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应用电刺激促进周围神经损伤后的轴突再生。

Application of Electrical Stimulation to Enhance Axon Regeneration Following Peripheral Nerve Injury.

作者信息

Wariyar Supriya S, Ward Patricia J

机构信息

Department of Cell Biology, Emory University School of Medicine, Atlanta, GA, USA.

出版信息

Bio Protoc. 2023 Oct 5;13(19):e4833. doi: 10.21769/BioProtoc.4833.

Abstract

Enhancing axon regeneration is a major focus of peripheral nerve injury research. Although peripheral axons possess a limited ability to regenerate, their functional recovery is very poor. Various activity-based therapies like exercise, optical stimulation, and electrical stimulation as well as pharmacologic treatments can enhance spontaneous axon regeneration. In this protocol, we use a custom-built cuff to electrically stimulate the whole sciatic nerve for an hour prior to transection and repair. We used a Thy-1-YFP-H mouse to visualize regenerating axon profiles. We compared the regeneration of axons from nerves that were electrically stimulated to nerves that were not stimulated (untreated). Electrically stimulated nerves had longer axon growth than the untreated nerves. We detail how variations of this method can be used to measure acute axon growth.

摘要

促进轴突再生是周围神经损伤研究的一个主要重点。尽管周围轴突的再生能力有限,但其功能恢复非常差。各种基于活动的疗法,如运动、光刺激和电刺激以及药物治疗,都可以增强自发轴突再生。在本方案中,我们使用定制的袖带在横断和修复前对整个坐骨神经进行一小时的电刺激。我们使用Thy-1-YFP-H小鼠来观察再生轴突的轮廓。我们比较了电刺激神经的轴突再生与未刺激(未处理)神经的轴突再生。电刺激的神经比未处理的神经有更长的轴突生长。我们详细介绍了如何使用这种方法的变体来测量急性轴突生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7008/10560632/57d4296a96ae/BioProtoc-13-19-4833-g001.jpg

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