Claims
- 1. A process for making a substituted pyrazole, a tautomer of the substituted pyrazole, or a salt of the substituted pyrazole or tautomer, wherein:
the substituted pyrazole corresponds in structure to Formula (I): 82and the process comprises combining an isonipecotate with an anhydride; and the isonipecotate corresponds in structure to Formula (VI): 83and the anhydride corresponds in structure to Formula (V): 84and RA is alkyl; and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5′ is selected from the group consisting of R5A and —O—R5B; and R5A is selected from the group consisting of hydrogen, optionally-substituted alkyl, optionally-substituted aryl, and optionally-substituted heteroaryl; and R5B is selected from the group consisting of optionally-substituted alkyl (except for unsubstituted tert-butyl), optionally-substituted alkenyl, optionally-substituted aryl, optionally-substituted arylalkyl, optionally-substituted heteroaryl, and optionally-substituted heteroarylalkyl.
- 2. A process according to claim 1, wherein:
R5A is selected from the group consisting of alkyl, aryl, and heteroaryl; and R5B is selected from the group consisting of alkyl (except for tert-butyl), alkenyl, aryl, arylalkyl, heteroaryl, and heteroarylalkyl.
- 3. A process according to claim 1, wherein R5′ is methyl.
- 4. A process according to claim 1, wherein R5′ is ethyl.
- 5. A process according to claim 1, wherein R5′ is phenyl.
- 6. A process according to claim 1, wherein:
R5 is —O—R5B, and R5B is selected from the group consisting of isobutyl, trichloroethyl, allyl, phenyl, and benzyl.
- 7. A process according to claim 1, wherein RA is ethyl.
- 8. A process according to claim 7, wherein the substituted pyrazole corresponds in structure to the following formula:
- 9. A process for making a nitrogen-protected isonipecotate, wherein:
the nitrogen-protected isonipecotate corresponds in structure to Formula (VII): 86and the process comprises combining an isonipecotate with an anhydride, and the isonipecotate corresponds in structure to Formula (VI): 87and the anhydride corresponds in structure to Formula (V): 88and RA is alkyl; and R5′ is selected from the group consisting of R5A and —O—R5B; and R5A is selected from the group consisting of hydrogen, optionally-substituted alkyl, optionally-substituted aryl, and optionally-substituted heteroaryl; and R5B is selected from the group consisting of optionally-substituted alkyl (except for unsubstituted tert-butyl), optionally-substituted alkenyl, optionally-substituted aryl, optionally-substituted arylalkyl, optionally-substituted heteroaryl, and optionally-substituted heteroarylalkyl.
- 10. A process according to claim 9, wherein R5′ is methyl.
- 11. A process according to claim 9, wherein RA is ethyl.
- 12. A process according to claim 11, wherein the nitrogen-protected isonipecotate corresponds in structure to the following formula:
- 13. A nitrogen-protected isonipecotate, wherein:
the nitrogen-protected isonipecotate corresponds in structure to Formula (VII): 90and RA is alkyl; and R5′ is selected from the group consisting of R5A and —O—R5B; and R5A is selected from the group consisting of hydrogen, optionally-substituted alkyl, optionally-substituted aryl, and optionally-substituted heteroaryl; and R5B is selected from the group consisting of optionally-substituted alkyl (except for unsubstituted tert-butyl), optionally-substituted alkenyl, optionally-substituted aryl, optionally-substituted arylalkyl, optionally-substituted heteroaryl, and optionally-substituted heteroarylalkyl.
- 14. A nitrogen-protected isonipecotate according to claim 13, wherein RA is ethyl.
- 15. A nitrogen-protected isonipecotate according to claim 13, wherein R5′ is methyl.
