School of Biology and Biological Engineering, South China University of Technology, Guangzhou 510006, China.
School of Medicine, South China University of Technology, Guangzhou 510006, China.
Biomater Sci. 2022 Oct 25;10(21):6061-6076. doi: 10.1039/d2bm01216b.
Peripheral nerve damage can lead to loss of function or even complete disability, which brings about a huge burden on both the patient and society. Regulating nerve cell behavior and promoting nerve injury repair by bionic construction of a biological electric field to simulate natural nerve electrophysiological characteristics have attracted great attention, and many studies have shown that electroactive materials have a good repair effect on peripheral nerves. Here, we summarize the electroactive materials commonly used in peripheral nerve repair and their characteristics, especially for the design and application of a biodegradable non-invasive spontaneous electrical system. Besides, based on the fact that electroactive materials can provide electrical conductivity or a power generation performance, the specific role of electroactive materials in peripheral nerve repair was summed up from the following three aspects: cell behavior regulation, signaling pathway regulation and immune microenvironment regulation. This review provides a summary of the current research on the use of electroactive materials in peripheral nerve repair, which may help provide a more effective strategy for peripheral nerve injury (PNI) and allow more patients to benefit from artificial nerve catheter treatment.
周围神经损伤可导致功能丧失甚至完全残疾,给患者和社会带来巨大负担。通过仿生构建生物电场来模拟自然神经电生理特性,调节神经细胞行为并促进神经损伤修复,引起了广泛关注,许多研究表明,电活性材料对周围神经具有良好的修复作用。在这里,我们总结了常用于周围神经修复的电活性材料及其特性,特别是针对可生物降解的非侵入性自发电系统的设计和应用。此外,基于电活性材料可以提供导电性或发电性能这一事实,我们从细胞行为调节、信号通路调节和免疫微环境调节三个方面总结了电活性材料在周围神经修复中的具体作用。本综述总结了电活性材料在周围神经修复中的应用研究现状,这可能有助于为周围神经损伤(PNI)提供更有效的治疗策略,使更多患者受益于人工神经导管治疗。