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电刺激可加速长间隙轴突和功能周围神经再生。

Electrical stimulation accelerates axonal and functional peripheral nerve regeneration across long gaps.

机构信息

Hannover Medical School, Institute of Neuroanatomy, Hannover, Germany.

出版信息

J Neurotrauma. 2011 Apr;28(4):661-74. doi: 10.1089/neu.2010.1637. Epub 2011 Mar 24.

Abstract

Short-term low-frequency electrical stimulation (ESTIM) of proximal peripheral nerve stumps prior to end-to-end coaptation or tubular bridging of small distances has been reported to increase preferential motor reinnervation and functional motor recovery in animal models and human patients undergoing carpal tunnel release surgery. We investigated the effects of ESTIM on regeneration across rat sciatic nerve gaps, which exceed distances that allow spontaneous regeneration. Three different reconstruction approaches were combined with ESTIM in the experimental groups. Nerve gaps (13 mm) were bridged using (I) nerve autotransplantation, (II) transplantation of differentially filled silicone tubes, or (III) transplantation of tubular grafts containing fibroblast growth factor-2 overexpressing Schwann cells (SCs) for gene therapy. The regeneration outcome was followed for up to 8 weeks, and functionally as well as histomorphometrically analyzed in comparison to non-stimulated control groups. Combining ESTIM with nerve autotransplantation significantly increased the nerve fiber density in the regenerated nerve, and the grade of functional recovery as detected by electrodiagnostic recordings from the gastrocnemius muscle. The combination of ESTIM with transplantation of naïve SCs increased the regeneration of gap-bridging nerve tissue. Although macroscopic tissue regeneration was not further improved after combining ESTIM with FGF-2(21/23-kD) gene therapy, the latter resulted in a high rate of regenerated nerves that functionally reconnected to the target muscle. Based on our results, brief ESTIM shows high potential to accelerate axonal as well as functional (motor and sensory) outcomes in the clinical setting of peripheral nerve gap reconstruction in human patients.

摘要

短时间低频电刺激(ESTIM)近端周围神经残端,然后进行端端吻合或小距离管桥接,已被报道可增加动物模型和接受腕管松解手术的人类患者中的优先运动神经再支配和功能运动恢复。我们研究了 ESTIM 对大鼠坐骨神经间隙再生的影响,这些间隙超过了允许自发再生的距离。在实验组中,将三种不同的重建方法与 ESTIM 相结合。通过(I)神经自体移植、(II)差异填充硅酮管移植或(III)含有成纤维细胞生长因子-2 过表达施万细胞(SCs)的管状移植物移植来桥接神经间隙(13mm)用于基因治疗。对再生结果进行了长达 8 周的随访,并与非刺激对照组进行了功能和组织形态计量学分析。ESTIM 与神经自体移植相结合可显著增加再生神经中的神经纤维密度,并通过对腓肠肌的电诊断记录检测到功能恢复程度。ESTIM 与幼稚SCs 移植相结合可增加间隙桥接神经组织的再生。尽管将 ESTIM 与 FGF-2(21/23-kD)基因治疗相结合后不会进一步改善宏观组织再生,但后者导致了很大比例的再生神经可功能性地重新连接到靶肌肉。基于我们的结果,短暂的 ESTIM 显示出在人类患者外周神经间隙重建的临床环境中加速轴突和功能(运动和感觉)结果的巨大潜力。

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