IP Library Granted Patent US 10,350,267
Granted Patent B2
US 10,350,267 · App. 15/900,011 · Granted Jul 16, 2019

Polypeptide-polymer conjugates and methods of use thereof

Inventors: Kevin Edward Healy (Moraga, CA); Samuel T. Wall (Oslo, NO); Krishanu Saha (Cambridge, MA); David V. Schaffer (Danville, CA)
Assignee: the regents of the university of california
A61K38/1709A61K47/58A61K47/61A61L27/22A61L27/54A61L31/043A61L31/16C07K14/47C07K19/00A61K38/00A61L2300/252
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Quick Facts
Patent No.
US 10,350,267
App. No.
15/900,011
Granted
Jul 16, 2019
Kind
B2
Abstract

The present invention provides polypeptide-polymer conjugates. A subject polypeptide-polymer conjugate is useful in a variety of applications, which are also provided.

Claims (24)

1. A conjugate of the formula:

[X—(Y) n ] 10-50 —Z,

where X is a biologically active polypeptide having a molecular weight of from about 5 kDa to about 50 kDa;

Y is an optional linker moiety, wherein n is 0 or an integer from 1 to about 10; and

Z is a biocompatible polymer having a molecular weight of at least about 450,000 Daltons, and

wherein the polypeptide is covalently linked to the polymer directly or via the linker moiety.

2. The conjugate of claim 1 , wherein the polymer is a linear polymer comprising multiple subunits selected from hyaluronic acid, acrylic acid, ethylene glycol, methacrylic acid, acrylamide, hydroxyethyl methacrylate, mannitol, maltose, glucose, arabinose, taurine, betaine, modified celluloses, hydroxyethyl cellulose, ethyl cellulose, methyl cellulose, hydroxyethyl methyl cellulose, hydroxypropyl methyl cellulose, carboxymethyl cellulose, modified starches, hydrophobically modified starch, hydroxyethyl starch, hydroxypropyl starch, amylose, amylopectin, oxidized starch, and copolymers thereof.

3. The conjugate of claim 1 , wherein the biologically active polypeptide is a receptor, a ligand for a receptor, a growth factor, an angiogenic factor, a polypeptide that induces cell differentiation, an antibody, or a polypeptide that inhibits cell proliferation.

4. The conjugate of claim 1 , wherein the polymer is linear poly(acrylic acid).

5. The conjugate of claim 1 , wherein the polymer is hyaluronic acid.

6. A pharmaceutical composition comprising:

a) the conjugate of claim 1 ; and

b) a pharmaceutically acceptable excipient.

7. An implantable device comprising the conjugate of claim 1 .

8. The implantable device of claim 7 , wherein the implantable device is a stent, a shunt, an artificial valve, a lead, an artificial joint, a graft, or an electrode.

9. An implantable drug delivery device comprising the conjugate of claim 1 .

10. The conjugate of claim 1 , wherein the conjugate has the formula:

[X—(Y) n ] 10-25 —Z.

11. The conjugate of claim 1 , wherein the conjugate has the formula:

[X—(Y) n ] 25-50 —Z.

12. The conjugate of claim 1 , wherein the biocompatible polymer has a molecular weight of at least 1 ×10 6 Daltons.

13. The conjugate of claim 1 , wherein the biologically active polypeptide has a molecular weight of from about 10 kDa to about 50 kDa.

14. The conjugate of claim 1 , wherein the biologically active polypeptide has a molecular weight of from about 10 kDa to about 25 kDa.

15. The conjugate of claim 1 , wherein the biologically active polypeptide has a molecular weight of from about 25 kDa to about 50 kDa.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2018
From: HEALY, KEVIN EDWARD; WALL, SAMUEL T.; SAHA, KRISHANU; SCHAFFER, DAVID V.
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 045836/0981 →
Continuity (4)
Continuation 15214398 · Jul 19, 2016
Continuation 12933655
Provisional Application 61040556 · Mar 28, 2008
Related Publication 20180325999A1 · Nov 15, 2018
Cited By (2)
US 12,599,663 US 12,729,236