Biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties

Gelatins were crosslinked with organic acids and treated with alkali to impart to them endothelialization and anti-thrombogenic properties. These matrices were characterized by biochemical and physicochemical techniques. The amounts of residual amino groups in the matrices decreased with increasing...

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Main Author: Motoki Inoue, Makoto Sasaki and Tetsushi Taguchi
Format: Article
Language:English
Published: Taylor & Francis Group 2012-01-01
Series:Science and Technology of Advanced Materials
Online Access:http://dx.doi.org/10.1088/1468-6996/13/6/064215
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spelling doaj-e567efdb06d64c91bd658df84eaf51a62020-11-24T23:34:37ZengTaylor & Francis GroupScience and Technology of Advanced Materials1468-69961878-55142012-01-01136064215Biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties Motoki Inoue, Makoto Sasaki and Tetsushi TaguchiGelatins were crosslinked with organic acids and treated with alkali to impart to them endothelialization and anti-thrombogenic properties. These matrices were characterized by biochemical and physicochemical techniques. The amounts of residual amino groups in the matrices decreased with increasing crosslinker concentration. The matrices with the highest crosslinking densities showed excellent endothelial cell adhesion and proliferation. In addition, the adhesion of platelets and formation of fibrin networks on the matrices were suppressed with increasing crosslinker concentration. The matrices also exhibited excellent biodegradability, and the degradation rate decreased with increasing crosslinking density. All the organic acid-crosslinked alkali-treated gelatins showed excellent anti-thrombogenic and endothelialization properties, superior to those of glutaraldehyde-crosslinked alkali-treated gelatins.http://dx.doi.org/10.1088/1468-6996/13/6/064215
collection DOAJ
language English
format Article
sources DOAJ
author Motoki Inoue, Makoto Sasaki and Tetsushi Taguchi
spellingShingle Motoki Inoue, Makoto Sasaki and Tetsushi Taguchi
Biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties
Science and Technology of Advanced Materials
author_facet Motoki Inoue, Makoto Sasaki and Tetsushi Taguchi
author_sort Motoki Inoue, Makoto Sasaki and Tetsushi Taguchi
title Biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties
title_short Biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties
title_full Biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties
title_fullStr Biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties
title_full_unstemmed Biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties
title_sort biodegradable organic acid-crosslinked alkali-treated gelatins with anti-thrombogenic and endothelialization properties
publisher Taylor & Francis Group
series Science and Technology of Advanced Materials
issn 1468-6996
1878-5514
publishDate 2012-01-01
description Gelatins were crosslinked with organic acids and treated with alkali to impart to them endothelialization and anti-thrombogenic properties. These matrices were characterized by biochemical and physicochemical techniques. The amounts of residual amino groups in the matrices decreased with increasing crosslinker concentration. The matrices with the highest crosslinking densities showed excellent endothelial cell adhesion and proliferation. In addition, the adhesion of platelets and formation of fibrin networks on the matrices were suppressed with increasing crosslinker concentration. The matrices also exhibited excellent biodegradability, and the degradation rate decreased with increasing crosslinking density. All the organic acid-crosslinked alkali-treated gelatins showed excellent anti-thrombogenic and endothelialization properties, superior to those of glutaraldehyde-crosslinked alkali-treated gelatins.
url http://dx.doi.org/10.1088/1468-6996/13/6/064215
work_keys_str_mv AT motokiinouemakotosasakiandtetsushitaguchi biodegradableorganicacidcrosslinkedalkalitreatedgelatinswithantithrombogenicandendothelializationproperties
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