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首页> 外文期刊>Frontiers in Chemistry >Electrically Conducting Hydrogel Graphene Nanocomposite Biofibers for Biomedical Applications
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Electrically Conducting Hydrogel Graphene Nanocomposite Biofibers for Biomedical Applications

机译:用于生物医学应用的水凝胶石墨烯纳米复合物生物纤维

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摘要

Conductive biomaterials have recently gained much attention specifically due to their application for electrical stimulation of electrically excitable cells. Herein, flexible, electrically conducting, robust fibres comprised of both an alginate biopolymer and graphene components have been produced using a wet-spinning process. These nanocomposite fibers showed better mechanical, electrical and electrochemical properties when compared to single fibers that were made solely from alginate. Furthermore, with the aim of evaluating the response of biological entities to these novel nanocomposite biofibers, in vitro studies were carried out using C2C12 myoblast cell lines. The obtained results from in vitro studies indicated that the developed electrically conducting biofibers are biocompatible to living cells and encouraged their proliferation and differentiation. The developed hybrid conductive biofibers are likely to find applications as 3D scaffolding materials for tissue engineering applications.
机译:导电性生物材料最近显着地获得了很多注意力,因为它们的电刺激电激发细胞的应用。这里,使用湿纺过程制备了由藻酸盐生物聚合物和石墨烯组分组成的柔性,导电,鲁棒纤维。与单纤维相比,这些纳米复合纤维显示出更好的机械,电气和电化学性质。此外,目的在于评估生物实体对这些新型纳米复合物生物纤维的反应,使用C2C12肌细胞线进行体外研究。来自体外研究的获得结果表明,发育的导电生物纤维是生物相容性的,并鼓励其增殖和分化。开发的杂种导电性生物纤维可能发现作为用于组织工程应用的3D脚手架材料的应用。

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