In Vitro Mechanical Property Evaluation of Chitosan-Based Hydrogels Intended for Vascular Graft Development

被引:0
|
作者
Audrey Aussel
Alexandra Montembault
Sébastien Malaise
Marie Pierre Foulc
William Faure
Sandro Cornet
Rachida Aid
Marc Chaouat
Thierry Delair
Didier Letourneur
Laurent David
Laurence Bordenave
机构
[1] University Bordeaux,
[2] INSERM,undefined
[3] Bioingénierie tissulaire,undefined
[4] U1026,undefined
[5] CHU de Bordeaux,undefined
[6] University Lyon,undefined
[7] Université Lyon 1,undefined
[8] Ingénierie des Matériaux Polymères (IMP),undefined
[9] CNRS UMR 5223,undefined
[10] Rescoll,undefined
[11] CHU de Bordeaux,undefined
[12] CIC 1401,undefined
[13] INSERM,undefined
[14] U1148,undefined
[15] Laboratoire de recherche vasculaire translationnelle,undefined
[16] University Paris Diderot,undefined
[17] Sorbonne Paris Cité,undefined
关键词
Chitosan; Hydrogels; Mechanical properties; In vitro; Vascular graft development;
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学科分类号
摘要
Vascular grafts made of synthetic polymers perform poorly in cardiac and peripheral bypass applications. In these applications, chitosan-based materials can be produced and shaped to provide a novel scaffold for vascular tissue engineering. The goal of this study was to evaluate in vitro the mechanical properties of a novel chitosan formulation to assess its potential for this scaffold. Two chitosan-based hydrogel tubes were produced by modulating chitosan concentration. Based on the standard ISO 7198:1998, the hydrogel tubes were characterized in vitro in terms of suture retention strength, tensile strength, compliance, and burst pressure. By increasing chitosan concentration, suture retention value increased to reach 1.1 N; average burst strength and elastic moduli also increased significantly. The compliance seemed to exhibit a low value for chitosan tubes of high concentration. By modulating chitosan concentration, we produced scaffolds with suitable mechanical properties to be implanted in vivo and withstand physiological blood pressures.
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页码:480 / 488
页数:8
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