Claims
- 1. A compound of Formula I:
- 2. The compound of claim 1, wherein Y is SO2.
- 3. The compound of claim 1, wherein Z is an amide or hydrazine.
- 4. The compound of claim 1, wherein:
(a) R1 is hydrogen; (b) R4′, R5′, R6′, R7′, are independently selected from the group consisting of hydrogen, halogen, —NO2, —CN, —OR2, —NR2R2, —NHSO2—C1-3alkyl, —NHCO—C1-3alkyl, oxime (—CH═N—OH), hydrazine (—NH—NH2), C1-3 alkyl and alkenyl optionally substituted with one or more of —OH, —SR, C(═W)H, C(═W)OH, halogen, NR2R2, C1-3 alkoxy, and C1-3 thioether; wherein any three of R4′, R5′, R6′, or R7′ simultaneously must be hydrogen; (c) R2″, R3″, R4″, R5″, and R6″, are independently selected from the group consisting of hydrogen, halogen, —NO2, —CN, —OR2, —NHSO2—C1-3alkyl, —NHCO—C1-3alkyl, oxime, hydrazine, —C1-5 alkyl and alkenyl optionally substituted with one or more of —OH, C(═W)H, C(═W)OH, halogen, NR R2, C1-5 thioether, or C1-5 alkoxy, —C1-5 alkoxy, —OH, and —NR2R2; (d) Z is selected from the group consisting of —C(═W)N(R3)C(═W)NH2; —C(═W)—NH—CH(—C[═W]NH2)(—CH2—C[═W]—O—CH2-aryl); —C(═W)—NH—CH(—C[═W]NH2)(—CH2—C[═W]—O—CH2-aralkyl); —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)OH; —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)NH2; —C(═W)NHR2—C(═W)NH—R2—C(═W)OH; —C(═W)NHR2—C(═W)NH—R2—C(═W)NH2; —C(═W)NHNH2; —C(═W)NH—CH2—C(═W)NHNH2; —C(═W)NH—CH(R2)—C(═W)NH2; —C(═W)NR2—C(═W)R3; —C(═W)SR; —C(═W)SR2; optionally substituted or unsubstituted, branched or unbranched C4-12 alkylene, alkenylene or alkynylene; —C(═W)—NH—N(R2)(R3); —C(═W)R2—CH2—R2—CH(CH3)—C(═W)—OH; CH(CH3)C(═W)—OH; —C(═W)—NH—N(R2)—CH(R2)—C(═W)R2; —C(═W)—N(R2)—C(═W)R3; —C(═W)CH═CH—C(═W)R2; —C(═W)R2(CH)2—C(═W)R2; —C(═W)—R2—CH2-A-C(═W)R2; —C(═W)R2—C(═W)—OR3; —C(═W)—R2—NH—C(═W)OR3; —C(═W)R3—NH—C(═W)—R2; —C(═W)—N(R8)—N(R2)—N(R2)(R3); —C(═W)—N(R2)—N(R2)—C(═W)R3; —C(═W)—N(N[R2] [R3])—N(N[R2][R3])R3; —C(═W)R2—C(═W)NH2; —C(═W)R2—SR3; —C(═W)—CH(R2)—C(═NH)R2; —C(═W)—NH—(CH2)p—NH—C(═W)-A-C(═W)—R2; —C(═W)—R2—(CH2)p—C(═W)-A-R3—C(═W)—NH2; —C(═W)—NH—CH(—[CH2]p—NH—C[═W]R2)—(—C [═W]—NH2); —C(═W)—NH—CH(—[CH2]p—C[═W]—R2)(—C [═W]—NH2); —C(═W)—NH—CH(—[CH2]p—R3)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—OH)(—C[═W]—NH2); —C(═W)—NH—CH(—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—NH—C[═W]O—CH2—R3)(—C[═W]—NH2); —C(═W)—R2—CH(—R2—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—CH—R2—OH)—(—C[═W]—NH2); —C(═W)—NH—CH(—R2)(—C[═W]—NH2); —C(═W)—NH—CH(—R2—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—R2—SCH3)—(—C[═W]—NH2); —C(═W)—NH—NH—CH(R3)—C(═W)R2; —C(═W)NHR2(—R3)—C(═W)NH2; —C(═W)NHR2(—R2)—C(═W)NH—R2—C(═W)OH; —C(═W)—NHR2(—R3)—C(═W)NH—R2NH2; —C(═W)NHR2(—R3)—C(═W)NH—R3; —C(═W)—R2—(CH2)p-A-C(═W)—NH2; —C(═W)NH—R; —C(═W)—NH—R2—R8—R3; —C(═W)—NH—NH—R2(R3)—R8—NH2; —C(═W)—NH—R3(R8—NH2); —C(═W)—NH—R2R3(R1—NH2); —C(═W)—NH—R3(R2R8—NH2); and —C(═W)—NH—CH—(—C[═N]—NH2)(—C[═W]—NH2); (e) Y is —S(O)n— or —O—, in which n is 0, 1 or 2; (f) W is O, S, —NH or —NR2; (g) each R2 is independently hydrogen or an optionally substituted or unsubstituted, branched or unbranched lower alkyl, alkenyl, alkynyl, alkylene, alkenylene or alkynylene; acyl; hydroxy; alkoxy; substituted or unsubstituted aryl; substituted or unsubstituted aralkyl; —CF3; —NH2; —NH—; —CH2—S(O)nR3; —C(alkyl)2—S(O)nR3; —CH(alkyl)-S(O)nR3; —CH(alkyl)NH2; —C(alkyl)2—NH2; —CH2—NH(alkyl); —C(alkyl)2—NH(alkyl); —CH(alkyl)-NH(alkyl); —CH2—NHR3; —CH2N(alkyl)R3; —CH2N(alkyl)R3; —CH(alkyl)-NHR3; —CH(alkyl)-N(alkyl)R3; —C(alkyl)2—NHR3; —C(alkyl)2—N(alkyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkyl; —CH(alkyl)-C(═W)H; —CH(alkyl)-C(═W)alkyl; —(CH2)pOH; —C(alkyl)2—C(═W)H; —C(alkyl)2—C(═W)alkyl; —CH(alkenyl)-S(O)nR3; —CH2NH2; —CH(alkenyl)NH2; —C(alkenyl)2—NH2; —CH2—NH(alkenyl); —C(alkenyl)2—NH(alkenyl); —CH(alkenyl)-NH(alkenyl); —CH2—NHR3; —CH2—N(alkenyl)R3; —CH(alkenyl)-NHR3; —CH(alkenyl)-N(alkenyl)R3; —C(alkenyl)2—NHR3; —C(alkenyl)2—N(alkenyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkenyl; —CH(alkenyl)—C(═W)H; —CH(alkenyl)-C(═W)alkenyl; —C(alkenyl)2—C(═W)H; —C(alkenyl)2—C(═W)alkenyl; —CH(alkynyl)-S(O)nR3; —CH(alkynyl)-NH2; —C(alkynyl)2—NH2; —CH2—NH(alkynyl); —C(alkynyl)2—NH(alkynyl); —CH(alkynyl)-NH(alkynyl); —CH2—NHR3; —CH2—N(alkynyl)R3; —CH(alkynyl)-NHR3; —CH(alkynyl)-N(alkynyl)R3; —C(alkynyl)2—NHR3; —C(alkynyl)2—N(alkynyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkynyl; —CH(alkynyl)-C(═W)H; —CH(alkynyl)-C(═W)alkynyl; —C(alkynyl)2—C(═W)H; —C(alkynyl)2—C(═W)alkynyl; —CH(alkoxy)-S(O)nR3; —CH(alkoxy)-NH2; —C(alkoxy)2—NH2; —CH2—NH(alkoxy); —C(alkoxy)2—NH(alkoxy); —CH(alkoxy)-NH(alkoxy); —CH2—NHR3; —CH2—N(alkoxy)R3; —CH(alkoxy)-NHR3; —CH(alkoxy)-N(alkoxy)R3; —C(alkoxy)2—NHR3; —C(alkoxy)2—N(alkoxy)R3; —CH2—C(═W)H; —CH2C(═W)-alkoxy; —CH(alkoxy)-C(═W)H; —CH(alkoxy)-C(═W)alkoxy; —C(alkoxy)2—C(═W)H; —C(alkoxy)2—C(═W)alkoxy; —CH(CF3)—S(O)nR3; —CH(CF3)—NH2; —C(CF3)2—NH2; —CH2—NH(CF3); —C(CF3)2—NH(CF3); —CH(CF3)—NH(CF3); —CH2—NHR3; —CH2—N(CF3)R3; —CH(CF3)—NHR3; —CH(CF3)—N(CF3)R3; —C(CF3)2—NHR3; —C(CF3)2—N(CF3)R3; —CH2C(═W)H; —CH2—C(═W)CF3; —CH(CF3)—C(═W)H; —CH(CF3)—C(═W)CF3; —C(CF3)2—C(═W)H; —C(CF3)2—C(═W)CF3; —CH(NH)—S(O)nR3; —CH2—NH—NH2; —CH(NH2)—NH(NH2); —CH2—NHR3; —CH2—N(NH)R3; —CH(NH2)—NHR3; —CH(NH2)—N(NH2)R3; —CH2—C(═W)NH2; —CHR2—C(═W)H; —CH2—C(═W)H; —CH(NH2)—C(═W)NH2; —CH(NH2)—NH2; —CH2—NH(NH2); —CH2—NHR3; —CH2—N(NH2)R3; —CH(NH2)—NHR3; —CH(NH2)—N(NH2)R3; —CH2—C(═W)H; —CH2—C(═W)NH2; —CH(NH2)—C(═W)H; or —CH(NH2)—C(═W)NH2; (h) each R3 is independently hydrogen; optionally substituted or unsubstituted, branched or unbranched alkyl, alkenyl, alkynyl, alkylene, alkenylene or alkynylene; CF3; CN; amino; —C(R22)(R22)—S(O)n—NH2; —C(R22)(R22)—S(O)n—CF3; —C(R22)(R22)—NH2, —C(R22)(R22)—NHR22, —C(R22)(R22)—NR22(alkyl); —C(R22)(R22)—NR22(alkenyl); —C(R22)(R22)—NR2(alkynyl); —C(R22)(R22)—NR22 (CF3); and —C(R22)(R22)—C(═W)R22; optionally substituted or unsubstituted aryl and arylene; optionally substituted or unsubstituted heterocycle; optionally substituted or unsubstituted cycloalkyl; optionally substituted or unsubstituted alkylaryl, optionally substituted or unsubstituted alkylheterocycle, optionally substituted or unsubstituted aralkyl and aralkylene, optionally substituted or unsubstituted heterocycle-alkyl; (i) each R22 is independently hydrogen or an optionally substituted or unsubstituted, branched or unbranched lower alkyl, alkenyl, alkynyl; acyl; hydroxy; alkoxy; substituted or unsubstituted aryl; substituted or unsubstituted arylene; substituted or unsubstituted aralkyl; amine, alkylamine, alkylsulfonyl, —CF3; —NH2; alkylacyl; amide; alkylamide; (j) A is a disubstituted spacer selected from the group consisting of alkylene which optionally may have one or more heteroatoms, aryl, cycloalkyl or heterocyclyl functions in the chain; alkenylene which optionally may have one or more heteroatoms, aryl, cycloalkyl or heterocyclyl functions in the chain; and optionally substituted aryl, cycloalkyl, and heterocyclyl; (k) R is selected from the group consisting of H; aryl; alkoxy; optionally substituted, branched or unbranched alkyl, alkenyl, alkynyl, cycloalkyl, heterocyclyl, and aralkyl; (l) each n is independently 0, 1 or 2; (m) each p is independently 0, 1, 2, 3, 4 or 5.
- 5. The compound of claim 4, wherein Y is SO2.
- 6. The compound of claim 4, wherein Z is an amide or hydrazine.
- 7. A compound of the structure:
- 8. A compound of the structure:
- 9. A compound of the structure:
- 10. A compound of the structure:
- 11. A compound of the structure:
- 12. A compound of the structure:
- 13. A compound of the structure:
- 14. A pharmaceutical composition for the treatment or prophylaxis of an HIV infection in a host comprising an effective anti-HIV treatment amount of a compound of Formula I:
- 15. The pharmaceutical composition of claim 14, wherein Y is SO2.
- 16. The pharmaceutical composition of claim 14, wherein Z is an amide or hydrazine.