- 16. A nitrogen-protected isonipecotate according to claim 15, wherein the nitrogen-protected isonipecotate corresponds in structure to the following formula:
- 17. A process for making a substituted pyrazole, a tautomer of the substituted pyrazole, or a salt of the substituted pyrazole or tautomer, wherein:
the substituted pyrazole corresponds in structure to Formula (I): 92and forming a reaction mixture by a process comprising introducing a nitrogen-protected isonipecotate and a methyl heteroaryl into a reactor; and the nitrogen-protected isonipecotate corresponds in structure to Formula (VIII): 93and the methyl heteroaryl corresponds in structure to Formula (IX): 94and RA is alkyl; and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (other than tert-butyloxycarbonyl).
- 18. A process according to claim 17, wherein the reaction mixture is heated to greater than about 25° C. before 98% of the nitrogen-protected isonipecotate has reacted.
- 19. A process according to claim 17, wherein RA is ethyl.
- 20. A process according to claim 17, wherein:
R5 is selected from the group consisting of —C(O)—R5A, —C(O)—O—R5B, optionally-substituted allyl, optionally-substituted arylmethyl, and optionally-substituted heteroarylmethyl; and R5A is selected from the group consisting of hydrogen, optionally-substituted alkyl, optionally-substituted aryl, and optionally-substituted heteroaryl; and R5B is selected from the group consisting of optionally-substituted alkyl (except for unsubstituted tert-butyl), optionally-substituted alkenyl, optionally-substituted aryl, optionally-substituted arylalkyl, optionally-substituted heteroaryl, and optionally-substituted heteroarylalkyl.
- 21. A process according to claim 20, wherein:
R5 is selected from the group consisting of —C(O)—R5A, —C(O)—O—R5B, allyl, arylmethyl, and heteroarylmethyl; and R5A is selected from the group consisting of hydrogen, alkyl, aryl, and heteroaryl; and R5B is selected from the group consisting of alkyl (except for tert-butyl), alkenyl, aryl, arylalkyl, heteroaryl, and heteroarylalkyl.
- 22. A process according to claim 20, wherein:
R5 is —C(O)—R5A, and R5A is methyl.
- 23. A process according to claim 20, wherein:
R5 is —C(O)—R5A, and R5A is ethyl.
- 24. A process according to claim 20, wherein:
R5 is —C(O)—R5A, and R5A is phenyl.
- 25. A process according to claim 20, wherein:
R5 is —C(O)—O—R5B, and R5B is selected from the group consisting of isobutyl, trichloroethyl, allyl, phenyl, and benzyl.
- 26. A process according to claim 20, wherein R5 is phenylmethyl.
- 27. A process according to claim 20, wherein:
the substituted pyrazole corresponds in structure to the following formula: 95and the nitrogen-protected isonipecotate corresponds in structure to the following formula: 96and the methyl heteroaryl corresponds in structure to the following formula: 97
- 28. A process for making a ketone, wherein:
the ketone corresponds in structure to Formula (X): 98and the process comprises combining a nitrogen-protected isonipecotate with a methyl heteroaryl; and the nitrogen-protected isonipecotate corresponds in structure to Formula (VIII): 99and the methyl heteroaryl corresponds in structure to Formula (IX): 100and RA is alkyl; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (other than tert-butyloxycarbonyl).
- 29. A process according to claim 28, wherein:
the ketone corresponds in structure to the following formula: 101and the nitrogen-protected isonipecotate corresponds in structure to the following formula: 102and the methyl heteroaryl corresponds in structure to the following formula: 103
- 30. A ketone, wherein:
the ketone corresponds in structure to Formula (X): 104and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (other than tert-butyloxycarbonyl).
- 31. A ketone according to claim 30, wherein the ketone corresponds in structure to Formula (XI):
- 32. A ketone according to claim 30, wherein the ketone corresponds in structure to Formula (XII):
- 33. A ketone according to claim 30, wherein the ketone corresponds in structure to the following formula:
- 34. A process for making a substituted pyrazole, a tautomer of the substituted pyrazole, or a salt of the substituted pyrazole or tautomer, wherein:
the substituted pyrazole corresponds in structure to Formula (I): 108and the process comprises forming a reaction mixture by a process comprising introducing a ketone and a tosylhydrazide into a reactor; and the ketone corresponds in structure to Formula (X): 109and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (other than tert-butyloxycarbonyl).
