHz, DMSO-d 6 ) δ 2.08 (s, 3H), 2.88 (s, 3H), 7.27 (d, 1H, J=8.0 Hz), 7.36 (t, 1H, J=8.0 Hz), 7.97 (d, 1H, J=8.0 Hz), 8.11 (s, 1H), 8.69 (s, 1H), 8.81 (s, 1H), 10.06 (brs, 1H, D 2 0 exch.), 10.66 (brs, 1H, D 2 0 exch.). HRMS (ESI) m/z: calcd. for CieHisNeOs: [Ml + H] + = 339.1200, found 339.1194.

[0656] N-(4-((6-Methyl-7-nitropyrido[2,3-*]pyrazin-3-yl)amino)pheny l)acetamide (22).

[0657] Eluent of purification: dichlorom ethane / methanol 100/5. Yield 85%. Red solid, m.p. 186-8 °C (EtOAc). ¾ -NMR (600 MHz, DMSO-^) δ 2.05 (s, 3H), 2.87 (s, 3H), 7.64 (d, 2H, J=9.0 Hz), 7.94 (d, 2H, J=9.0 Hz), 8.74 (s, 1H), 8.78 (s, 1H), 10.06 (brs, 1H, D 2 0 exch.), 10.92 (brs, 1H, D 2 0 exch.). HRMS (ESI) m/z: calcd. for CieHisNeOs: [Ml + H] + = 339.1200, found 339.1192.

[0658] 6-Methyl-7-nitro-N-(3,4,5-trimethoxyphenyl)pyrido[2,3-^]pyra zin-3-amine (23).

[0659] Eluent of purification: dichlorom ethane / ethyl acetate 7/3. Yield 81%. Orange solid, m.p. 266-8 °C (EtOAc). ¾ -NMR (600 MHz, DMSO^) δ 2.86 (s, 3H), 3.68 (s, 3H), 3.83 (s,

6H), 7.36 (s, 2H), 8.60 (s, 1H), 8.78 (s, 1H), 10.56 (brs, 1H, D 2 0 exch.). HRMS (ESI) m/z: calcd. for CivHisNsOs: [Ml + H] + = 372.1302, found 372.1294.

[0660] Step 2: General procedure for the synthesis of aminoderivatives 24-27. [0661] Compounds 24-27 were synthesized following an analogous synthetic procedure to that described for the preparation of compound 7 (Step 6, Example 1), starting from nitro derivatives 20-23 (1.2 mmol), respectively. The crude products were purified by column chromatography.

[0662] Ethyl 4-((7-amino-6-methylpyrido[2,3-£]pyrazin-3-yl)amino)benzoat e (24). [0663] Eluent of purification: dichlorom ethane / methanol 100/5. Yield 88%. Yellow solid, m.p. 257-9 °C (Et 2 0). ¾ - MR (600 MHz, DMSO-d 6 ) δ 1.32 (t, 3H, J=7.1 Hz), 2.51 (s, 3H), 4.30 (q, 2H, J=7.1 Hz), 5.52 (brs, 2H, D 2 0 exch.), 7.29 (s, IH), 7.96 (d, 2H, J=8.9 Hz), 8.06 (d, 2H, J=8.9 Hz), 8.48 (s, IH), 10.11 (brs, IH, D 2 0 exch.). HRMS (ESI) m/z: calcd. for

C17H18N5O2: [Ml + H] + = 324.1455, found 324.1449. [0664] N-(3-((7-Amino-6-methylpyrido[2,3-^]pyrazin-3-yl)amino)pheny l)acetamide (25).

[0665] Eluent of purification: dichlorom ethane / methanol 100/5. Yield 81%. Orange solid, m.p. 239-241 °C (EtOAc). ¾ - MR (600 MHz, DMSO^) δ 2.06 (s, 3H), 2.48 (s, 3H), 5.39 (brs, 2H, D 2 0 exch.), 7.15 (d, IH, J=8.2 Hz), 7.23-7.28 (m, 2H), 7.90 (d, IH, J=8.0 Hz), 7.98 (s, IH), 8.44 (s, IH), 9.70 (brs, IH, D 2 0 exch.), 9.94 (brs, IH, D 2 0 exch.). HRMS (ESI) m/z: calcd. for CieHnNeO: [Ml + H] + = 309.1458, found 309.1451.

