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J Cardiovasc Transl Res ; 10(5-6): 480-488, 2017 Dec.
Article in English | MEDLINE | ID: mdl-28762052

ABSTRACT

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.


Subject(s)
Blood Vessel Prosthesis Implantation/instrumentation , Blood Vessel Prosthesis , Chitosan/chemistry , Tissue Engineering/methods , Tissue Scaffolds , Elastic Modulus , Hydrogels , Materials Testing , Pressure , Prosthesis Design , Prosthesis Failure , Stress, Mechanical , Suture Techniques , Tensile Strength
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