IP Library Patent Application 10870505
Patent Application
App. No. 10/870,505

Taxane prodrugs

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Quick Facts
Patent No.
US None
App. No.
10/870,505
Abstract

Taxane prodrugs comprise a taxane joined by a hydrolyzable bond to one or more oligomers that comprise a polyethylene glycol moiety. The oligomer preferably further comprises a salt-forming moiety.

Claims (44)

1 - 28 . (canceled)

29 . A polyethylene glycol polymer comprising a terminal hydroxyl group available for binding to a drug to form a prodrug, said polyethylene glycol polymer further comprising a formula selected from the group consisting of:

wherein n is from 1 to 7, m is from 2 to 25, and R is hydrogen or a lower alkyl;

wherein n is from 1 to 6, p is from 2 to 8, m is from 2 to 25, and R is hydrogen or a lower alkyl;

wherein n is from 1 to 6, m and r are each independently from 2 to 25, and R is hydrogen or a lower alkyl;

wherein n is from 1 to 6, p is from 2 to. 8, m is from 2 to 25, R is hydrogen or lower alkyl;

wherein n is from 1 to 6, p is from 2 to 8, m is from 2 to 25, R is hydrogen or lower alkyl, and X − is a negative ion;

wherein n is from 1 to 6, p is from 2 to 8, m is from 2 to 25, and R 1 and R 2 are each independently hydrogen or a lower alkyl;

wherein n is from 1 to 6, p is from 2 to 8, and m is from 2 to 25;

wherein n and p are each independently from 1 to 6, m is from 2 to 25 and X + is a positive ion;

wherein n is from 1 to 5, m is from 2 to 25, X is a negative ion, and wherein R 1 and R 2 are each independently hydrogen or lower alkyl;

wherein n is from 1 to 6, m is from 2 to 25 and X is a negative ion; and

wherein n is from 1 to 12, m is from 2 to 25, p is from 2 to 12, X + is a positive ion and Z − is a negative ion.

30 . The polyethylene glycol polymer of claim 29 , wherein the terminal hydroxyl group can bind to a drug to form a bond that can undergo hydrolysis in vivo to release the drug from the polyethylene glycol polymer.

31 . The polyethylene glycol polymer according to claim 29 , wherein the positive ion is selected from the group consisting of sodium cation, potassium cation, lithium cation, and calcium cation.

32 . The polyethylene glycol polymer according to claim 29 , wherein the negative ion is selected from the group consisting of chloro anion, bromo anion, iodo anion, phosphate anion, acetate anion, carbonate anion, sulfate anion, tosylate anion, and mesylate anion.

33 . The polyethylene glycol polymer according to claim 29 , having a structure represented by Formula 12, wherein the positive ion is selected from the group consisting of NH 3 + and trisubstituted sulfur and the negative ion is selected from the group consisting of chloro anion, bromo anion, iodo anion, phosphate anion, acetate anion, trifluoracetate anion, carbonate anion, sulfate anion, and mesylate anion.

34 . The polyethylene glycol polymer according to claim 29 , having a structure represented by formula 12, wherein n is 3, m is 2, p is 2, X + is NH 3 + , and Z − is −O 2 CCH 3 .

35 . An activated polyethylene glycol polymer of claim 29 .

36 . The activated polyethylene glycol polymer according to claim 35 , further characterized as an NHS ester.

37 . The polyethylene glycol polymer of claim 29 having the formula of Formula 2.

38 . The polyethylene glycol polymer of claim 29 having the formula of Formula 3.

39 . The polyethylene glycol polymer of claim 29 having the formula of Formula 4.

40 . The polyethylene glycol polymer of claim 29 having the formula of Formula 5.

41 . The polyethylene glycol polymer of claim 29 having the formula of Formula 6.

42 . The polyethylene glycol polymer of claim 29 having the formula of Formula 7.

43 . The polyethylene glycol polymer of claim 29 having the formula of Formula 8.

44 . The polyethylene glycol polymer of claim 29 having the formula of Formula 9.

45 . The polyethylene glycol polymer of claim 29 having the formula of Formula 10.

46 . The polyethylene glycol polymer of claim 29 having the formula of Formula 11.

47 . The polyethylene glycol polymer of claim 29 having the formula of Formula 12.

48 . A method for preparing a taxane prodrug, comprising combining a taxane with one or more polyethylene glycol polymers of claim 29 , wherein the polyethylene glycol polymers are activated and the combining occurs under conditions to promote a condensation reaction between the taxane and one or more polyethylene glycol polymers.

49 . The method of claim 48 , wherein the taxane is paclitaxel, docetaxel or an analog or derivative thereof.

50 . The method of claim 48 , wherein the taxane is paclitaxel or an analog or derivative thereof.

51 . The method of claim 48 , wherein the taxane is paclitaxel.

52 . A method for enhancing microtubule formation in a mammalian subject, comprising administering to the subject an effective microtubule formation enhancing amount of a taxane prodrug comprising:

(a) a taxane, and

(b) from one to three polyethylene glycol polymers of claim 29 joined to from one to three bonding sites on the taxane by a hydrolyzable bond,

wherein the microtubule formation is enhanced relative to the microtubule formation achieved by administration of the taxane alone.

53 . The method of claim 52 , wherein the taxane is paclitaxel, docetaxel or an analog or derivative thereof.

54 . The method of claim 52 , wherein the taxane is paclitaxel or an analog or derivative thereof.

55 . The method of claim 52 , wherein the taxane is paclitaxel.

56 . The method of claim 52 , wherein the taxane is paclitaxel and the polyethylene glycol polymer has a structure represented by Formula 12, wherein the positive ion is selected from the group consisting of NH 3 + and trisubstituted sulfur and the negative ion is selected from the group consisting of chloro anion, bromo anion, iodo anion, phosphate anion, acetate anion, trifluoracetate anion, carbonate anion, sulfate anion, and mesylate anion.

57 . The method of claim 52 , wherein the taxane is paclitaxel and the polyethylene glycol polymer has a structure represented by Formula 12, wherein n is 3, m is 2, p is 2, X + is NH 3 + , and Z − is − O 2 CCH 3 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2006
From: NOBEX CORPORATION
To: BIOCON LIMITED
Reel/Frame 017555/0904 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2004
From: EKWURIBE, NNOCHIRI N.; PRICE, CHRISTOPHER H.; BARTLEY, GARY S.
To: NOBEX CORPORATION
Reel/Frame 015285/0001 →