- 35. A process according to claim 34, wherein the reaction mixture has a pH of less than 7.
- 36. A process according to claim 34, wherein the reaction mixture has a pH of from about 2 to about 5.
- 37. A process according to claim 34, wherein the reaction mixture has a pH of from about 2 to about 4.
- 38. A process according to claim 34, wherein the reaction mixture is maintained at a temperature of from about 40 to about 55° C. for at least about 15 minutes.
- 39. A process according to claim 34, wherein the reaction mixture further comprises a co-solvent.
- 40. A process according to claim 39, wherein the co-solvent comprises methanol.
- 41. A process according to claim 39, wherein the co-solvent comprises ethanol.
- 42. A process according to claim 39, wherein the co-solvent comprises dimethylacetamide.
- 43. A process according to claim 34, wherein R5 is acetyl.
- 44. A process according to claim 43, wherein:
the substituted pyrazole corresponds in structure to the following formula: 110and the ketone corresponds in structure to the following formula: 111
- 45. A process for making a hydrazone or a tautomer thereof, wherein:
the hydrazone corresponds in structure to Formula (II): 112and the process comprises combining a ketone with tosylhydrazide; and the ketone corresponds in structure to Formula (X): 113and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (other than tert-butyloxycarbonyl).
- 46. A process according to claim 45, wherein R5 is acetyl.
- 47. A process according to claim 46, wherein:
the hydrazone corresponds in structure to the following formula: 114and the ketone corresponds in structure to the following formula: 115
- 48. A hydrazone or a tautomer thereof, wherein:
the hydrazone corresponds in structure to Formula (II): 116and one of Y1, Y2, Y3,Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (other than tert-butyloxycarbonyl).
- 49. A hydrazone or tautomer according to claim 48, wherein R5 is acetyl.
- 50. A hydrazone or tautomer according to claim 48, wherein the hydrazone corresponds in structure to Formula (XIII):
- 51. A hydrazone or tautomer according to claim 48, wherein the hydrazone corresponds in structure to the following formula:
- 52. A process for making a substituted pyrazole, a tautomer of the substituted pyrazole, or a salt of the substituted pyrazole or tautomer, wherein:
the substituted pyrazole corresponds in structure to Formula (I): 119and the process comprises combining a hydrazone with a benzoyl halide; and the hydrazone corresponds in structure to Formula (II): 120and the benzoyl halide corresponds in structure to Formula (III): 121and RB is halogen; and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (except tert-butyloxycarbonyl).
- 53. A process according to claim 52, wherein R5 is acetyl.
- 54. A process according to claim 52, wherein the process comprises:
forming a mixture by a process comprising introducing the hydrazone and the benzoyl halide into a reactor, and heating the mixture to a temperature of greater than 50° C.
- 55. A process according to claim 54, wherein:
Y2 is ═C(R4)—, and Y4 and Y5 are each ═C(H)—.
- 56. A process according to claim 55, wherein R4 is hydrogen.
- 57. A process according to claim 56, wherein R3C is hydrogen.
- 58. A process according to claim 57, wherein R3B is hydrogen.
- 59. A process according to claim 58, wherein:
the substituted pyrazole corresponds in structure to the following formula: 122and the hydrazone corresponds in structure to Formula (XIII): 123and the benzoyl halide corresponds in structure to Formula (XIV): 124
- 60. A process according to claim 59, wherein RB is chloro.
- 61. A process according to claim 60, wherein the mixture is heated at a temperature of greater than 50° C. for greater than 30 minutes.
- 62. A process according to claim 61, wherein the mixture is heated at a temperature of greater than 50° C. for at least about 1 hour.
