Claims
- 1. A method for treating transplant rejection in a mammal comprising administering to said mammal an effective amount of a compound of formula
- 2. A method for treating transplant rejection in a mammal comprising administering to said mammal an effective amount of a compound of formula
- 3. The method of claim 2, wherein:
Z is selected from the group consisting of C1-6alkyl, hydroxyC1-6alkyl, C1-6alkoxyC1-6alkyl, and carboxyC1-6alkyl, wherein all may optionally be substituted by one or more R5; R5 is independently selected from the group selected from hydroxy, amino, halo, COOH, COOR7, CH(OH)R7, NHR7, NR7R7, C(O)NH2, C(O)NHR7, CONR7R7, OSO3H, SO3H, SO2NHR7, SO2NR7R7, P(O)(OH)OR7, P(O)(OH)R7, P(O)HR7, P(OR7)2, P(O)R7(OR7), OPO3H, PO3H2, and hydroxymethyl, wherein when possible, all may be optionally substituted by one or more R6; R6 is independently selected from the group consisting of hydroxy, C1-10alkyl, C1-10alkoxy, acyloxy, halo, nitro, amino, cyano, haloC1-10alkyl, C1-10alkylamino, diC1-10alkylamino, acyl, and acyloxy; R7 is independently selected from the group consisting of C1-6alkyl, C2-10alkenyl, C2-6alkynyl, C1-6alkoxy, C1-6alkoxycarbonylC1-6alkyl, carboxyC1-6alkyl, and C1-6alkylcarboxyC1-6alkyl, wherein all may be optionally substituted by one or more R8; and R8 is independently selected from the group consisting of hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, amino, cyano, and carboxy.
- 4. The method of claim 3, wherein:
Z is C1-6alkyl, optionally substituted by one or more R5; R5 is independently selected from the group consisting of halo, COOH, COOR7, CONH2, CONHR7, CONR7R7, and amino; R7 is independently selected from the group consisting of C1-6alkyl, carboxyC1-6alkyl, C1-6alkoxycarbonylC1-6alkyl, and C1-6alkylcarboxyC1-6alkyl, wherein all may be optionally substituted by one or more R8; and R8 is independently selected from the group consisting of hydroxy, halo, amino, and carboxy.
- 5. The method of claim 4, wherein:
Z is C1-6alkyl, optionally substituted by one or more R5; and R5 is COOH.
- 6. The method of claim 5, wherein the compound or its pharmaceutically acceptable salt is selected from the group consisting of
- 7. The method of claim 6, wherein the compound or its pharmaceutically acceptable salt is
- 8. The method of claim 2, wherein:
Z is an alditol, optionally substituted with one or more R5; and R5 is independently selected from the group consisting of halo, amino, carboxy, diC1-6alkylamino, and C1-6alkylamino.
- 9. The method of claim 8, wherein the compound or its pharmaceutically acceptable salt is selected from the group consisting of
- 10. The method of claim 2, wherein:
Z is a carbohydrate or a carbohydrate lactone, optionally substituted by one or more R5; and R5 is independently selected from the group consisting of halo, amino, carboxy, diC1-6alkylamino, acyloxy, and C1-6alkylamino.
- 11. The method of claim 10, wherein the compound or its pharmaceutically acceptable salt is selected form the group consisting of
- 12. The method of claim 2, wherein:
Z is selected from the group consisting of C1-6alkyl, C1-6alkoxyC1-6alkyl, Cl 6alkylaminoC1-6alkyl, C1-6dialkylaminoC1-6alkyl, and aminoC1-6alkyl, wherein all may optionally be substituted by one or more R5; R5 is independently selected from the group selected from hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, nitro, amino, cyano, C1-6alkylamino, diC1-6alkylamino, acyl, acyloxy, COOH, COOR7, OC(O)R7, CH(OH)R7, NHR7, NR7R7, C(O)NH2, C(O)NHR7, CONR7R7, NHC(O)O—R7, OSO3H, SO3H, SO2NHR7, SO2NR7R7, P(O)(OH)OR7, P(O)HR7, P(O)(OH)R7)2, P(O)R7(OR7), OPO3H, PO3H2, hydroxymethyl, and cyclic phosphate, wherein when possible, all may be optionally substituted by one or more R6; R6 is independently selected from the group consisting of hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, amino, cyano, haloC1-6alkyl, C1-6alkylamino, diC1-6alkylamino, acyl, and acyloxy; R7 is independently selected from the group consisting of C1-6alkyl, C2-10loalkenyl, C2-10alkynyl, C1-10alkoxy, C1-10alkoxycarbonylC1-10alkyl, carboxyC1-6alkyl, C1-6alkylcarboxyC1-6alkyl, and heteroaryl, wherein all may be optionally substituted by one or more R8; and R8 is independently selected from the group consisting of hydroxy, halo, amino, and carboxy