[0666] N-(4-((7-Amino-6-methylpyrido[2,3-^]pyrazin-3-yl)amino)pheny l)acetamide (26).

[0667] Eluent of purification: dichlorom ethane / methanol 100/6. Yield 66%. Orange solid, m.p. 275-7 °C (EtOAc). ¾ - MR (600 MHz, DMSO^) δ 2.03 (s, 3H), 2.53 (s, 3H), 5.52 (brs, 2H, D 2 0 exch.), 7.44 (s, IH), 7.57 (d, 2H, J=8.7 Hz), 7.88 (d, 2H, J=8.7 Hz), 8.50 (s, IH), 9.93 (brs, IH, D 2 0 exch.), 10.03 (brs, IH, D 2 0 exch.). HRMS (ESI) m/z: calcd. for CieHnNeO: [Ml + H] + = 309.1458, found 309.1455.

[0668] 6-Methyl-N 3 -(3,4,5-trimethoxyphenyl)pyrido[2,3-*]pyrazine-3,7-dia mine (27).

[0669] Eluent of purification: dichlorom ethane / methanol 100/4. Yield 68%. Yellow solid, m.p. 265-7 °C (EtOAc). 1 H - MR (600 MHz, DMSO^) δ 2.47 (s, 3H), 3.65 (s, 3H), 3.81 (s, 6H), 5.38 (brs, 2H, D 2 0 exch.), 7.25 (s, IH), 7.33 (s, 2H), 8.37 (s, IH), 9.81 (brs, IH, D 2 0 exch.). HRMS (ESI) m/z: calcd. for Ci 7 H 2 oN 5 0 3 : [Ml + H] + = 342.1561, found 342.1556.

[0670] Step 3 : General procedure for the synthesis of urea derivatives 28-34.

[0671] Compounds 28-34 were synthesized following an analogous synthetic procedure to that described for the preparation of derivatives 15-19 (Step 1, Example 3), upon treatment of amines 24-27 (0.4 mmol) with 3-chloro-4-fluorophenyl isocyanate (0.6 mmol) or 3- (trifluoromethyl)phenyl isocyanate (0.6 mmol), respectively. The crude products were purified by column chromatography.

[0672] Ethyl 4-((7-(3-(3-chloro-4-fluorophenyl)ureido)-6-methylpyrido[2,3 -^]pyrazin-3- yl)amino)benzoate (28). [0673] Eluent of purification: dichlorom ethane / methanol 100/5. Yield 96%. Yellow solid, m.p. >300 °C (EtOAc). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 1.33 (t, 3H, J=7.1 Hz), 2.68 (s, 3H), 4.31 (q, 2H, J=7.1 Hz), 7.31-7.35 (m, IH), 7.37 (t, IH, J=8.0 Hz), 7.87 (dd, IH, J=6.8 Hz + 2.5 Hz), 8.00 (d, 2H, J=8.8 Hz), 8.13 (d, 2H, J=8.8 Hz), 8.42 (brs, IH, D 2 0 exch.), 8.62 (s, IH), 8.68 (s, IH), 9.43 (brs, IH, D 2 0 exch.), 10.44 (brs, IH, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) δ 14.27, 21.98, 60.31, 116.94, 117.08, 117.87, 118.52, 118.56, 119.23, 119.35, 119.55, 122.83, 125.15, 130.34, 130.74, 131.84, 136.73, 140.80, 144.61, 144.78, 150.37, 151.72, 152.58, 153.32, 154.01, 165.47. HRMS (ESI) m/z: calcd. for C 24 H 2 iClFN 6 0 3 : [Ml + H] + = 495.1342, found 495.1338. Anal. Calcd for C 24 H 20 ClFN 6 O 3 : C, 58.25; H, 4.07; N, 16.98. Found: C, 58.42; H, 4.13; N, 16.71. [0674] Ethyl 4-((6-methyl-7-(3-(3-(trifluoromethyl)phenyl)ureido)pyrido[2 ,3-^]pyrazin-3- yl)amino)benzoate (29).