- 63. A process according to claim 60, wherein the mixture is heated to a temperature that is greater than 50° C. and no greater than about 65° C.
- 64. A process according to claim 63, wherein the mixture is heated at a temperature of greater than 50° C. and no greater than about 65° C. for greater than 30 minutes.
- 65. A process according to claim 64, wherein the mixture is heated at a temperature of greater than 50° C. and no greater than about 65° C. for at least about 1 hour.
- 66. A process for making a nitrogen-protected pyrazole, wherein:
the nitrogen-protected pyrazole corresponds in structure to Formula (IV): 125and the process comprises combining a hydrazone with a benzoyl halide; and the hydrazone corresponds in structure to Formula (II): 126and the benzoyl halide corresponds in structure to Formula (III): 127and RB is halogen; and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—;and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (except tert-butyloxycarbonyl).
- 67. A process according to claim 66, wherein R5 is acetyl.
- 68. A process according to claim 66, wherein:
the nitrogen-protected pyrazole corresponds in structure to Formula (XVI): 128and the hydrazone corresponds in structure to Formula (XIII): 129
- 69. A process according to claim 66, wherein:
the nitrogen-protected pyrazole corresponds in structure to the following formula: 130and the hydrazone corresponds in structure to the following formula: 131and the benzoyl halide corresponds in structure to the following formula: 132
- 70. A nitrogen-protected pyrazole, wherein:
the nitrogen-protected pyrazole corresponds in structure to Formula (IV): 133and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (except tert-butyloxycarbonyl).
- 71. A nitrogen-protected pyrazole according to claim 70, wherein R5 is acetyl.
- 72. A nitrogen-protected pyrazole according to claim 70, wherein the nitrogen-protected pyrazole corresponds in structure to Formula (XVI):
- 73. A nitrogen-protected pyrazole according to claim 70, wherein the nitrogen-protected pyrazole corresponds in structure to the following formula:
- 74. A process for making a substituted pyrazole, a tautomer of the substituted pyrazole, or a salt of the substituted pyrazole or tautomer, wherein:
the substituted pyrazole corresponds in structure to Formula (I): 136and the process comprises forming a composition, wherein greater than 30% (by weight) of the composition consists of a nitrogen-protected substituted pyrazole corresponding in structure to Formula (IV): 137and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (except tert-butyloxycarbonyl).
- 75. A process according to claim 74, wherein at least about 50% (by weight) of the composition consists of the nitrogen-protected substituted pyrazole.
- 76. A process according to claim 75, wherein at least about 75% (by weight) of the composition consists of the nitrogen-protected substituted pyrazole.
- 77. A process according to claim 76, wherein at least about 95% (by weight) of the composition consists of the nitrogen-protected substituted pyrazole.
- 78. A process according to claim 77, wherein at least about 97% (by weight) of the composition consists of the nitrogen-protected substituted pyrazole.
- 79. A process according to claim 78, wherein at least about 98.5% (by weight) of the composition consists of the nitrogen-protected substituted pyrazole.
- 80. A process according to claim 74, wherein:
Y2 is ═C(R4)—, and Y4 and Y5 are each ═C(H)—.
- 81. A process according to claim 80, wherein R4 is hydrogen.
- 82. A process according to claim 81, wherein R3C is hydrogen.
- 83. A process according to claim 82, wherein R3B is hydrogen.
- 84. A process according to claim 83, wherein:
the substituted pyrazole corresponds in structure to the following formula: 138and the nitrogen-protected substituted pyrazole corresponds in structure to the following formula: 139
- 85. A process according to claim 84, wherein at least about 75% (by weight) of the composition consists of the nitrogen-protected substituted pyrazole.
- 86. A process according to claim 84, wherein at least about 98.5% (by weight) of the composition consists of the nitrogen-protected substituted pyrazole.
