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将胚胎运动神经元移植到周围神经并结合功能性电刺激可恢复大鼠坐骨神经横断模型中的功能性肌肉活动。

Transplantation of embryonic motor neurons into peripheral nerve combined with functional electrical stimulation restores functional muscle activity in the rat sciatic nerve transection model.

作者信息

Kurimoto Shigeru, Kato Shuichi, Nakano Tomonori, Yamamoto Michiro, Takanobu Nishizuka, Hirata Hitoshi

机构信息

Department of Hand Surgery, Nagoya University Graduate School of Medicine, Japan.

出版信息

J Tissue Eng Regen Med. 2016 Oct;10(10):E477-E484. doi: 10.1002/term.1844. Epub 2013 Oct 30.

Abstract

Reinnervation of denervated muscle by motor neurons transplanted into the peripheral nerve may provide the potential to excite muscles artificially with functional electrical stimulation (FES). Here we investigated whether transplantation of embryonic motor neurons into peripheral nerve combined with FES restored functional muscle activity in adult Fischer 344 rats after transection of the sciatic nerve. One week after sciatic nerve transection, cell culture medium containing (cell transplantation group, n = 6) or lacking (surgical control group, n = 6) dissociated embryonic spinal neurons was injected into the distal stump of the tibial and peroneal nerves. Electrophysiological and tissue analyses were performed in the cell transplantation and surgical control groups 12 weeks after transplantation, as well as a in naïve control group (n = 6) that received no surgery. In the cell transplantation group, ankle angle was measured during gait, with and without FES of the peroneal nerve. Ankle angle at mid-swing was more flexed during gait with FES (26.6 ± 8.7°) than gait without FES (51.4 ± 12.8°, p = 0.011), indicating that transplantated motor neurons in conjunction with FES restored ankle flexion in gait, even though no neural connection between central nervous system and muscle was present. These results indicate that transplantation of embryonic motor neurons into peripheral nerve combined with FES can provide a novel treatment strategy for paralysed muscles. Copyright © 2013 John Wiley & Sons, Ltd.

摘要

将运动神经元移植到周围神经中对失神经支配的肌肉进行再支配,可能为通过功能性电刺激(FES)人工刺激肌肉提供潜力。在此,我们研究了将胚胎运动神经元移植到周围神经并结合FES是否能在成年Fischer 344大鼠坐骨神经横断后恢复功能性肌肉活动。坐骨神经横断后1周,将含有(细胞移植组,n = 6)或不含(手术对照组,n = 6)解离的胚胎脊髓神经元的细胞培养基注入胫神经和腓总神经的远端残端。在移植后12周对细胞移植组和手术对照组进行电生理和组织分析,同时对未接受手术的单纯对照组(n = 6)进行分析。在细胞移植组中,在有和没有腓总神经FES的情况下测量步态期间的踝关节角度。在有FES的步态中,摆动中期的踝关节角度比没有FES的步态更弯曲(26.6±8.7°对51.4±12.8°,p = 0.011),这表明移植的运动神经元与FES相结合可在步态中恢复踝关节屈曲,即使中枢神经系统与肌肉之间不存在神经连接。这些结果表明,将胚胎运动神经元移植到周围神经并结合FES可为瘫痪肌肉提供一种新的治疗策略。版权所有© 2013 John Wiley & Sons, Ltd.

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