- 13. The method of claim 12, wherein the compound or its pharmaceutically acceptable salt is selected form the group consisting of
- 14. The method of claim 2, wherein:
Z is selected from the group consisting of C1-6alkyl, aryl, heteroaryl, C1-6alkaryl, arylC1-6alkyl, heteroarylC1-6alkyl, heterocycle, and heterocyclC1-6alkyl, wherein all may optionally be substituted by one or more R5; R5 is independently selected from the group selected from hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, nitro, amino, cyano, C1-6alkylamino, diC1-6alkylamino, acyl, acyloxy, COOH, COOR7, OC(O)R7, CH(OH)R7, NHR7, NR7R7, C(O)NH2, C(O)NHR7, CONR7R7, NHC(O)O—R7, OSO3H, SO3H, SO2NHR7, SO2NR7R7, P(O)(OH)OR7, P(O)HR7, P(O)(OH)R7)2, P(O)R7(OR7), OPO3H, PO3H2, hydroxymethyl, and cyclic phosphate, wherein when possible, all may be optionally substituted by one or more R6; R6 is independently selected from the group consisting of hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, amino, cyano, haloC1-6alkyl, C1-6alkylamino, diC1-6alkylamino, acyl, and acyloxy; R7 is independently selected from the group consisting of C1-6alkyl, C2-10alkenyl, C2-10alkynyl, C1-10alkoxy, C1-10alkoxycarbonylC1-10alkyl, aryl, carboxyC1-6alkyl, C1-6alkylcarboxyC1-6alkyl, C1-6alkylcarboxyC1-6aryl, heterocycle, heterocyclC1-6alkyl, and heteroaryl, wherein all may be optionally substituted by one or more R8; and R8 is independently selected from the group consisting of hydroxy, halo, amino, and carboxy; wherein two R7 groups may come together to form a 4 to 7 membered ring.
- 15. A method for treating transplant rejection in a mammal comprising administering to said mammal an effective amount of a compound of formula
- 16. The method of claim 15, wherein:
Z is selected from the group consisting of C1-6alkyl, hydroxyC1-6alkyl, C1-6alkoxyC1-6alkyl, and carboxyC1-6alkyl, wherein all may optionally be substituted by one or more R5; R5 is independently selected from the group selected from hydroxy, amino, halo, COOH, COOR7, CH(OH)R7, NHR7, NR7R7, C(O)NH2, C(O)NHR7, CONR7R7, OSO3H, SO3H, SO2NHR7, SO2NR7R7, P(O)(OH)OR7, P(O)(OH)R7, P(O)HR7, P(OR7)2, P(O)R7(OR7), OPO3H, PO3H2, and hydroxymethyl, wherein when possible, all may be optionally substituted by one or more R6; R7 is independently selected from the group consisting of C1-6alkyl, C2-10alkenyl, C2-6alkynyl, C1-6alkoxy, C1-6alkoxycarbonylC1-6alkyl, carboxyC1-6alkyl, and C1-6alkylcarboxyC1-6alkyl, wherein all may be optionally substituted by one or more R8; and R8 is independently selected from the group consisting of hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, amino, cyano, and carboxy.
- 17. The method of claim 16, wherein:
Z is C1-6alkyl, optionally substituted by one or more R5; R5 is independently selected from the group consisting of halo, COOH, COOR7, CONH2, CONHR7, CONR7R7, and amino; R7 is independently selected from the group consisting of C1-6alkyl, carboxyC1-6alkyl, and C1-6alkylcarboxyC1-6alkyl, wherein all may be optionally substituted by one or more R8; and R8 is independently selected from the group consisting of hydroxy, halo, amino, and carboxy.
- 18. The method of claim 17, wherein:
Z is C1-6alkyl, optionally substituted by one or more R5; and R5 is COOH.