- 87. A process according to claim 84, wherein the formation of the composition comprises:
forming a multi-phase mixture by a process comprising contacting water with a mixture comprising the nitrogen-protected substituted pyrazole, an organic solvent, and an impurity; and removing water containing the impurity from the multi-phase mixture.
- 88. A process according to claim 84, wherein the formation of the composition comprises:
forming a multi-phase mixture by a process comprising contacting an aqueous salt solution with a mixture comprising the nitrogen-protected substituted pyrazole, an organic solvent, and an impurity; and removing water containing the impurity (or a salt thereof) from the multi-phase mixture.
- 89. A process according to claim 88, wherein the aqueous salt solution comprises ammonium and chloride ions.
- 90. A process according to claim 84, wherein the formation of the composition comprises forming a solvent/anti-solvent mixture by a process comprising contacting a mixture comprising the nitrogen-protected substituted pyrazole and an organic solvent with an anti-solvent.
- 91. A process according to claim 90, wherein:
the solvent comprises a solvent selected from the group consisting of tetrahydrofuran and toluene, and the anti-solvent comprises a C1-C6-alcohol.
- 92. A process according to claim 91, wherein the anti-solvent comprises isopropyl alcohol.
- 93. A process according to claim 90, wherein the mixture comprising the nitrogen-protected substituted pyrazole and organic solvent is at a temperature of greater than 25° C. when contacted with the mixture comprising the nitrogen-protected substituted pyrazole and organic solvent.
- 94. A process according to claim 90, wherein the mixture comprising the nitrogen-protected substituted pyrazole and organic solvent is at a temperature of from about 50 to about 60° C. when contacted with the mixture comprising the nitrogen-protected substituted pyrazole and organic solvent.
- 95. A process according to claim 90, wherein the anti-solvent is at a temperature of greater than 25° C. when contacted with the mixture comprising the nitrogen-protected substituted pyrazole and organic solvent.
- 96. A process according to claim 90, wherein the anti-solvent is at a temperature of from about 50 to about 60° C. when contacted with the mixture comprising the nitrogen-protected substituted pyrazole and organic solvent.
- 97. A process according to claim 90, wherein the formation of the composition further comprises heating the solvent/anti-solvent mixture.
- 98. A process according to claim 90, wherein the formation of the composition further comprises heating the solvent/anti-solvent at a temperature of from about 50 to about 60° C.
- 99. A composition, wherein greater than 30% (by weight) of the composition consists of a compound corresponding in structure to Formula (IV):
- 100. A composition according to claim 99, wherein at least about 75% (by weight) of the composition consists of the compound.
- 101. A composition according to claim 99, wherein at least about 98.5% (by weight) of the composition consists of the compound.
- 102. A composition according to claim 99, wherein the compound corresponds in structure to the following formula:
- 103. A composition according to claim 102, wherein at least about 75% (by weight) of the composition consists of the compound.
- 104. A composition according to claim 102, wherein at least about 98.5% (by weight) of the composition consists of the compound.
- 105. A process for making a substituted pyrazole, a tautomer of the substituted pyrazole, or a salt of the substituted pyrazole or tautomer, wherein:
the substituted pyrazole corresponds in structure to Formula (I): 142and the process comprises de-protecting at least one nitrogen of a nitrogen-protected substituted pyrazole; and the nitrogen-protected substituted pyrazole corresponding in structure to Formula (IV): 143and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (except tert-butyloxycarbonyl).
- 106. A process according to claim 105, wherein R5 is acetyl.
- 107. A process according to claim 105, wherein the deprotection occurs in a medium having a pH of greater than 7.
- 108. A process according to claim 107, wherein the deprotection occurs in a medium having a pH of at least about 11.
- 109. A process according to claim 107, wherein:
the de-protection comprises converting the nitrogen-protected substituted pyrazole to a partially de-protected substituted pyrazole in a basic medium, and the partially de-protected substituted pyrazole corresponds in structure to Formula (XVII): 144
- 110. A process according to claim 109, wherein the partially de-protected substituted pyrazole corresponds in structure to Formula (XVIII):
- 111. A process according to claim 107, wherein:
the deprotection comprises converting the nitrogen-protected substituted pyrazole to a double de-protected substituted pyrazole in a basic medium, and the double de-protected substituted pyrazole corresponds in structure to Formula (XV): 146
- 112. A process according to claim 111, wherein the double de-protected substituted pyrazole corresponds in structure to the following formula:
- 113. A process according to claim 105, wherein the deprotection occurs in a medium having a pH of less than 7.
- 114. A process according to claim 113, wherein the deprotection comprises contacting an acid and toluene with the nitrogen-protected substituted pyrazole.
- 115. A process according to claim 114, wherein:
Y2 is ═C(R4)—, and Y4 and Y5 are each ═C(H)—.
- 116. A process according to claim 115, wherein R4 is hydrogen.
- 117. A process according to claim 116, wherein R3C is hydrogen.
- 118. A process according to claim 117, wherein R3B is hydrogen.
- 119. A process according to claim 118, wherein:
the substituted pyrazole corresponds in structure to the following formula: 148and the nitrogen-protected substituted pyrazole corresponds in structure to Formula (XVI): 149
- 120. A process according to claim 105, wherein the deprotection comprises:
forming an acidic mixture by a process comprising contacting the nitrogen-protected substituted pyrazole with an acid into a reactor, and contacting the acidic mixture with a base, and maintaining the temperature of the acidic mixture at less than 65° C. between the formation of the acidic mixture and the addition of the base.
- 121. A process according to claim 120, wherein:
Y2 is ═C(R4)—, and Y4 and Y5 are each ═C(H)—.
- 122. A process according to claim 121, wherein R4 is hydrogen.
- 123. A process according to claim 122, wherein R3C is hydrogen.
- 124. A process according to claim 123, wherein R3B is hydrogen.
- 125. A process according to claim 124, wherein:
the substituted pyrazole corresponds in structure to the following formula: 150and the nitrogen-protected substituted pyrazole corresponds in structure to Formula (XVI): 151
- 126. A process according to claim 105, wherein the deprotection comprises:
forming an acidic mixture by a process comprising contacting the nitrogen-protected substituted pyrazole with an acid, and contacting the acidic mixture with a base to form a mixture having a greater pH, and heating the mixture with the greater pH to a temperature of greater than 25° C.
- 127. A process according to claim 126, wherein the temperature of the mixture with the greater pH is maintained at greater than 25° C. for at least about 1 hour.
- 128. A process according to claim 126, wherein the mixture with the greater pH is heated to a temperature of from about 65 to about 80° C.
- 129. A process according to claim 126, wherein the mixture with the greater pH is heated at from about 65 to about 80° C. for at least about 1 hour.
- 130. A process according to claim 126, wherein:
Y2 is ═C(R4)—, and Y4 and Y5 are each ═C(H)—.
- 131. A process according to claim 130, wherein R4 is hydrogen.
- 132. A process according to claim 131, wherein R3C is hydrogen.
- 133. A process according to claim 132, wherein R3B is hydrogen.
- 134. A process according to claim 133, wherein:
the substituted pyrazole corresponds in structure to the following formula: 152and the nitrogen-protected substituted pyrazole corresponds in structure to Formula (XVI): 153
- 135. A process according to claim 134, wherein the temperature of the mixture with the greater pH is maintained at greater than 25° C. for at least about 1 hour.
- 136. A process according to claim 134, wherein the mixture with the greater pH is heated to a temperature of from about 65 to about 80° C.
- 137. A process according to claim 134, wherein the mixture with the greater pH is heated at from about 65 to about 80° C. for at least about I hour.