[0675] Eluent of purification: dichlorom ethane / methanol 100/5. Yield 93%. Yellow solid, m.p. >300 °C (EtOAc). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 1.33 (t, 3H, J=7.1 Hz), 2.70 (s, 3H), 4.31 (q, 2H, J=7.1 Hz), 7.35 (d, IH, J=7.5 Hz), 7.56 (t, IH, J=7.9 Hz), 7.62 (d, IH, J=8.4 Hz), 8.00 (d, 2H, J=8.8 Hz), 8.05 (s, IH), 8.13 (d, 2H, J=8.8 Hz), 8.46 (brs, IH, D 2 0 exch.), 8.62 (s, IH), 8.70 (s, IH), 9.60 (brs, IH, D 2 0 exch.), 10.44 (brs, IH, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-i&) δ 14.25, 22.00, 60.27, 114.05, 117.85, 118.33, 121.77, 122.80, 123.27, 125.08, 125.20, 129.29, 129.50, 129.70, 129.92, 130.05, 130.32, 130.72, 131.77, 140.33, 140.80, 144.60, 144.80, 150.37, 152.62, 154.05, 165.43. HRMS (ESI) m/z: calcd. for C 25 H 22 F 3 N 6 0 3 : [Ml + H] + = 511.1700, found 511.1692. Anal. Calcd for C 25 H 2 iF 3 N 6 0 3 : C, 58.82; H, 4.15; N, 16.46. Found: C, 59.04; H, 4.21; N, 16.22.

[0676] N-(3-((7-(3-(3-Chloro-4-fluorophenyl)ureido)-6-methylpyrido[ 2,3-*]pyrazin-3- yl)amino)phenyl)acetamide (30).

[0677] Eluent of purification: dichlorom ethane / methanol 100/6. Yield 90%. Orange solid, m.p. 225-7 °C (EtOAc). ¾ -NMR (600 MHz, DMSO^) δ 2.08 (s, 3H), 2.65 (s, 3H), 7.21 (d,

IH, J=8.2 Hz), 7.30 (t, IH, J=8.2 Hz), 7.32-7.38 (m, 2H), 7.86 (dd, IH, J=6.8 Hz + 2.5 Hz), 7.97

(d, IH, J=8.2 Hz), 8.04 (s, IH), 8.40 (brs, IH, D 2 0 exch.), 8.57 (s, IH), 8.61 (s, IH), 9.45 (brs, 1H, D 2 0 exch.), 10.00 (brs, 1H, D 2 0 exch.), 10.05 (brs, 1H, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-i&) 5 21.92, 24.05, 109.70, 113.43, 113.82, 116.93, 117.07, 118.48, 118.52, 119.21, 119.33, 119.51, 125.74, 128.93, 130.16, 131.15, 136.83, 139.63, 140.34, 141.01, 145.40, 151.03, 151.68, 152.69, 153.28, 153.76, 168.38. HRMS (ESI) m/z: calcd. for C23H20CIFN7O2: [Ml + H] + = 480.1346, found 480.1339. Anal. Calcd for C23H19CIFN7O2: C, 57.56; H, 3.99; N, 20.43. Found: C, 57.77; H, 4.04; N, 20.30.

[0678] N-(3-((6-Methyl-7-(3-(3-(trifluoromethyl)phenyl)ureido)pyrid o[2,3-*]pyrazin-3- yl)amino)phenyl)acetamide (31).

