IP Library Patent Application 13877915
Patent Application
App. No. 13/877,915

Bioactive amino acid sequence and use therefrom

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Patent No.
US None
App. No.
13/877,915
Abstract

Use of the amino acid sequence Har-Gly-Asp (hRGD) as a bioactive sequence in functional peptides to promote cell adhesion, cell growth, and/or cell differentiation, and in the preparation of hydrogels, preferably hydrogels for cell culture. A hydrogel comprising the hRGD sequence, especially a hydrogel wherein the hRGD sequence is part of the hydrogel scaffold.

Claims (18)

1 . A method for promoting cell adhesion, cell growth, cell differentiation, or combinations thereof, comprising using an amino acid sequence Har-Gly-Asp (hRGD) as a bioactive sequence in a functional peptide moiety.

2 . The method according to claim 1 , wherein the functional moiety comprises at least one sequence selected from the group consisting of GhRGD, YhRGD, YGhRGD, GGGGhRGD, βAla-hRGD, GABA-hRGD, 6-aminovalericamide-hRGD, hRGDS, hRGDY, hRGDF, hRGDK, hRGDV, hRGDT, hRGDWP, hRGDFK, hRGDYK, hRGDSP, hRGDSPK, hRGDSY, hRGDNP, hRGDTP, hRGDSP, GhRGDS, GhRGDY, GhRGDF, GhRGDSY, GhRGDSP, GhRGDSPK, YhRGDS, GhRGDTP, GhRGDSPK, GhRGDSP, GhRGDK, GGGGhRGDS, GhRGDNP, and combinations thereof.

3 . The method according to claim 1 , wherein the functional peptide moiety is covalently bound to a self-assembling peptide moiety.

4 . The method according to claim 3 , wherein the self-assembling peptide moiety is able to self-assemble in a β-sheet, a coiled coil α-helix structure, or a peptide triple helix structure.

5 . The method according to claim 1 , wherein the functional peptide moiety is covalently bound to a biocompatible polymer.

6 . The method according to claim 5 , wherein the functional peptide moiety is bound to the biocompatible polymer through a linkage selected from the group consisting of a thioether linkage, an amino linkage, an amido linkage, an ester linkage, and an ether linkage.

8 . The method according to claim 3 , being used for the preparation of hydrogels.

9 . A hydrogel comprising a Har-Gly-Asp (hRGD) sequence.

10 . The hydrogel according to claim 9 , wherein the hRGD sequence is part of the hydrogel scaffold.

11 . The hydrogel according to claim 10 , wherein the hRGD sequence promotes cell adhesion, cell growth, cell differentiation, or combinations thereof.

12 . The hydrogel according to claim 10 , wherein the hydrogel further comprises a self-assembling peptide moiety, a polymer, or both a self-assembling peptide moiety and a polymer.

13 . The hydrogel according to claim 12 , wherein the hRGD sequence is covalently bound to at least one of the peptide moiety or polymer.

14 . The hydrogel according to claim 12 , wherein the hRGD sequence is covalently bound to at least one of the peptide moiety or polymer via an additional peptide sequence.

15 . The hydrogel according to claim 12 , wherein the hRGD sequence is covalently bound to at least one of the peptide moiety or polymer via a linkage.

16 . The method according to claim 2 , wherein the functional moiety comprises at least one sequence selected from the group consisting of hRGDS, GhRGDS, GhRGDSY, βAla-hRGD, GABA-hRGD, 6-aminovalericamide-hRGD, and hRGDWP.

17 . The method according to claim 2 , wherein the functional moiety comprises at least one sequence selected from the group consisting of βAla-hRGD, GABA-hRGD, 6-aminovalericamide-hRGD, and hRGDWP.

18 . The method according to claim 2 , wherein the functional peptide moiety is covalently bound to a self-assembling peptide moiety.

19 . The method according to claim 5 , wherein the biocompatible polymer is a thermo-responsive polymer

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2013
From: SOLVAY
To: PEPTISYNTHA
Reel/Frame 031450/0742 →