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Nano- and Microfibrous Materials Based on Collagen for Tissue Engineering: Synthesis, Structure, and Properties

机译:基于胶原蛋白的组织工程纳米和微纤维材料:合成,结构和性质

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摘要

The creation of three-dimensional structures possessing biomimetic properties is of considerable interest for regenerative medicine. Nonwoven materials with a diameter of fibers from 100 nm to 3 μm have been obtained by electrospinning from dispersions of collagen in hexafluoroisopropanol and acetic acid (AA). A study by the circular dichroism method indicates the predominant preservation of a collagen triple helix in produced materials. To preserve the fibrous structure in aqueous media, collagen is cross-linked by genipin in isopropanol and PBS (phosphate buffered saline, pH 7.4). The mechanical and biological properties of cross-linked materials have been studied—it is shown that the mechanical behavior of collagen materials in the physiological range of loads corresponds to the mechanical behavior of the native aorta. Cross-linked fibrous materials do not possess cytotoxicity, and they contribute to the adhesion and proliferation of?cells.
机译:具有仿生性能的三维结构的创建对于再生医学具有相当大的兴趣。 通过在六氟异丙醇和乙酸(AA)中的胶原蛋白分散术,获得了100nm至3μm直径为100nm至3μm的非织造材料。 圆形二色法的研究表明了生产材料中胶原三螺旋的主要保存。 为了保持水性介质中的纤维结构,胶原蛋白通过异丙醇和PBS中的Genipin交联(磷酸盐缓冲盐水,pH7.4)。 已经研究了交联材料的机械和生物学特性 - 结果表明,胶原物质在载荷的生理范围内的力学行为对应于天然主动脉的机械行为。 交联纤维材料不具有细胞毒性,它们有助于粘附和增殖?细胞。

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