National Natural Science Foundation of China (No. 20776119), Scientific Research Program of Shaanxi Provincial Department of Education(No. 08JK452 ), Scientific Technology Program of Xi’an City (No.YF07078 ).
Human-like collagen (HLC) was cross-linked with hyaluronic acid by genipin in different ratio. The concentrations of hyaluronic acid in the mixture were 0, 0.01%, 0.05% and 0.1%. The blood vessel tubular grafts were then fabricated by freeze-drying. Microstructure, element composite, mechanical properties, cytotoxicity grade, and biocompatibility of different vascular scaffold groups were studied by scanning electron microscope (SEM), X-ray photoelectron spectroscopy (XPS), tensile test, burst pressure experiment, cytotoxicity experiment, endothelial cells planted in blood vessel scaffolds and hypodermic embedding of mice. The results showed that HLC-HA (0.05%) tubular scaffold exhibited interconnected well-distributed and porous structure and porosity of 94.38%; achieved the desirable mechanical property with stress of (1000.8±7.9) kPa and burst pressure of (1058.6±8.2) kPa, hypocytotoxicity, favourable cytocompatibility, hisocompatibility and disposition of degradation.
孙秀娟,范代娣,朱晨辉,马晓轩,骆艳娥,陈岚,郭佳庆. 类人胶原蛋白-透明质酸血管支架的性能及生物相容性[J]. Chinese Journal of Biotechnology, 2009, 25(4): 591-598
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