电活性纳米材料在周围神经再生中的应用。

Electroactive nanomaterials in the peripheral nerve regeneration.

机构信息

Department of Orthopedics, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, Shanghai 200233, China.

出版信息

J Mater Chem B. 2021 Sep 15;9(35):6958-6972. doi: 10.1039/d1tb00686j.

Abstract

Severe peripheral nerve injuries are threatening the life quality of human beings. Current clinical treatments contain some limitations and therefore extensive research and efforts are geared towards tissue engineering approaches and development. The biophysical and biochemical characteristics of nanomaterials are highly focused on as critical elements in the design and fabrication of regenerative scaffolds. Recent studies indicate that the electrical properties and nanostructure of biomaterials can significantly affect the progress of nerve repair. More importantly, these studies also demonstrate the fact that electroactive nanomaterials have substantial implications for regulating the viability and fate of primary supporting cells in nerve regeneration. In this review, we summarize the current knowledge of electroconductive and piezoelectric nanomaterials. We exemplify typical cellular responses through cell-material interfaces, and the nanomaterial-induced microenvironment rebalance in terms of several key factors, immune responses, angiogenesis and oxidative stress. This work highlights the mechanism and application of electroactive nanomaterials to the development of regenerative scaffolds for peripheral nerve tissue engineering.

摘要

严重的周围神经损伤威胁着人类的生活质量。目前的临床治疗存在一些局限性,因此广泛的研究和努力集中在组织工程方法和开发上。纳米材料的生物物理和生物化学特性是再生支架设计和制造的关键因素。最近的研究表明,生物材料的电学性质和纳米结构可以显著影响神经修复的进展。更重要的是,这些研究还表明,电活性纳米材料对调节神经再生中主要支持细胞的活力和命运具有重要意义。在这篇综述中,我们总结了电导率和压电纳米材料的现有知识。我们通过细胞-材料界面举例说明了典型的细胞反应,以及纳米材料诱导的微环境再平衡在几个关键因素、免疫反应、血管生成和氧化应激方面的情况。这项工作强调了电活性纳米材料在周围神经组织工程再生支架开发中的作用机制和应用。

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