[0679] Eluent of purification: dichlorom ethane / methanol 100/6. Yield 94%. Orange solid, m.p. 218-220 °C (EtOAc). ¾ -NMR (600 MHz, DMSO^) δ 2.08 (s, 3H), 2.66 (s, 3H), 7.21 (d, 1H, J=8.6 Hz), 7.31 (t, 1H, J=8.1 Hz), 7.35 (d, 1H, J=7.7 Hz), 7.55 (t, 1H, J=7.8 Hz), 7.61 (d, 1H, J=8.5 Hz), 7.97 (d, 1H, J=8.2 Hz), 8.03-8.07 (m, 2H), 8.40 (brs, 1H, D 2 0 exch.), 8.58 (s, 1H), 8.62 (s, 1H), 9.54 (brs, 1H, D 2 0 exch.), 10.00 (brs, 1H, D 2 0 exch.), 10.05 (brs, 1H, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) δ 21.85, 24.05, 109.71, 113.45, 113.83, 114.13, 118.35, 121.83, 123.30, 125.10, 125.93, 128.94, 129.32, 129.52, 129.73, 129.94, 130.08, 130.16,

131.05, 139.64, 140.33, 140.39, 141.05, 145.48, 151.06, 152.70, 153.84, 168.38. HRMS (ESI) m/z: calcd. for C24H21F3N7O2: [Ml + H] + = 496.1703, found 496.1699. Anal. Calcd for

C24H20F3N7O2: C, 58.18; H, 4.07; N, 19.79. Found: C, 58.01; H, 4.03; N, 19.94.

[0680] N-(4-((7-(3-(3-Chloro-4-fluorophenyl)ureido)-6-methylpyrido[ 2,3-*]pyrazin-3- yl)amino)phenyl)acetamide (32).

[0681] Eluent of purification: dichlorom ethane / methanol 100/7. Yield 86%. Orange solid, m.p. 233-5 °C (EtOAc). 1 H -NMR (600 MHz, DMSO^) δ 2.04 (s, 3H), 2.65 (s, 3H), 7.31-7.39 (m, 2H), 7.59 (d, 2H, J=8.9 Hz), 7.86 (dd, 1H, J=6.8 Hz + 2.5 Hz), 7.90 (d, 2H, J=8.9 Hz), 8.37 (brs, 1H, D 2 0 exch.), 8.52 (s, 1H), 8.59 (s, 1H), 9.41 (brs, 1H, D 2 0 exch.), 9.91 (brs, 1H, D 2 0 exch.), 10.01 (brs, 1H, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO^) δ 21.82, 23.88, 116.92,

117.06, 118.38, 118.42, 119.19, 119.31, 119.39, 119.58, 126.05, 130.03, 131.01, 134.19, 135.33, 136.90, 141.14, 145.27, 145.33, 150.94, 151.63, 152.73, 153.23, 153.40, 167.91. HRMS (ESI) m/z: calcd. for C23H20CIFN7O2: [Ml + H] + = 480.1346, found 480.1342. Anal. Calcd for

C23H19CIFN7O2: C, 57.56; H, 3.99; N, 20.43. Found: C, 57.32; H, 3.90; N, 20.66. [0682] N-(4-((6-Methyl-7-(3-(3-(trifluoromethyl)phenyl)ureido)pyrid o[2,3-*]pyrazin-3- yl)amino)phenyl)acetamide (33). [0683] Eluent of purification: dichlorom ethane / methanol 100/8. Yield 83%. Orange solid, m.p. 227-9 °C (EtOAc). ¾ -NMR (600 MHz, DMSO^) δ 2.04 (s, 3H), 2.66 (s, 3H), 7.34 (d, 1H, J=7.1 Hz), 7.55 (t, 1H, J=8.0 Hz), 7.58-7.63 (m, 3H), 7.90 (d, 2H, J=8.9 Hz), 8.05 (s, 1H), 8.41 (brs, 1H, D 2 0 exch.), 8.53 (s, 1H), 8.60 (s, 1H), 9.58 (brs, 1H, D 2 0 exch.), 9.91 (brs, 1H, D 2 0 exch.), 10.00 (brs, 1H, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) δ 21.71, 23.88,

113.99, 118.24, 119.25, 119.58, 121.70, 123.30, 125.11, 126.40, 129.29, 129.50, 129.71, 129.92, 130.04, 130.96, 134.25, 135.27, 140.47, 141.28, 145.27, 150.98, 152.78, 153.32, 167.92. HRMS (ESI) m/z: calcd. for C 24 H 2 iF 3 N 7 0 2 : [Ml + H] + = 496.1703, found 496.1695. Anal. Calcd for C 24 H 20 F 3 N 7 O 2 : C, 58.18; H, 4.07; N, 19.79. Found: C, 57.95; H, 4.01; N, 19.86. [0684] l-(6-Methyl-3-((3,4,5-trimethoxyphenyl)amino)pyrido[2,3-*]py razin-7-yl)-3-(3- (trifluoromethyl)phenyl)urea (34).