- 19. The method of claim 18, wherein the compound or its pharmaceutically acceptable salt is selected from the group consisting of
- 20. The method of claim 19, wherein the compound or its pharmaceutically acceptable salt is
- 21. The method of claim 15, wherein:
Z is selected from the group consisting of C1-6alkyl, C1-6alkoxyC1-6alkyl, C1-6alkylaminoC1-6alkyl, and aminoC1-6alkyl, wherein all may optionally be substituted by one or more R5; R5 is independently selected from the group selected from hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, nitro, amino, cyano, C1-6alkylamino, diC1-6alkylamino, acyl, acyloxy, COOH, COOR7, OC(O)R7, CH(OH)R7, NHR7, NR7R7, C(O)NH2, C(O)NHR7, CONR7R7, NHC(O)O—R7, OSO3H, SO3H, SO2NHR7, SO2NR7R7, P(O)(OH)OR7, P(O)HR7, P(O)(OH)R7, P(OR7)2, P(O)R7(OR7), OPO3H, PO3H2, hydroxymethyl, and cyclic phosphate, wherein when possible, all may be optionally substituted by one or more R6; R6 is independently selected from the group consisting of hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, amino, cyano, haloC1-6alkyl, C1-6alkylamino, diC1-6alkylamino, acyl, and acyloxy; R7 is independently selected from the group consisting of C1-6alkyl, C2-10loalkenyl, C2-10alkynyl, C1-10alkoxy, C1-10alkoxycarbonylC1-10alkyl, carboxyC1-6alkyl, C1-6alkylcarboxyC1-6alkyl, and heteroaryl, wherein all may be optionally substituted by one or more R8; and R8 is independently selected from the group consisting of hydroxy, halo, amino, and carboxy
- 22. The method of claim 21, wherein the compound or its pharmaceutically acceptable salt is
- 23. The method of claim 15, wherein:
Z is selected from the group consisting of C1-6alkyl, aryl, heteroaryl, C1-6alkaryl, arylC1-6alkyl, heteroarylC1-6alkyl, heterocycle, and heterocycIC1-6alkyl, wherein all may optionally be substituted by one or more R5; R5 is independently selected from the group selected from hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, nitro, amino, cyano, C1-6alkylamino, diC1-6alkylamino, acyl, acyloxy, COOH, COOR7, OC(O)R7, CH(OH)R7, NHR7, NR7R7, C(O)NH2, C(O)NHR7, CONR7R7, NHC(O)O—R7, OSO3H, SO3H, SO2NHR7, SO2NR7R7, P(O)(OH)OR7, P(O)HR7, P(O)(OH)R7, P(OR7)2, P(O)R7(OR7), OPO3H, PO3H2, hydroxymethyl, and cyclic phosphate, wherein when possible, all may be optionally substituted by one or more R6; R6 is independently selected from the group consisting of hydroxy, C1-6alkyl, C1-6alkoxy, acyloxy, halo, amino, cyano, haloC1-6alkyl, C1-6alkylamino, diC1-6alkylamino, acyl, and acyloxy; R7 is independently selected from the group consisting of C1-6alkyl, C2-10alkenyl, C2-10alkynyl, C1-10alkoxy, C1-10alkoxycarbonylC1-10alkyl, aryl, carboxyC1-6alkyl, C1-6alkylcarboxyC1-6alkyl, C1-6alkylcarboxyC1-6aryl, heterocycle, heterocyclC1-6alkyl, and heteroaryl, wherein all may be optionally substituted by one or more R8; and R8 is independently selected from the group consisting of hydroxy, halo, amino, and carboxy; wherein two R7 groups may come together to form a 4 to 7 membered ring.
- 24. A method for treating transplant rejection in a mammal comprising administering to said mammal in combination a compound of claim 1, claim 2, or claim 15 and one or more compound selected from the group consisting of cyclosporin, tacrolimus (FK506), sirolimus (rapamycin), methotrexate, mycophenolic acid (mycophenolate mofetil), everolimus, azathiprine, steroids and NOX-100, said combination being administered in an amount effective to inhibit or modulate transplant rejection.
- 25. A compound of the formula
COMPOUNDS AND METHODS FOR TREATING TRANSPLANT REJECTION
[0001] This application claims priority to U.S. patent application Ser. No. 09/370,046, filed Aug. 6, 1999, which is a continuation of U.S. patent application Ser. No. 09/079,213, now U.S. Pat. No. 6,147,250, which claims priority to U.S. patent application Ser. No. 60/047,020 filed May 14, 1997. This application also claims priority, as a continuation-in-part, to U.S. patent application Ser. No. 09/815,262, filed Mar. 21, 2001, and to U.S. patent application Ser. No. 60/191,046, filed Mar. 21, 2000.
Provisional Applications (2)
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Number |
Date |
Country |
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60047020 |
May 1997 |
US |
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60191046 |
Mar 2000 |
US |
Continuations (2)
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Number |
Date |
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Parent |
09079213 |
May 1998 |
US |
Child |
09370046 |
Aug 1999 |
US |
Parent |
09815262 |
Mar 2001 |
US |
Child |
09370046 |
Aug 1999 |
US |
Continuation in Parts (1)
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Date |
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Parent |
09370046 |
Aug 1999 |
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Child |
10036307 |
Oct 2001 |
US |