IP Library Granted Patent US 8,946,242
Granted Patent B2
US 8,946,242 · App. 14/162,620 · Granted Feb 3, 2015

Spiro[2.4]heptanes for treatment of flaviviridae infections

Inventor: Chung K. Chu (Statham, GA)
Assignee: University of Georgia Research Foundation, Inc.
C07D239/54C07F9/65125A61K31/513A61K45/06A61K31/675C07K9/65586C07F9/65616C07F9/65744C07F9/2458A61K31/404A61K31/53A61K31/7056A61K31/7088A61K38/06A61K38/08A61K38/212A61K39/3955A61K39/42
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Quick Facts
Patent No.
US 8,946,242
App. No.
14/162,620
Granted
Feb 3, 2015
Kind
B2
Abstract

Compounds, methods, and compositions for the treatment of infections in or exposure to humans and other host animals of Flaviviridae viruses, including HCV, that includes the administration of an effective amount of a spiro[2.4]heptane as described herein or a pharmaceutically acceptable salt or prodrug thereof, optionally in a pharmaceutically acceptable carrier, are provided. The spiro[2.4]heptane compounds either possess antiviral activity, or are metabolized to a compound that exhibits such activity.

Claims (78)

1. A spiro[2.4]heptane of the structure:

wherein:

R 1 is a natural or non-natural heteroaryl or heterocyclic moiety;

R 2 is methyl;

R 3 is methyl, F, Cl, N 3 , or OR 7 ;

R 4 is OR 7 , methyl, F, Cl, or N 3 ;

R 5 is H, phosphate, a stabilized phosphate prodrug, phosphoramidate, acyl, alkyl, sulfonate ester, a lipid, a phospholipid, an amino acid, a carbohydrate, a peptide, a cholesterol, or other pharmaceutically acceptable leaving group which when administered in vivo is capable of providing a compound wherein R 5 is H or mono, di, or tri-phosphate; and,

R 7 is H, acyl, phosphate, sulfate, amino acid, peptide, or an oxygen-protecting group;

or its pharmaceutically acceptable salt.

2. A spiro[2.4]heptane of the structure:

wherein:

R 5 is H, phosphate, a stabilized phosphate prodrug, phosphoramidate, acyl, alkyl, sulfonate ester, a lipid, a phospholipid, an amino acid, a carbohydrate, a peptide, a cholesterol, or other pharmaceutically acceptable leaving group which when administered in vivo is capable of providing a compound wherein R 5 is H or mono, di, or tri-phosphate;

B is a natural or non-natural heteroaryl or heterocyclic moiety;

R 6 is methyl;

R 7 is H, acyl, phosphate, sulfate, amino acid, peptide, or an oxygen-protecting group;

or its pharmaceutically acceptable salt.

3. The spiro[2.4]heptane of claim 1 , wherein R 1 is a purine or pyrimidine selected from the group consisting of cytosine, 5-halocytosine, uracil, 5-halouracil, 5-methylcytosine, thymine, adenine, guanine, xanthine, or hypoxanthine.

4. The spiro[2.4]heptane of claim 2 , wherein B is a purine or pyrimidine selected from the group consisting of cytosine, 5-halocytosine, uracil, 5-halouracil, 5-methylcytosine, thymine, adenine, guanine, xanthine, or hypoxanthine.

5. The spiro[2.4]heptane of claim 1 , wherein R 1 is 5-fluorocytosine or 5-fluorouracil.

6. The spiro[2.4]heptane of claim 2 , wherein B is 5-fluorocytosine or 5-fluorouracil.

7. The spiro[2.4]heptane of claim 1 , wherein R 1 is uracil.

8. The spiro[2.4]heptane of claim 2 , wherein B is uracil.

9. The spiro[2.4]heptane of claim 1 , wherein R 1 is cytosine.

10. The spiro[2.4]heptane of claim 2 , wherein B is cytosine.

11. The spiro[2.4]heptane of claim 1 , wherein R 5 is a phosphoramidate.

12. The spiro[2.4]heptane of claim 2 , wherein R 5 is a phosphoramidate.

13. The spiro[2.4]heptane of claim 1 , wherein R 5 is a pharmaceutically acceptable leaving group which when administered in vivo is capable of providing a compound wherein R 5 is H or mono, di, or tri-phosphate.