[0685] Eluent of purification: dichlorom ethane / methanol 100/2. Yield 78%. Yellow solid, m.p. 222-4 °C (EtOAc). ¾ -NMR (600 MHz, DMSO^) δ 2.65 (s, 3H), 3.66 (s, 3H), 3.83 (s, 6H), 7.32-7.39 (m, 3H), 7.54 (t, 1H, J=7.5 Hz), 7.61 (d, 1H, J=7.6 Hz), 8.05 (s, 1H), 8.41 (brs, 1H, D 2 0 exch.), 8.51 (s, 1H), 8.62 (s, 1H), 9.56 (brs, 1H, D 2 0 exch.), 9.97 (brs, 1H, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) δ 22.10, 56.00, 60.22, 97.37, 114.12, 118.34, 121.83, 123.30, 125.11, 125.83, 129.31, 129.53, 129.74, 129.92, 130.09, 130.17, 131.04, 133.20, 136.19, 140.39, 140.82, 145.44, 151.03, 152.70, 152.89, 153.86. HRMS (ESI) m/z: calcd. for C 2 5H 2 4F 3 N 6 0 4 : [Ml + H] + = 529.1806, found 529.1799. Anal. Calcd for C 25 H 23 F 3 N 6 0 4 : C, 56.82; H, 4.39; N, 15.90. Found: C, 57.07; H, 4.46; N, 15.69.

[0686] Synthesis Example 5

[0687] Synthesis of carboxylic acids 35 and 36.

[0688] Step 1 : Synthesis of carboxylic acids 35 and 36.

[0689] Sodium hydroxide aqueous solution (40% w/v, 2 mL) was added into a suspension of ethyl esters 28 or 29 (0.2 mmol, their synthesis is described at Step 3 of Example 4) in ethanol (6 mL) and this mixture was refluxed for 2 hours. Upon completion of the reaction the solvent was removed under reduced pressure and the residue was acidified until pH=3, upon addition of a 2N hydrochloric acid solution. The precipitate was filtered under vacuum, washed with water and air-dried. The product was then purified by column chromatography.

35-36

35: R^CI, R 2 =F 36: R-| = CF 3 R2 = H

[0690] 4-((7-(3-(3-Chloro-4-fluorophenyl)ureido)-6-methylpyrido[2,3 -*]pyrazin-3- yl)amino)benzoic acid (35).

[0691] Eluent of purification: dichlorom ethane / methanol 100/12. Yield 82%. Orange solid, m.p. >300 °C (EtOAc). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.69 (s, 3H), 7.32-7.39 (m, 2H), 7.86 (dd, IH, J=6.8 Hz + 2.5 Hz), 7.98 (d, 2H, J=8.7 Hz), 8.11 (d, 2H, J=8.7 Hz), 8.50 (brs, IH, D 2 0 exch.), 8.63 (s, IH), 8.70 (s, IH), 9.55 (brs, IH, D 2 0 exch.), 10.44 (brs, IH, D 2 0 exch.), 12.62 (v brs, IH, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) δ 21.83, 116.93, 117.07, 117.87, 118.47, 118.52, 119.22, 119.34, 119.50, 123.83, 125.49, 130.52, 130.67, 131.82, 136.75, 141.00, 144.24, 144.65, 150.47, 151.71, 152.62, 153.30, 153.81, 167.05. HRMS (ESI) m/z: calcd. for

C22H17CIFN6O3: [Ml + H] + = 467.1029, found 467.1022. Anal. Calcd for C22H16CIFN6O3: C, 56.60; H, 3.45; N, 18.00. Found: C, 56.83; H, 3.55; N, 17.86.