- 138. A process for making a substituted pyrazole, a tautomer of the substituted pyrazole, or a salt of the substituted pyrazole or tautomer, wherein:
the substituted pyrazole corresponds in structure to Formula (XV) or Formula (XVIII): 154and the process comprises de-protecting at least one nitrogen of a nitrogen-protected substituted pyrazole; and the nitrogen-protected substituted pyrazole corresponding in structure to Formula (IV): 155and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (except tert-butyloxycarbonyl).
- 139. A process according to claim 138, wherein R5 is acetyl.
- 140. A process according to claim 138, wherein the deprotection occurs in a medium having a pH of greater than 7.
- 141. A process according to claim 140, wherein the deprotection occurs in a medium having a pH of at least about 11.
- 142. A process according to claim 140, wherein:
the deprotection comprises converting the nitrogen-protected substituted pyrazole to the substituted pyrazole in a basic medium, and the substituted pyrazole corresponds in structure to Formula (XVII): 156
- 143. A process according to claim 142, wherein the substituted pyrazole corresponds in structure to Formula (XIX):
- 144. A process according to claim 142, wherein the substituted pyrazole corresponds in structure to Formula (XVIII):
- 145. A process according to claim 144, wherein the substituted pyrazole corresponds in structure to the following formula:
- 146. A process according to claim 140, wherein:
the deprotection comprises converting the nitrogen-protected substituted pyrazole to the substituted pyrazole in a basic medium, and the substituted pyrazole corresponds in structure to Formula (XV): 160
- 147. A process according to claim 146, wherein the substituted pyrazole corresponds in structure to the following formula:
- 148. A process according to claim 138, wherein the deprotection occurs in a medium having a pH of less than 7.
- 149. A substituted pyrazole, a tautomer of the substituted pyrazole, or a salt of the substituted pyrazole or tautomer, wherein:
the substituted pyrazole corresponds in structure to Formula (XVIII): 162and R3A, R3B, and R3C are independently selected from the group consisting of hydrogen, halogen, hydroxy, cyano, amino, alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, and alkoxyalkyl, wherein:
any carbon of the alkyl, aminoalkyl, monoalkylamino, dialkylamino, alkoxy, or alkoxyalkyl optionally is substituted with one or more substituents independently selected from the group consisting of halogen, hydroxy, and cyano; and one of Y1, Y2, Y3, Y4, and Y5 is ═C(R4)—; and one of Y1, Y2, Y3, Y4, and Y5 is ═N—; and three of Y1, Y2, Y3, Y4, and Y5 are independently selected from the group consisting of ═C(H)— and ═N—; and R4 is selected from the group consisting of hydrogen, halogen, cyano, hydroxy, thiol, carboxy, nitro, alkyl, carboxyalkyl, alkylthio, alkylsulfinyl, alkylsulfonyl, alkylcarbonyl, carbocyclyl, carbocyclylalkyl, carbocyclylalkenyl, carbocyclyloxy, carbocyclylalkoxy, carbocyclyloxyalkyl, carbocyclylthio, carbocyclylsulfinyl, carbocyclylsulfonyl, heterocyclylthio, heterocyclylsulfinyl, heterocyclylsulfonyl, carbocyclylalkoxy, carbocyclylheterocyclyl, heterocyclylalkyl, heterocyclyloxy, heterocyclylalkoxy, amino, aminoalkyl, alkylamino, alkenylamino, alkynylamino, carbocyclylamino, heterocyclylamino, aminocarbonyl, alkoxy, alkoxyalkyl, alkenyloxyalkyl, alkoxyalkylamino, alkylaminoalkoxy, alkoxycarbonyl, carbocyclyloxycarbonyl, heterocyclyloxycarbonyl, alkoxycarbonylamino, alkoxycarbocyclylamino, alkoxycarbocyclylalkylamino, aminosulfinyl, aminosulfonyl, alkylsulfonylamino, alkoxyalkoxy, aminoalkoxy, aminoalkylamino, alkylaminoalkylamino, carbocyclylalkylamino, alkylaminoalkylaminoalkylamino, alkylheterocyclylamino, heterocyclylalkylamino, alkylheterocyclylalkylamino, carbocyclylalkylheterocyclylamino, heterocyclylheterocyclylalkylamino, alkoxycarbonylheterocyclylamino, alkylaminocarbonyl, alkylcarbonylamino, hydrazinyl, alkylhydrazinyl, and carbocyclylhydrazinyl, wherein:
any substitutable member of such group optionally is substituted with one or more substituents independently selected from the group consisting of alkyl, alkenyl, hydroxy, halogen, haloalkyl, alkoxy, haloalkoxy, keto, amino, nitro, cyano, alkylsulfonyl, alkylsulfinyl, alkylthio, alkoxyalkyl, carbocyclyloxy, heterocyclyl, and heterocyclylalkoxy; and R5 is a nitrogen-protecting group (except tert-butyloxycarbonyl).