- 17. The pharmaceutical composition of claim 14, wherein:
(a) R1 is hydrogen; (b) R4′, R5, R6, R7′, are independently selected from the group consisting of hydrogen, halogen, —NO2, —CN, —OR2, —NR2R2, —NHSO2—C1-3alkyl, —NHCO—C1-3alkyl, oxime (—CH═N—OH), hydrazine (—NH—NH2), C1-3 alkyl and alkenyl optionally substituted with one or more of —OH, —SR, C(═W)H, C(═W)OH, halogen, NR2R2, C1-3 alkoxy, and C1-3 thioether; wherein any three of R4′, R5′, R6′, or R7′ simultaneously must be hydrogen; (c) R2″, R3″, R4″, R5″, and R6″, are independently selected from the group consisting of hydrogen, halogen, —NO2, —CN, —OR2, —NHSO2—C1-3alkyl, —NHCO—C1-3alkyl, oxime, hydrazine, —C1-5 alkyl and alkenyl optionally substituted with one or more of —OH, C(═W)H, C(═W)OH, halogen, NR2R2, C1-5 thioether, or C1-5 alkoxy, —C1-5 alkoxy, —OH, and —NR2R2; (d) Z is selected from the group consisting of —C(═W)N(R3)C(═W)NH2; —C(═W)—NH—CH(—C[═W]NH2)(—CH2—C[═W]—O—CH2-aryl); —C(═W)—NH—CH(—C[═W]NH2)(—CH2—C[═W]—O—CH2-aralkyl); —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)OH; —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)NH2; —C(═W)NHR2—C(═W)NH—R2—C(═W)OH; —C(═W)NHR2—C(═W)NH—R2—C(═W)NH2; —C(═W)NHNH2; —C(═W)NH—CH2—C(═W)NHNH2; —C(═W)NH—CH(R2)—C(═W)NH2; —C(═W)NR2—C(═W)R3; —C(═W)SR; —C(═W)SR2; optionally substituted or unsubstituted, branched or unbranched C4-12 alkylene, alkenylene or alkynylene; —C(═W)—NH—N(R2)(R3); —C(═W)R2—CH2—R2—CH(CH3)—C(═W)—OH; CH(CH3)C(═W)—OH; —C(═W)—NH—N(R2)—CH(R2)—C(═W)R2; —C(═W)—N(R2)—C(═W)R3; —C(═W)CH═CH—C(═W)R2; —C(═W)R2(CH)2—C(═W)R2; —C(═W)—R2—CH2-A-C(═W)R2; —C(═W)R2—C(═W)—OR3; —C(═W)—R2—NH—C(═W)OR3; —C(═W)R3—NH—C(═W)—R2; —C(═W)—N(R8)—N(R2)—N(R2)(R3); —C(═W)—N(R2)—N(R2)—C(═W)R3; —C(═W)—N(N[R2] [R3])—N(N[R2] [R3])R3; —C(═W)R2—C(═W)NH2; —C(═W)R2—SR3; —C(═W)—CH(R2)—C(═NH)R2; —C(═W)—NH—(CH2)p—NH—C(═W)-A-C(═W)—R2; —C(═W)—R2—(CH2)p—C(═W)-A-R3—C(═W)—NH2; —C(═W)—NH—CH(—[CH2]p—NH—C[═W]R2)— (—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—C[═W]—R2)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—R3)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—OH)(—C[═W]—NH2); —C(═W)—NH—CH(—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—NH—C[═W]O—CH2—R3)(—C[═W]—NH2); —C(═W)—R2—CH(—R2—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—CH—R2—OH)—(—C[═W]—NH2); —C(═W)—NH—CH(—R2)(—C[═W]—NH2); —C(═W)—NH—CH(—R2—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—R2—SCH3)-(—C[═W]—NH2); —C(═W)—NH—NH—CH(R3)—C(═W)R2; —C(═W)NHR2(—R3)—C(═W)NH2; —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)OH; —C(═W)—NHR2(—R3)—C(═W)NH—R2NH2; —C(═W)NHR2(—R3)—C(═W)NH—R3; —C(═W)—R2—(CH2)p-A-C(═W)—NH2; —C(═W)NH—R3; —C(═W)—NH—R2—R8—R3; —C(═W)—NH—NH—R2(R3)—R8—NH2; —C(═W)—NH—R3(R8—NH2); —C(═W)—NH—R2R3(R8—NH2); —C(═W)—NH—R3(R2R8—NH2); and —C(═W)—NH—CH—(—C[═N]—NH2)(—C[═W]—NH2); (e) Y is —S(O)n— or —O—, in which n is 0, 1 or 2; (f) W is O, S, —NH or —NR2; (g) each R2 is independently hydrogen or an optionally substituted or unsubstituted, branched or unbranched lower alkyl, alkenyl, alkynyl, alkylene, alkenylene or alkynylene; acyl; hydroxy; alkoxy; substituted or unsubstituted aryl; substituted or unsubstituted aralkyl; —CF3; —NH2; —NH—; —CH2—S(O)nR3; —C(alkyl)2—S(O)nR3; —CH(alkyl)-S(O)nR3; —CH(alkyl)NH2; —C(alkyl)2—NH2; —CH2—NH(alkyl); —C(alkyl)2—NH(alkyl); —CH(alkyl)-NH(alkyl); —CH2NHR3; —CH2N(alkyl)R3; —CH2N(alkyl)R3; —CH(alkyl)-NHR3; —CH(alkyl)-N(alkyl)R3; —C(alkyl)2—NHR3; —C(alkyl)2—N(alkyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkyl; —CH(alkyl)-C(═W)H; —CH(alkyl)-C(═W)alkyl; —(CH2)pOH; —C(alkyl)2—C(═W)H; —C(alkyl)2—C(═W)alkyl; —CH(alkenyl)-S(O)nR3; —CH2NH2; —CH(alkenyl)NH2; —C(alkenyl)2—NH2; —CH2—NH(alkenyl); —C(alkenyl)2—NH(alkenyl); —CH(alkenyl)-NH(alkenyl); —CH2—NHR3; —CH2—N(alkenyl)R3; —CH(alkenyl)-NHR3; —CH(alkenyl)-N(alkenyl)R3; —C(alkenyl)2—NHR3; —C(alkenyl)2—N(alkenyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkenyl; —CH(alkenyl)-C(═W)H; —CH(alkenyl)-C(═W)alkenyl; —C(alkenyl)2—C(═W)H; —C(alkenyl)2—C(═W)alkenyl; —CH(alkynyl)-S(O)nR3; —CH(alkynyl)-NH2; —C(alkynyl)2—NH2; —CH2—NH(alkynyl); —C(alkynyl)2—NH(alkynyl); —CH(alkynyl)-NH(alkynyl); —CH2—NHR3; —CH2—N(alkynyl)R3; —CH(alkynyl)-NHR3; —CH(alkynyl)-N(alkynyl)R3; —C(alkynyl)2—NHR3; —C(alkynyl)2—N(alkynyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkynyl; —CH(alkynyl)-C(═W)H; —CH(alkynyl)-C(═W)alkynyl; —C(alkynyl)2—C(═W)H; —C(alkynyl)2—C(═W)alkynyl; —CH(alkoxy)-S(O)nR3; —CH(alkoxy)-NH2; —C(alkoxy)2—NH2; —CH2—NH(alkoxy); —C(alkoxy)2—NH(alkoxy); —CH(alkoxy)-NH(alkoxy); —CH2—NHR3; —CH2—N(alkoxy)R3; —CH(alkoxy)-NHR3; —CH(alkoxy)-N(alkoxy)R3; —C(alkoxy)2—NHR3; —C(alkoxy)2—N(alkoxy)R3; —CH2—C(═W)H; —CH2C(═W)-alkoxy; —CH(alkoxy)-C(═W)H; —CH(alkoxy)-C(═W)alkoxy; —C(alkoxy)2—C(═W)H; —C(alkoxy)2—C(═W)alkoxy; —CH(CF3)—S(O)nR3; —CH(CF3)—NH2; —C(CF3)2—NH2; —CH2—NH(CF3); —C(CF3)2—NH(CF3); —CH(CF3)—NH(CF3); —CH2—NHR3; —CH2—N(CF3)R3; —CH(CF3)—NHR3; —CH(CF3)—N(CF3)R3; —C(CF3)2—NHR3; —C(CF3)2—N(CF3)R3; —CH2C(═W)H; —CH2—C(═W)CF3; —CH(CF3)—C(═W)H; —CH(CF3)—C(═W)CF3; —C(CF3)2—C(═W)H; —C(CF3)2—C(═W)CF3; —CH(NH)—S(O)nR3; —CH2—NH—NH2; —CH(NH2)—NH(NH2); —CH2—NHR3; —CH2—N(NH)R3; —CH(NH2)—NHR3; —CH(NH2)—N(NH2)R3; —CH2—C(═W)NH2; —CHR2—C(═W)H; —CH2—C(═W)H; —CH(NH2)—C(═W)NH2; —CH(NH2)—NH2; —CH2—NH(NH2); —CH2—NHR3; —CH2—N(NH2)R3; —CH(NH2)—NHR3; —CH(NH2)—N(NH2)R3; —CH2—C(═W)H; —CH2—C(═W)NH2; —CH(NH2)—C(═W)H; or —CH(NH2)—C(═W)NH2; (h) each R3 is independently hydrogen; optionally substituted or unsubstituted, branched or unbranched alkyl, alkenyl, alkynyl, alkylene, alkenylene or alkynylene; CF3; CN; amino; —C(R22)(R22)—S(O)n—NH2; —C(R22)(R22)—S(O)n—CF3; —C(R22)(R22)—NH2, —C(R22)(R22)—NHR22, C(R22)(R22)—NR22(alkyl); —C(R22)(R22)—NR22(alkenyl); —C(R12)(R22)—NR22 (alkynyl); C(R22)(R22)—NR22(CF3); and —C(R22)(R22)—C(═W)R22; optionally substituted or unsubstituted aryl and arylene; optionally substituted or unsubstituted heterocycle; optionally substituted or unsubstituted cycloalkyl; optionally substituted or unsubstituted alkylaryl, optionally substituted or unsubstituted alkylheterocycle, optionally substituted or unsubstituted aralkyl and aralkylene, optionally substituted or unsubstituted heterocycle-alkyl; (i) each R22 is independently hydrogen or an optionally substituted or unsubstituted, branched or unbranched lower alkyl, alkenyl, alkynyl; acyl; hydroxy; alkoxy; substituted or unsubstituted aryl; substituted or unsubstituted arylene; substituted or unsubstituted aralkyl; amine, alkylamine, alkylsulfonyl, —CF3; —NH2; alkylacyl; amide; alkylamide; (j) A is a disubstituted spacer selected from the group consisting of alkylene which optionally may have one or more heteroatoms, aryl, cycloalkyl or heterocyclyl functions in the chain; alkenylene which optionally may have one or more heteroatoms, aryl, cycloalkyl or heterocyclyl functions in the chain; and optionally substituted aryl, cycloalkyl, and heterocyclyl; (k) R is selected from the group consisting of H; aryl; alkoxy; optionally substituted, branched or unbranched alkyl, alkenyl, alkynyl, cycloalkyl, heterocyclyl, and aralkyl; (l) each n is independently 0, 1 or 2; (m) each p is independently 0, 1, 2, 3, 4 or 5.
- 18. The pharmaceutical composition of claim 17, wherein Y is SO2.
- 19. The pharmaceutical composition of claim 17, wherein Z is an amide or hydrazine.
- 20. A pharmaceutical composition for the treatment or prophylaxis of an HIV infection in a host comprising an effective anti-HIV treatment amount of a compound of the structure:
- 21. A pharmaceutical composition for the treatment or prophylaxis of an HIV infection in a host comprising an effective anti-HIV treatment amount of a compound of the structure:
- 22. A pharmaceutical composition for the treatment or prophylaxis of an HIV infection in a host comprising an effective anti-HIV treatment amount of a compound of the structure:
- 23. A pharmaceutical composition for the treatment or prophylaxis of an HIV infection in a host comprising an effective anti-HIV treatment amount of a compound of the structure:
- 24. A pharmaceutical composition for the treatment or prophylaxis of an HIV infection in a host comprising an effective anti-HIV treatment amount of a compound of the structure:
- 25. A pharmaceutical composition for the treatment or prophylaxis of an HIV infection in a host comprising an effective anti-HIV treatment amount of a compound of the structure:
- 26. A pharmaceutical composition for the treatment or prophylaxis of an HIV infection in a host comprising an effective anti-HIV treatment amount of a compound of the structure:
- 27. A method for the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of Formula I:
- 28. The method of claim 27, wherein Y is SO2.