14. The spiro[2.4]heptane of claim 2 , wherein R 5 is a pharmaceutically acceptable leaving group which when administered in vivo is capable of providing a compound wherein R 5 is H or mono, di, or tri-phosphate.

15. The spiro[2.4]heptane of claim 1 , wherein R 2 is methyl, R 3 is F or OR 7 , and R 4 is OH.

16. The spiro[2.4]heptane of claim 15 , wherein R 1 is uracil.

17. The spiro[2.4]heptane of claim 15 , wherein R 5 is phosphoramidate.

18. The spiro[2.4]heptane of claim 2 , wherein B is a pyrimidine.

19. The spiro[2.4]heptane of claim 2 , wherein R 7 is H, and R 5 is H or phosphoramidate.

20. The spiro[2.4]heptane of claim 19 , wherein B is uracil.

21. The spiro[2.4]heptane of claim 20 , wherein R 5 is phosphoramidate.

22. A spiro[2.4]heptane of the formula:

wherein R 5 is H, phosphate, a stabilized phosphate prodrug, phosphoramidate, acyl, alkyl, sulfonate ester, a lipid, a phospholipid, an amino acid, a carbohydrate, a peptide, a cholesterol, or other pharmaceutically acceptable leaving group which when administered in vivo is capable of providing a compound wherein R 5 is H or mono, di, or tri-phosphate;

R 6 is H;

R 7 is H, acyl, phosphate, sulfate, amino acid, peptide, or an oxygen-protecting group;

B is a pyrimidine, guanine, xanthine, or hypoxanthine;

or its pharmaceutically acceptable salt.

23. The spiro[2.4]heptane of claim 22 , wherein B is a pyrimidine.

24. The spiro[2.4]heptane of claim 23 , wherein the pyrimidine is selected from the group consisting of cytosine, 5-halocytosine, uracil, 5-halouracil, 5-methylcytosine, or thymine.

25. The spiro[2.4]heptane of claim 22 , wherein R 7 is H.

26. The spiro[2.4]heptane of claim 1 , wherein R 3 is F.

27. The spiro[2.4]heptane of claim 22 , wherein R 5 is a phosphoramidate.

28. The spiro[2.4]heptane of claim 22 , wherein R 7 is H and R 5 is a phosphoroamidate.

29. The spiro[2.4]heptane of claim 22 , wherein R 7 is H, B is uracil and R 5 is a phosphoroamidate.

30. A spiro[2.4]heptane of the formula:

wherein

R 1 is a natural or non-natural heteroaryl or heterocyclic moiety;

R 2 is H and R 3 is F;

R 4 is OR 7 ,

R 5 is H, phosphate, a stabilized phosphate prodrug, phosphoramidate, acyl, alkyl, sulfonate ester, a lipid, a phospholipid, an amino acid, a carbohydrate, a peptide, a cholesterol, or other pharmaceutically acceptable leaving group which when administered in vivo is capable of providing a compound wherein R 5 is H or mono, di, or tri-phosphate; and,

R 7 is H, acyl, phosphate, sulfate, amino acid, peptide, or an oxygen-protecting group;

or its pharmaceutically acceptable salt.

31. The spiro[2.4]heptane of claim 26 , wherein R 1 is a purine or pyrimidine.

32. A pharmaceutical composition, comprising an effective amount of the spiro[2.4]heptane of claim 1 , in a pharmaceutically acceptable carrier.

33. A pharmaceutical composition, comprising an effective amount of the spiro[2.4]heptane of claim 2 , in a pharmaceutically acceptable carrier.

34. A pharmaceutical composition, comprising an effective amount of the spiro[2.4]heptane of claim 22 , in a pharmaceutically acceptable carrier.

35. A pharmaceutical composition, comprising an effective amount of the spiro[2.4]heptane of claim 30 , in a pharmaceutically acceptable carrier.

36. A pharmaceutical composition, comprising an effective amount of the spiro[2.4]heptane of claim 31 , in a pharmaceutically acceptable carrier.