- 150. A substituted pyrazole, tautomer, or salt according to claim 149, wherein the substituted pyrazole corresponds in structure to Formula (XVII):
- 151. A substituted pyrazole, tautomer, or salt according to claim 150, wherein the substituted pyrazole corresponds in structure to Formula (XIX):
- 152. A substituted pyrazole, tautomer, or salt according to claim 150, wherein the substituted pyrazole corresponds in structure to Formula (XVIII):
- 153. A substituted pyrazole, tautomer, or salt according to claim 152, wherein the substituted pyrazole corresponds in structure to the following formula:
- 154. A pharmaceutical composition, wherein the pharmaceutical composition comprises a therapeutically-effective amount of a substituted pyrazole, a tautomer of the substituted pyrazole, or a pharmaceutically-acceptable salt of the substituted pyrazole or tautomer recited in claim 1.
- 155. A pharmaceutical composition, wherein the pharmaceutical composition comprises a therapeutically-effective amount of a substituted pyrazole, a tautomer of the substituted pyrazole, or a pharmaceutically-acceptable salt of the substituted pyrazole or tautomer recited in claim 17.
- 156. A pharmaceutical composition, wherein the pharmaceutical composition comprises a therapeutically-effective amount of a substituted pyrazole, a tautomer of the substituted pyrazole, or a pharmaceutically-acceptable salt of the substituted pyrazole or tautomer recited in claim 34.
- 157. A pharmaceutical composition, wherein the pharmaceutical composition comprises a therapeutically-effective amount of a substituted pyrazole, a tautomer of the substituted pyrazole, or a pharmaceutically-acceptable salt of the substituted pyrazole or tautomer recited in claim 55.
- 158. A pharmaceutical composition, wherein the pharmaceutical composition comprises a therapeutically-effective amount of a substituted pyrazole, a tautomer of the substituted pyrazole, or a pharmaceutically-acceptable salt of the substituted pyrazole or tautomer recited in claim 74.
- 159. A pharmaceutical composition, wherein the pharmaceutical composition comprises a therapeutically-effective amount of a substituted pyrazole, a tautomer of the substituted pyrazole, or a pharmaceutically-acceptable salt of the substituted pyrazole or tautomer recited in claim 105.
CROSS-REFERENCE TO RELATED PATENT APPLICATIONS
[0001] This patent claims priority to U.S. patent application Ser. No. 10/254,445 (filed Sep. 25, 2002), which, in turn, claims priority to U.S. Provisional Application Serial Nos. 60/383,691 (filed May 28, 2002); 60/381,261 (filed May 17, 2002); and 60/324,987 (filed Sep. 25, 2001). The entire text of each of the above applications is incorporated by reference into this application.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60383691 |
May 2002 |
US |
|
60381261 |
May 2002 |
US |
|
60324987 |
Sep 2001 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10254445 |
Sep 2002 |
US |
Child |
10406150 |
Apr 2003 |
US |