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用于生物医学应用的导电水凝胶石墨烯纳米复合生物纤维。

Electrically Conducting Hydrogel Graphene Nanocomposite Biofibers for Biomedical Applications.

作者信息

Talebian Sepehr, Mehrali Mehdi, Raad Raad, Safaei Farzad, Xi Jiangtao, Liu Zhoufeng, Foroughi Javad

机构信息

Intelligent Polymer Research Institute, University of Wollongong, Wollongong, NSW, Australia.

Illawarra Health and Medical Research Institute, University of Wollongong, Wollongong, NSW, Australia.

出版信息

Front Chem. 2020 Feb 27;8:88. doi: 10.3389/fchem.2020.00088. eCollection 2020.

Abstract

Conductive biomaterials have recently gained much attention, specifically owing to their application for electrical stimulation of electrically excitable cells. Herein, flexible, electrically conducting, robust fibers composed 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 than did single fibers that were made solely from alginate. Furthermore, with the aim of evaluating the response of biological entities to these novel nanocomposite biofibers, studies were carried out using C2C12 myoblast cell lines. The obtained results from studies indicated that the developed electrically conducting biofibers are biocompatible to living cells. The developed hybrid conductive biofibers are likely to find applications as 3D scaffolding materials for tissue engineering applications.

摘要

导电生物材料近来备受关注,特别是因其在电刺激可电兴奋细胞方面的应用。在此,通过湿纺工艺制备了由藻酸盐生物聚合物和石墨烯成分组成的柔性、导电且坚固的纤维。这些纳米复合纤维相较于仅由藻酸盐制成的单纤维,展现出更好的机械、电学和电化学性能。此外,为了评估生物实体对这些新型纳米复合生物纤维的反应,使用C2C12成肌细胞系进行了研究。研究所得结果表明,所开发的导电生物纤维对活细胞具有生物相容性。所开发的混合导电生物纤维有望作为组织工程应用的3D支架材料找到应用场景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d54/7056842/74a0f691b43b/fchem-08-00088-g0001.jpg

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