37. The pharmaceutical composition of claim 32 , wherein the composition is suitable for oral delivery.

38. The pharmaceutical composition of claim 33 , wherein the composition is suitable for oral delivery.

39. The pharmaceutical composition of claim 34 , wherein the composition is suitable for oral delivery.

40. The pharmaceutical composition of claim 35 , wherein the composition is suitable for oral delivery.

41. A method for the treatment of a hepatitis C infection in a host in need thereof, comprising administering an effective amount of a spiro[2.4]heptane of claim 1 , optionally in a pharmaceutically acceptable carrier.

42. A method for the treatment of a hepatitis C infection in a host in need thereof, comprising administering an effective amount of a spiro[2.4]heptane of claim 2 , optionally in a pharmaceutically acceptable carrier.

43. A method for the treatment of a hepatitis C infection in a host in need thereof, comprising administering an effective amount of a spiro[2.4]heptane of claim 22 , optionally in a pharmaceutically acceptable carrier.

44. A method for the treatment of a hepatitis C infection in a host in need thereof, comprising administering an effective amount of a spiro[2.4]heptane of claim 30 , optionally in a pharmaceutically acceptable carrier.

45. The method of claim 44 , further comprising administering the spiro[2.4]heptane in combination with another anti-HCV agent.

46. The method of claim 41 , further comprising administering the spiro[2.4]heptane in combination with another anti-HCV agent.

47. The method of claim 42 , further comprising administering the spiro[2.4]heptane in combination with another anti-HCV agent.

48. The method of claim 43 , further comprising administering the spiro[2.4]heptane in combination with another anti-HCV agent.

49. The method of claim 48 , wherein the additional anti-HCV agent is selected from the group consisting of a protease inhibitor; an NS5A inhibitor; another NS5B polymerase inhibitor; a non-substrate (allosteric) inhibitor; interferon alfa-2a, which may be pegylated; ribavirin; a helicase inhibitor; an antisense oligodeoxynucleotide (S-ODN); an aptamer; a nuclease-resistant ribozyme; iRNA; an antibody to HCV; a partial antibody to HCV; and a domain antibody to HCV.

50. The method of claim 45 , wherein the additional anti-HCV agent is selected from the group consisting of a protease inhibitor; an NS5A inhibitor; another NS5B polymerase inhibitor; a non-substrate (allosteric) inhibitor; interferon alfa-2a, which may be pegylated; ribavirin; a helicase inhibitor; an antisense oligodeoxynucleotide (S-ODN); an aptamer; a nuclease-resistant ribozyme; iRNA; an antibody to HCV; a partial antibody to HCV; and a domain antibody to HCV.

51. The method of claim 46 , wherein the additional anti-HCV agent is selected from the group consisting of a protease inhibitor; an NS5A inhibitor; another NS5B polymerase inhibitor; a non-substrate (allosteric) inhibitor; interferon alfa-2a, which may be pegylated; ribavirin; a helicase inhibitor; an antisense oligodeoxynucleotide (S-ODN); an aptamer; a nuclease-resistant ribozyme; iRNA; an antibody to HCV; a partial antibody to HCV; and a domain antibody to HCV.

52. The method of claim 47 , wherein the additional anti-HCV agent is selected from the group consisting of a protease inhibitor; an NS5A inhibitor; another NS5B polymerase inhibitor; a non-substrate (allosteric) inhibitor; interferon alfa-2a, which may be pegylated; ribavirin; a helicase inhibitor; an antisense oligodeoxynucleotide (S-ODN); an aptamer; a nuclease-resistant ribozyme; iRNA; an antibody to HCV; a partial antibody to HCV; and a domain antibody to HCV.

Assignments (1)
CONFIRMATORY LICENSE Recorded Feb 27, 2014
From: UNIVERSITY OF GEORGIA
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 032364/0217 →
Continuity (5)
Division 13767042 · Feb 14, 2013
Provisional Application 61598524 · Feb 14, 2012
Provisional Application 61615975 · Mar 27, 2012
Provisional Application 61615989 · Mar 27, 2012
Related Publication 20140140958A1 · May 22, 2014