IP Library › Granted Patent US 8,815,277
Granted Patent B2
US 8,815,277 · App. 13/381,843 · Granted Aug 26, 2014

In situ forming hydrogel and biomedical use thereof

Inventors: Ki-Dong Park (Seoul, KR); Yoon-Ki Joung (Incheon, KR); Kyung-Min Park (Seoul, KR)
Assignee: Ajou University Industry-Academic Cooperation Foundation
A61L27/52A61L27/54A61L2300/41A61K9/0024A61L2300/602A61L2400/06A61L2300/416A61L2300/43A61L2300/414A61L2300/252A61L2300/256A61K47/42A61L2300/406
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Quick Facts
Patent No.
US 8,815,277
App. No.
13/381,843
Granted
Aug 26, 2014
Kind
B2
Abstract

Disclosed are in situ-forming injectable hydrogel and medical uses thereof. In the in situ-forming injectable hydrogel two or more homogeneous or heterogeneous polymers are bonded to each other by a dehydrogenation reaction between phenol or aniline moieties on adjacent polymers, wherein a polymer backbone is grafted with a phenol or aniline moiety using a linker. In contrast to conventional hydrogel, the in situ-forming injectable hydrogel is superior in terms of in vivo stability and mechanical strength thanks to the introduction of a water-soluble polymer as a linker which leads to an improvement in the reactivity of phenol or aniline moieties. Having the advantage of superior bio stability and mechanical strength, the hydrogel finds a variety of applications in the biomedical field.

Claims (13)

1. A composition of enzyme-triggered in situ-forming injectable hydrogel, represented by the following Chemical Formula 2, comprising:

two or more homogeneous or heterogeneous polymers, represented by the following Chemical Formula 1, bonding to each other by a dehydrogenation reaction between phenol or aniline moieties on adjacent polymers,

wherein a polymer backbone is grafted with one of the phenol or aniline moieties by a linker,

wherein the polymers are in situ crosslinked in vivo in the presence of horseradish peroxidase and hydrogen peroxide to form the hydrogel,

wherein,

R is hydroxyl or amine, and

L is selected from the group consisting of polyethyleneglycol (PEG), polyethylene oxide (PEO), polyethylenimine (PEI), polypropylene oxide (PPO), polyvinyl alcohol (PVA), poly(N-isopropylacrylamide) (polyNIPAAM), polyfumarate, polyorganophosphazene, polyacrylic acid (polyAAc), polyacrylsulfonate, poly hydroxyethylmethacrylate(PolyHEMA), and copolymers thereof.

2. The composition according to claim 1 , wherein the polymer of Chemical Formula 1 is prepared by grafting a phenol or aniline derivative represented by the following Chemical Formula 3 to a polymer backbone having amino, hydroxyl or carboxyl groups by an amide, urethane, urea or ester bond, with a water-soluble polymer serving as a linker:

wherein,

R l is a hydroxyl group or an amine group; and

R 2 is a carboxyl group or an amine group.

3. The composition according to claim 1 , wherein the polymer backbone is selected from the group consisting of gelatin, chitosan, heparin, cellulose, dextran, dextran sulfate, chondroitin sulfate, keratan sulfate, dermatan sulfate, alginate, collagen, albumin, fibronectin, laminin, elastin, vitronectin, hyaluronic acid, fibrinogen, a multi-arm polymer and a combination thereof.

4. The in situ forming injectable hydrogel composition according to claim 1 , wherein the phenol is selected from the group consisting of tyramine, hydroxyphenylacetic acid, hydroxyphenylpropionic acid, and a combination thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2011
From: PARK, KI-DONG; JOUNG, YOON-KI; PARK, KYUNG-MIN
To: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATION
Reel/Frame 027466/0358 →
Priority Claims (1)
KR 10-2009-0060370 · Jul 2, 2009 · national
Continuity (1)
Related Publication 20120100103A1 · Apr 26, 2012