电刺激对周围神经损伤后神经再生的影响。

The Effect of Electrical Stimulation on Nerve Regeneration Following Peripheral Nerve Injury.

机构信息

Department of Plastic Surgery and Reconstructive Surgery, The Ohio State University Wexner Medical Center, 915 Olentangy River Rd Suite 2140, Columbus, OH 43212, USA.

出版信息

Biomolecules. 2022 Dec 12;12(12):1856. doi: 10.3390/biom12121856.

Abstract

Peripheral nerve injuries (PNI) are common and often result in lifelong disability. The peripheral nervous system has an inherent ability to regenerate following injury, yet complete functional recovery is rare. Despite advances in the diagnosis and repair of PNIs, many patients suffer from chronic pain, and sensory and motor dysfunction. One promising surgical adjunct is the application of intraoperative electrical stimulation (ES) to peripheral nerves. ES acts through second messenger cyclic AMP to augment the intrinsic molecular pathways of regeneration. Decades of animal studies have demonstrated that 20 Hz ES delivered post-surgically accelerates axonal outgrowth and end organ reinnervation. This work has been translated clinically in a series of randomized clinical trials, which suggest that ES can be used as an efficacious therapy to improve patient outcomes following PNIs. The aim of this review is to discuss the cellular physiology and the limitations of regeneration after peripheral nerve injuries. The proposed mechanisms of ES protocols and how they facilitate nerve regeneration depending on timing of administration are outlined. Finally, future directions of research that may provide new perspectives on the optimal delivery of ES following PNI are discussed.

摘要

周围神经损伤 (PNI) 很常见,通常会导致终身残疾。外周神经系统在受伤后具有内在的再生能力,但完全恢复功能的情况很少见。尽管在 PNI 的诊断和修复方面取得了进展,但许多患者仍患有慢性疼痛以及感觉和运动功能障碍。一种有前途的手术辅助方法是应用术中电刺激 (ES) 来刺激周围神经。ES 通过第二信使环磷酸腺苷 (cAMP) 发挥作用,增强再生的内在分子途径。数十年来的动物研究表明,术后给予 20 Hz 的 ES 可加速轴突生长和终末器官再支配。这项工作已在一系列随机临床试验中得到临床转化,这些试验表明 ES 可作为一种有效的治疗方法,改善 PNI 后的患者预后。本文的目的是讨论周围神经损伤后细胞生理学和再生的局限性。概述了 ES 方案的拟议机制以及它们如何根据给药时间促进神经再生。最后,讨论了可能为 PNI 后 ES 的最佳输送提供新视角的未来研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96e4/9775635/29a6b2abe0a8/biomolecules-12-01856-g001.jpg

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