- 29. The method of claim 27, wherein Z is an amide or hydrazine.
- 30. The method of claim 27, wherein:
(a) R1 is hydrogen; (b) R4′, R5′, R6′, R7′, are independently selected from the group consisting of hydrogen, halogen, —NO2, —CN, —OR2, —NR2R2, —NHSO2—C1-3alkyl, —NHCO—C1-3alkyl, oxime (—CH═N—OH), hydrazine (—NH—NH2), C1-3 alkyl and alkenyl optionally substituted with one or more of —OH, —SR, C(═W)H, C(═W)OH, halogen, NR2R2, C1-3 alkoxy, and C1-3 thioether; wherein any three of R4′, R5′, R6′, or R7′ simultaneously must be hydrogen; (c) R2″, R3″, R4″, R5″, and R6″, are independently selected from the group consisting of hydrogen, halogen, —NO2, —CN, —OR2, —NHSO2—C1-3alkyl, —NHCO—C1-3alkyl, oxime, hydrazine, —C1-5 alkyl and alkenyl optionally substituted with one or more of —OH, C(═W)H, C(═W)OH, halogen, NR2R2, C1-5 thioether, or C1-5 alkoxy, —C1-5 alkoxy, —OH, and —NR2R2; (d) Z is selected from the group consisting of —C(═W)N(R3)C(═W)NH2; —C(═W)—NH—CH(—C[═W]NH2)(—CH2—C[═W]—O—CH2-aryl); —C(═W)—NH—CH(—C[═W]NH2)(—CH2—C[═W]—O—CH2-aralkyl); —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)OH; —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)NH2; —C(═W)NHR2—C(═W)NH—R2—C(═W)OH; —C(═W)NHR2—C(═W)NH—R2—C(═W)NH2; —C(═W)NHNH2; —C(═W)NH—CH2—C(═W)NHNH2; —C(═W)NH—CH(R2)—C(═W)NH2; —C(═W)NR2—C(═W)R3; —C(═W)SR; —C(═W)SR2; optionally substituted or unsubstituted, branched or unbranched C4-12 alkylene, alkenylene or alkynylene; —C(═W)—NH—N(R2)(R3); —C(═W)R2—CH2—R2—CH(CH3)—C(═W)—OH; CH(CH3)C(═W)—OH; —C(═W)—NH—N(R2)—CH(R2)—C(═W)R2; —C(═W)—N(R2)—C(═W)R3; —C(═W)CH═CH—C(═W)R2; —C(═W)R2(CH)2—C(═W)R2; —C(═W)—R2—CH2-A-C(═W)R2; —C(═W)R2—C(═W)—OR3; —C(═W)—R2—NH—C(═W)OR3; —C(═W)R3—NH—C(═W)—R2; —C(═W)—N(R8)—N(R2)—N(R2)(R3); —C(═W)—N(R2)—N(R2)—C(═W)R3; —C(═W)—N(N[R2][R])—N(N[R2][R3])R3; —C(—W)R2—C(═W)NH2; —C(═W)R2—SR3; —C(═W)—CH(R2)—C(—NH)R2; —C(═W)—NH—(CH2)p—NH—C(═W)-A-C(═W)—R2; —C(═W)—R2—(CH2)p—C(═W)-A-R3—C(═W)—NH2; —C(═W)—NH—CH(—[CH2]p—NH—C[═W]R2)— (—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—C[═W]—R2)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—R3)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—OH)(—C[═W]—NH2); —C(═W)—NH—CH(—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—NH—C[═W]O—CH2—R3)(—C[═W]—NH2); —C(═W)—R2—CH(—R2—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—CH—R2—OH)—(—C[═W]—NH2); —C(═W)—NH—CH(—R2)(—C[═W]—NH2); —C(═W)—NH—CH(—R2—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—R2—SCH3)—(—C[═W]—NH2); —C(═W)—NH—NH—CH(R3)—C(═W)R2; —C(═W)NHR2(—R3)—C(═W)NH2; —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)OH; —C(═W)—NHR2(—R3)—C(═W)NH—R2NH2; —C(═W)NHR2(—R3)—C(═W)NH—R3; —C(═W)—R2—(CH2)p-A-C(═W)—NH2; —C(═W)NH—R3; —C(═W)—NH—R2—R8—R3; —C(═W)—NH—NH—R2(R3)—R1—NH2; —C(═W)—NH—R3(R8—NH2); —C(═W)—NH—R2R3(R8—NH2); —C(═W)—NH—R3(R2R8—NH2); and —C(═W)—NH—CH—(—C[═N]—NH2)(—C [═W]—NH2); (e) Y is —S(O)n— or —O—, in which n is 0, 1 or 2; (f) W is O, S, —NH or —NR2; (g) each R2 is independently hydrogen or an optionally substituted or unsubstituted, branched or unbranched lower alkyl, alkenyl, alkynyl, alkylene, alkenylene or alkynylene; acyl; hydroxy; alkoxy; substituted or unsubstituted aryl; substituted or unsubstituted aralkyl; —CF3; —NH2; —NH—; —CH2—S(O)nR3; —C(alkyl)2—S(O)nR3; —CH(alkyl)-S(O)nR3; —CH(alkyl)NH2; —C(alkyl)2—NH2; —CH2—NH(alkyl); —C(alkyl)2—NH(alkyl); —CH(alkyl)-NH(alkyl); —CH2—NHR3; —CH2N(alkyl)R3; —CH2N(alkyl)R3; —CH(alkyl)-NHR3; —CH(alkyl)-N(alkyl)R3; —C(alkyl)2—NHR3; —C(alkyl)2—N(alkyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkyl; —CH(alkyl)-C(═W)H; —CH(alkyl)-C(═W)alkyl; —(CH2)pOH; —C(alkyl)2—C(═W)H; —C(alkyl)2—C(═W)alkyl; —CH(alkenyl)-S(O)nR3; —CH2NH2; —CH(alkenyl)NH2; —C(alkenyl)2—NH2; —CH2—NH(alkenyl); —C(alkenyl)2—NH(alkenyl); —CH(alkenyl)-NH(alkenyl); —CH2—NHR3; —CH2—N(alkenyl)R3; —CH(alkenyl)-NHR3; —CH(alkenyl)-N(alkenyl)R3; —C(alkenyl)2—NHR3; —C(alkenyl)2—N(alkenyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkenyl; —CH(alkenyl)-C(═W)H; —CH(alkenyl)-C(═W)alkenyl; —C(alkenyl)2—C(═W)H; —C(alkenyl)2—C(═W)alkenyl; —CH(alkynyl)-S(O)R3; —CH(alkynyl)-NH2; —C(alkynyl)2—NH2; —CH2—NH(alkynyl); —C(alkynyl)2—NH(alkynyl); —CH(alkynyl)-NH(alkynyl); —CH2—NHR3; —CH2—N(alkynyl)R3; —CH(alkynyl)-NHR3; —CH(alkynyl)-N(alkynyl)R3; —C(alkynyl)2—NHR3; —C(alkynyl)2—N(alkynyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkynyl; —CH(alkynyl)-C(═W)H; —CH(alkynyl)-C(═W)alkynyl; —C(alkynyl)2—C(═W)H; —C(alkynyl)2—C(═W)alkynyl; —CH(alkoxy)-S(O)nR3; —CH(alkoxy)-NH2; —C(alkoxy)2—NH2; —CH2—NH(alkoxy); —C(alkoxy)2—NH(alkoxy); —CH(alkoxy)-NH(alkoxy); —CH2—NHR3; —CH2—N(alkoxy)R3; —CH(alkoxy)-NHR3; —CH(alkoxy)-N(alkoxy)R3; —C(alkoxy)2—NHR3; —C(alkoxy)2—N(alkoxy)R3; —CH2—C(═W)H; —CH2C(═W)-alkoxy; —CH(alkoxy)-C(═W)H; —CH(alkoxy)-C(═W)alkoxy; —C(alkoxy)2—C(═W)H; —C(alkoxy)2—C(═W)alkoxy; —CH(CF3)—S(O)nR3; —CH(CF3)—NH2; —C(CF3)2—NH2; —CH2—NH(CF3); —C(CF3)2—NH(CF3); —CH(CF3)—NH(CF3); —CH2—NHR3; —CH2—N(CF3)R3; —CH(CF3)—NHR3; —CH(CF3)—N(CF3)R3; —C(CF3)2—NHR3; —C(CF3)2—N(CF3)R3; —CH2C(═W)H; —CH2—C(═W)CF3; —CH(CF3)—C(═W)H; —CH(CF3)—C(═W)CF3; —C(CF3)2—C(═W)H; —C(CF3)2—C(═W)CF3; —CH(NH)—S(O)nR3; —CH2—NH—NH2; —CH(NH2)—NH(NH2); —CH2—NHR3; —CH2—N(NH)R3; —CH(NH2)—NHR3; —CH(NH2)—N(NH2)R3; —CH2—C(═W)NH2; —CHR2—C(═W)H; —CH2—C(═W)H; —CH(NH2)—C(═W)NH2; —CH(NH2)—NH2; —CH2—NH(NH2); —CH2—NHR3; —CH2—N(NH2)R3; —CH(NH2)—NHR3; —CH(NH2)—N(NH2)R3; —CH2—C(═W)H; —CH2—C(═W)NH2; —CH(NH2)—C(═W)H; or —CH(NH2)—C(═W)NH2; (h) each R3 is independently hydrogen; optionally substituted or unsubstituted, branched or unbranched alkyl, alkenyl, alkynyl, alkylene, alkenylene or alkynylene; CF3; CN; amino; —C(R22)(R22)—S(O)n—NH2; —C(R22)(R22)—S(O)n—CF3; —C(R22)(R22)—NH2, —C(R22)(R22)—NHR22, C(R22)(R22)—NR22(alkyl); —C(R22)(R22)—NR22(alkenyl); —C(R22)(R22)—NR22(alkynyl); —C(R22)(R22)—NR22(CF3); and —C(R22)(R22)—C(═W)R22; optionally substituted or unsubstituted aryl and arylene; optionally substituted or unsubstituted heterocycle; optionally substituted or unsubstituted cycloalkyl; optionally substituted or unsubstituted alkylaryl, optionally substituted or unsubstituted alkylheterocycle, optionally substituted or unsubstituted aralkyl and aralkylene, optionally substituted or unsubstituted heterocycle-alkyl; (i) each R22 is independently hydrogen or an optionally substituted or unsubstituted, branched or unbranched lower alkyl, alkenyl, alkynyl; acyl; hydroxy; alkoxy; substituted or unsubstituted aryl; substituted or unsubstituted arylene; substituted or unsubstituted aralkyl; amine, alkylamine, alkylsulfonyl, —CF3; —NH2; alkylacyl; amide; alkylamide; (j) A is a disubstituted spacer selected from the group consisting of alkylene which optionally may have one or more heteroatoms, aryl, cycloalkyl or heterocyclyl functions in the chain; alkenylene which optionally may have one or more heteroatoms, aryl, cycloalkyl or heterocyclyl functions in the chain; and optionally substituted aryl, cycloalkyl, and heterocyclyl; (k) R is selected from the group consisting of H; aryl; alkoxy; optionally substituted, branched or unbranched alkyl, alkenyl, alkynyl, cycloalkyl, heterocyclyl, and aralkyl; (l) each n is independently 0, 1 or 2; (m) each p is independently 0, 1, 2, 3, 4 or 5.
- 31. The method of claim 30, wherein Y is SO2.
- 32. The method of claim 30, wherein Z is an amide or hydrazine.
- 33. A method for the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 34. A method for the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 35. A method for the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 36. A method for the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 37. A method for the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 38. A method for the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 39. A method for the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 40. The method of any one of claims 27-39, wherein the host is a human.
- 41. The method of any one of claims 27-39, wherein the HIV infection is resistant to one or more other anti-HIV agent.
- 42. The method of claim 41, wherein the host is a human.
- 43. The method of any one of claims 27-39, wherein the HIV infection is resistant to a reverse transcriptase inhibitor.
- 44. The method of claim 43, wherein the host is a human.
- 45. The method of claim 43, wherein the resistance to one or more reverse transcriptase inhibitors is due to a reverse transcriptase mutation.
- 46. The method of claim 45, wherein the host is a human.
- 47. The method of claim 45, wherein the mutation is lysine 103→asparagine and/or tyrosine 181→cysteine.
- 48. The method of claim 47, wherein the host is a human.