[0692] 4-((6-Methyl-7-(3-(3-(trifluoromethyl)phenyl)ureido)pyrido[2 ,3-*]pyrazin-3- yl)amino)benzoic acid (36). [0693] Eluent of purification: dichlorom ethane / methanol 100/12. Yield 85%. Orange solid, m.p. >300 °C (EtOAc). ¾ -NMR (600 MHz, DMSO-d 6 ) δ 2.70 (s, 3H), 7.35 (d, IH, J=7.7 Hz), 7.56 (t, IH, J=7.8 Hz), 7.63 (d, IH, J=8.3 Hz), 7.98 (d, 2H, J=8.8 Hz), 8.06 (s, IH), 8.11 (d, 2H, J=8.8 Hz), 8.54 (brs, IH, D 2 0 exch.), 8.63 (s, IH), 8.69 (s, IH), 9.73 (brs, IH, D 2 0 exch.), 10.41 (brs, IH, D 2 0 exch.), 12.62 (v brs, IH, D 2 0 exch.). 13 C -NMR (151 MHz, DMSO-d 6 ) δ 22.54, 113.81, 117.80, 118.11, 121.54, 123.34, 123.86, 124.82, 125.14, 129.30, 129.51, 129.71, 129.92,

130.00, 130.48, 130.69, 131.93, 140.67, 140.89, 144.40, 144.74, 150.49, 152.93, 153.96, 167.24. HRMS (ESI) m/z: calcd. for CisHisFsNeOs: [Ml + H] + = 483.1387, found 483.1380. Anal. Calcd for C23H17F3N6O3: C, 57.26; H, 3.55; N, 17.42. Found: C, 57.11; H, 3.51; N, 17.66.

[0694] Synthesis References:

[0695] H. Ritter, H. Licht, Synthesis and reactions of dinitrated amino and diaminopyri dines, J. Heterocyclic Chem. 32 (1995) 585-590. N. Lougiakis, P. Marakos, N. Pouli, E. Fragopoulou, R. Tenta, Synthesis of new nebularine analogues and their inhibitory activity against adenosine deaminase, Chem. Pharm. Bull. 63 (2015) 134-142. O. Argyros, N. Lougiakis, E. Kouvari, A. Papafotika, CP. Raptopoulou, V. Psycharis, S. Christoforidis, N. Pouli, P. Marakos, C.

Tamvakopoulos, Design and Synthesis of Novel 7-Aminosubstituted pyrido[2,3-£]pyrazines Exhibiting Anti-breast Cancer Activity, Eur. J. Med. Chem. (2017), 126, 954-968.

Example 3. Assay

[0696] MTS assays were performed for cell viability. To determine if novel pyridopyrazine derivatives have antitumor activities, compounds were screened at 10 μΜ final concentration with A2058 melanoma and DU145 prostate cancer cell lines. Compounds #16 and #17 were selected to determine IC50 values against lung cancer cell lines, including A549, DMS273, H69, H513, H2461, DMS114, H358 and H2596. In this assay, cells (5000/well) were seeded in 96- well plates, incubated overnight at 37°C in 5% CO2, and exposed to 10 μΜ of compounds or in a dose-dependent manner for 48 h. After 48 h treatment with compounds, MTS dye (20 μΕΛνεΙΙ) was added to 96-well plates. Viable cell numbers were determined by tetrazolium conversion to its formazan dye. Absorbance was measured at 490 nm using an automated ELISA plate reader. Dimethyl sulfoxide (DMSO) was used as the vehicle control. Each experiment was conducted in triplicate. IC50 values were determined using CalcuSyn software (Biosoft).

[0697] It is understood that the examples and embodiments described herein are for illustrative purposes only and that various modifications or changes in light thereof will be suggested to persons skilled in the art and are to be included within the spirit and purview of this application and scope of the appended claims. All publications, patents, and patent applications cited herein are hereby incorporated by reference in their entirety for all purposes.