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Hybrid biodegradable membranes of silane-treated chitosan/soy protein for biomedical applications

机译:硅烷处理的壳聚糖/大豆蛋白混合生物降解膜的生物医学应用

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摘要

In recent years, progress in the field of hybrid materials has been accelerated through use of the sol–gel process for creating materials and devices, which benefit from the incorporation of both inorganic and organic components. In this work, organic–inorganic hybrid membranes were prepared from tetraethoxysilane and a blend system composed of chitosan and soy protein. By introducing a small amount of siloxane bond into the chitosan/soy protein system, the chitosan/soy protein hybrid membranes were improved in terms of structure, topography and mechanical properties. It appears that the chitosan/soy protein hybrid membranes were formed by discrete inorganic moieties entrapped in the chitosan/soy protein blend, which improved the stability and mechanical performance assessed by the dynamic mechanical analysis as compared to chitosan/soy protein membrane. Also, in vitro cell culture studies evidenced that the chitosan/soy protein hybrid membranes are non-cytotoxic over a mouse fibroblast-like cell line. The hybrid membranes of silane-treated chitosan/soy protein developed in this work have potential in biomedical applications, including tissue engineering.
机译:近年来,通过使用溶胶-凝胶工艺制造材料和设备,已在混合材料领域取得了进展,这得益于无机和有机成分的结合。在这项工作中,由四乙氧基硅烷和由壳聚糖和大豆蛋白组成的共混体系制备了有机-无机杂化膜。通过将少量的硅氧烷键引入壳聚糖/大豆蛋白体系,壳聚糖/大豆蛋白杂化膜在结构,形貌和机械性能方面得到了改善。似乎壳聚糖/大豆蛋白杂化膜是由截留在壳聚糖/大豆蛋白共混物中的离散的无机部分形成的,与壳聚糖/大豆蛋白膜相比,通过动态力学分析评估,其提高了稳定性和机械性能。同样,体外细胞培养研究表明,壳聚糖/大豆蛋白杂合膜对小鼠成纤维细胞样细胞系无细胞毒性。在这项工作中开发的硅烷处理的壳聚糖/大豆蛋白杂化膜在生物医学应用(包括组织工程)中具有潜力。

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