- 49. A method for salvage therapy in the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of Formula I:
- 50. The method of claim 49, wherein Y is SO2.
- 51. The method of claim 49, wherein Z is an amide or hydrazine.
- 52. The method of claim 49, wherein:
(a) R1 is hydrogen; (b) R4′, R5′, R6′, R7′, are independently selected from the group consisting of hydrogen, halogen, —NO2, —CN, —OR2, —NR2R2, —NHSO2—C1-3alkyl, —NHCO—C1-3alkyl, oxime (—CH═N—OH), hydrazine (—NH—NH2), C1-3 alkyl and alkenyl optionally substituted with one or more of —OH, —SR, C(═W)H, C(═W)OH, halogen, NR2R2, C1-3 alkoxy, and C1-3 thioether; wherein any three of R4′, R5′, R6′, or R7′ simultaneously must be hydrogen; (c) R2″, R3″, R4″, R5″, and R6″, are independently selected from the group consisting of hydrogen, halogen, —NO2, —CN, —OR2, —NHSO2—C1-3alkyl, —NHCO—C1-3alkyl, oxime, hydrazine, —C1-5 alkyl and alkenyl optionally substituted with one or more of —OH, C(═W)H, C(═W)OH, halogen, NR2R2, C1-5 thioether, or C1-5 alkoxy, —C1-5 alkoxy, —OH, and —NR2R2; (d) Z is selected from the group consisting of —C(═W)N(R3)C(═W)NH2; —C(═W)—NH—CH(—C[═W]NH2)(—CH2—C[═W]—O—CH2-aryl); —C(═W)—NH—CH(—C[═W]NH2)(—CH2—C[═W]—O—CH2-aralkyl); —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)OH; —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)NH2; —C(═W)NHR2—C(═W)NH—R2—C(═W)OH; —C(═W)NHR2—C(═W)NH—R2—C(═W)NH2; —C(═W)NHNH2; —C(═W)NH—CH2—C(═W)NHNH2; —C(═W)NH—CH(R2)—C(═W)NH2; —C(═W)NR2—C(═W)R3; —C(═W)SR; —C(═W)SR2; optionally substituted or unsubstituted, branched or unbranched C4-12 alkylene, alkenylene or alkynylene; —C(═W)—NH—N(R2)(R3); —C(═W)R2—CH2—R2—CH(CH3)—C(═W)—OH; CH(CH3)C(═W)—OH; —C(═W)—NH—N(R2)—CH(R2)—C(═W)R2; —C(═W)—N(R2)—C(═W)R3; —C(═W)CH═CH—C(═W)R2; —C(═W)R2(CH)2—C(═W)R2; —C(═W)—R2—CH2-A-C(═W)R2; —C(═W)R2—C(═W)—OR3; —C(═W)—R2—NH—C(═W)OR3; —C(═W)R3—NH—C(═W)—R2; —C(═W)—N(R8)—N(R2)—N(R2)(R3); —C(═W)—N(R2)—N(R2)—C(═W)R3; —C(═W)—N(N[R2][R3])—N(N[R2][R3])R3; —C(═W)R2—C(═W)NH2; —C(═W)R2—SR3; —C(═W)—CH(R2)—C(═NH)R2; —C(═W)—NH—(CH2)p—NH—C(═W)-A-C(═W)—R2; —C(═W)—R2—(CH2)p—C(═W)-A-R3—C(═W)—NH2; —C(═W)—NH—CH(—[CH2]p—NH—C[═W]R2)— (—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—C[═W]—R2)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—R3)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—OH)(—C[═W]—NH2); —C(═W)—NH—CH(—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—[CH2]p—NH—C[═W]O—CH2—R3)(—C[═W]—NH2); —C(═W)—R2—CH(—R2—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—CH—R2—OH)—(—C[═W]—NH2); —C(═W)—NH—CH(—R2)(—C[═W]—NH2); —C(═W)—NH—CH(—R2—C[═W]—NH2)(—C[═W]—NH2); —C(═W)—NH—CH(—R2—SCH3)-(—C[═W]—NH2); —C(═W)—NH—NH—CH(R3)—C(═W)R2; —C(═W)NHR2(—R3)—C(═W)NH2; —C(═W)NHR2(—R3)—C(═W)NH—R2—C(═W)OH; —C(═W)—NHR2(—R3)—C(═W)NH—R2NH2; —C(═W)NHR2(—R3)—C(═W)NH—R3; —C(═W)—R2—(CH2)p-A-C(═W)—NH2; —C(═W)NH—R3; —C(═W)—NH—R2—R8—R3; —C(═W)—NH—NH—R2(R3)—R8—NH2; —C(═W)—NH—R3(R8—NH2); —C(=═W)—NH—R2R3(R1—NH2); —C(═W)—NH—R3(R2R8—NH2); and —C(═W)—NH—CH—(—C[═N]—NH2)(—C[═W]—NH2); (e) Y is —S(O)n— or —O—, in which n is 0, 1 or 2; (f) W is O, S, —NH or —NR2; (g) each R2 is independently hydrogen or an optionally substituted or unsubstituted, branched or unbranched lower alkyl, alkenyl, alkynyl, alkylene, alkenylene or alkynylene; acyl; hydroxy; alkoxy; substituted or unsubstituted aryl; substituted or unsubstituted aralkyl; —CF3; —NH2; —NH—; —CH2—S(O)nR3; —C(alkyl)2—S(O)nR3; —CH(alkyl)-S(O)nR3; —CH(alkyl)NH2; —C(alkyl)2—NH2; —CH2—NH(alkyl); —C(alkyl)2—NH(alkyl); —CH(alkyl)-NH(alkyl); —CH2—NHR3; —CH2N(alkyl)R3; —CH2N(alkyl)R3; —CH(alkyl)-NHR3; —CH(alkyl)-N(alkyl)R3; —C(alkyl)2—NHR3; —C(alkyl)2—N(alkyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkyl; —CH(alkyl)-C(═W)H; —CH(alkyl)-C(═W)alkyl; —(CH2)pOH; —C(alkyl)2—C(═W)H; —C(alkyl)2—C(═W)alkyl; —CH(alkenyl)-S(O)nR3; —CH2NH2; —CH(alkenyl)NH2; —C(alkenyl)2—NH2; —CH2—NH(alkenyl); —C(alkenyl)2—NH(alkenyl); —CH(alkenyl)-NH(alkenyl); —CH2—NHR3; —CH2—N(alkenyl)R3; —CH(alkenyl)-NHR3; —CH(alkenyl)-N(alkenyl)R3; —C(alkenyl)2—NHR3; —C(alkenyl)2—N(alkenyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkenyl; —CH(alkenyl)-C(═W)H; —CH(alkenyl)-C(═W)alkenyl; —C(alkenyl)2—C(═W)H; —C(alkenyl)2—C(═W)alkenyl; —CH(alkynyl)-S(O)nR3; —CH(alkynyl)-NH2; —C(alkynyl)2—NH2; —CH2—NH(alkynyl); —C(alkynyl)2—NH(alkynyl); —CH(alkynyl)-NH(alkynyl); —CH2—NHR3; —CH2—N(alkynyl)R3; —CH(alkynyl)-NHR3; —CH(alkynyl)-N(alkynyl)R3; —C(alkynyl)2—NHR3; —C(alkynyl)2—N(alkynyl)R3; —CH2—C(═W)H; —CH2—C(═W)alkynyl; —CH(alkynyl)-C(═W)H; —CH(alkynyl)-C(═W)alkynyl; —C(alkynyl)2—C(═W)H; —C(alkynyl)2—C(═W)alkynyl; —CH(alkoxy)-S(O)nR3; —CH(alkoxy)-NH2; —C(alkoxy)2—NH2; —CH2—NH(alkoxy); —C(alkoxy)2—NH(alkoxy); —CH(alkoxy)-NH(alkoxy); —CH2—NHR3; —CH2—N(alkoxy)R3; —CH(alkoxy)-NHR3; —CH(alkoxy)-N(alkoxy)R3; —C(alkoxy)2—NHR3; —C(alkoxy)2—N(alkoxy)R3; —CH2—C(═W)H; —CH2C(═W)-alkoxy; —CH(alkoxy)-C(═W)H; —CH(alkoxy)-C(═W)alkoxy; —C(alkoxy)2—C(═W)H; —C(alkoxy)2—C(═W)alkoxy; —CH(CF3)—S(O)nR3; —CH(CF3)—NH2; —C(CF3)2—NH2; —CH2—NH(CF3); —C(CF3)2—NH(CF3); —CH(CF3)—NH(CF3); —CH2—NHR3; —CH2—N(CF3)R3; —CH(CF3)—NHR3; —CH(CF3)—N(CF3)R3; —C(CF3)2—NHR3; —C(CF3)2—N(CF3)R3; —CH2C(═W)H; —CH2—C(═W)CF3; —CH(CF3)—C(═W)H; —CH(CF3)—C(═W)CF3; —C(CF3)2—C(═W)H; —C(CF3)2—C(═W)CF3; —CH(NH)—S(O)nR3; —CH2—NH—NH2; —CH(NH2)—NH(NH2); —CH2—NHR3; —CH2—N(NH)R3; —CH(NH2)—NHR3; —CH(NH2)—N(NH2)R3; —CH2—C(═W)NH2; —CHR2—C(═W)H; —CH2—C(═W)H; —CH(NH2)—C(═W)NH2; —CH(NH2)—NH2; —CH2—NH(NH2); —CH2—NHR3; —CH2—N(NH2)R3; —CH(NH2)—NHR3; —CH(NH2)—N(NH2)R3; —CH2—C(═W)H; —CH2—C(═W)NH2; —CH(NH2)—C(═W)H; or —CH(NH2)—C(═W)NH2; (h) each R3 is independently hydrogen; optionally substituted or unsubstituted, branched or unbranched alkyl, alkenyl, alkynyl, alkylene, alkenylene or alkynylene; CF3; CN; amino; —C(R22)(R22)—S(O)n—NH2; —C(R22)(R22)—S(O)n—CF3; —C(R22)(R22)—NH2, —C(R22)(R22)—NHR22, C(R22)(R22)—NR22(alkyl); —C(R2)(R2)—NR22(alkenyl); —C(R22)(R2)—NR (alkynyl); —C(R22)(R22)—NR(CF3); and —C(R22)(R22)—C(═W)R22; optionally substituted or unsubstituted aryl and arylene; optionally substituted or unsubstituted heterocycle; optionally substituted or unsubstituted cycloalkyl; optionally substituted or unsubstituted alkylaryl, optionally substituted or unsubstituted alkylheterocycle, optionally substituted or unsubstituted aralkyl and aralkylene, optionally substituted or unsubstituted heterocycle-alkyl; (i) each R22 is independently hydrogen or an optionally substituted or unsubstituted, branched or unbranched lower alkyl, alkenyl, alkynyl; acyl; hydroxy; alkoxy; substituted or unsubstituted aryl; substituted or unsubstituted arylene; substituted or unsubstituted aralkyl; amine, alkylamine, alkylsulfonyl, —CF3; —NH2; alkylacyl; amide; alkylamide; (j) A is a disubstituted spacer selected from the group consisting of alkylene which optionally may have one or more heteroatoms, aryl, cycloalkyl or heterocyclyl functions in the chain; alkenylene which optionally may have one or more heteroatoms, aryl, cycloalkyl or heterocyclyl functions in the chain; and optionally substituted aryl, cycloalkyl, and heterocyclyl; (k) R is selected from the group consisting of H; aryl; alkoxy; optionally substituted, branched or unbranched alkyl, alkenyl, alkynyl, cycloalkyl, heterocyclyl, and aralkyl; (l) each n is independently 0, 1 or 2; (m) each p is independently 0, 1, 2, 3, 4 or 5.
- 53. The method of claim 52, wherein Y is SO2.
- 54. The method of claim 52, wherein Z is an amide or hydrazine.
- 55. A method for salvage therapy in the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 56. A method for salvage therapy in the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 57. A method for salvage therapy in the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 58. A method for salvage therapy in the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 59. A method for salvage therapy in the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 60. A method for salvage therapy in the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 61. A method for salvage therapy in the treatment or prophylaxis of an HIV infection in a host comprising administering to said host an effective anti-HIV treatment amount of a compound of the structure:
- 62. The method of any one of claims 49-61 wherein the host is a human.
CROSS-REFERENCE OF THE INVENTION
[0001] This application claims priority to U.S. Provisional Application No. 60/401,915, filed on Aug. 7, 2002, the disclosure of which is herein incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60401915 |
Aug 2002 |
US |