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弥合哺乳动物与无脊椎动物周围神经损伤之间的差距:一种新型神经修复方案

Closing the Gap Between Mammalian and Invertebrate Peripheral Nerve Injury: Protocol for a Novel Nerve Repair.

作者信息

Vest Maxwell, Guida Addison, Colombini Cory, Cordes Kristina, Pena Diana, Maki Marwa, Briones Michael, Antonio Sabrina, Hollifield Carmen, Tian Elli, James Lucas, Borashan Christian, Woodson Johnnie, Rovig John, Shihadeh Hanaa, Karabachev Alexander, Brosious John, Pistorio Ashley

机构信息

Department of Plastic and Reconstructive Surgery, University of Nevada Las Vegas, Las Vegas, NV, United States.

Larner College of Medicine, University of Vermont, Burlington, VT, United States.

出版信息

JMIR Res Protoc. 2020 Aug 27;9(8):e18706. doi: 10.2196/18706.

Abstract

BACKGROUND

Outcomes after peripheral nerve injuries are poor despite current nerve repair techniques. Currently, there is no conclusive evidence that mammalian axons are capable of spontaneous fusion after transection. Notably, certain invertebrate species are able to auto-fuse after transection. Although mammalian axonal auto-fusion has not been observed experimentally, no mammalian study to date has demonstrated regenerating axolemmal membranes contacting intact distal segment axolemmal membranes to determine whether mammalian peripheral nerve axons have the intrinsic mechanisms necessary to auto-fuse after transection.

OBJECTIVE

This study aims to assess fusion competence between regenerating axons and intact distal segment axons by enhancing axon regeneration, delaying Wallerian degeneration, limiting the immune response, and preventing myelin obstruction.

METHODS

This study will use a rat sciatic nerve model to evaluate the effects of a novel peripheral nerve repair protocol on behavioral, electrophysiologic, and morphologic parameters. This protocol consists of a variety of preoperative, intraoperative, and postoperative interventions. Fusion will be assessed with electrophysiological conduction of action potentials across the repaired transection site. Axon-axon contact will be assessed with transmission electron microscopy. Behavioral recovery will be analyzed with the sciatic functional index. A total of 36 rats will be used for this study. The experimental group will use 24 rats and the negative control group will use 12 rats. For both the experimental and negative control groups, there will be both a behavior group and another group that will undergo electrophysiological and morphological analysis. The primary end point will be the presence or absence of action potentials across the lesion site. Secondary end points will include behavioral recovery with the sciatic functional index and morphological analysis of axon-axon contact between regenerating axons and intact distal segment axons.

RESULTS

The author is in the process of grant funding and institutional review board approval as of March 2020. The final follow-up will be completed by December 2021.

CONCLUSIONS

In this study, the efficacy of the proposed novel peripheral nerve repair protocol will be evaluated using behavioral and electrophysiologic parameters. The author believes this study will provide information regarding whether spontaneous axon fusion is possible in mammals under the proper conditions. This information could potentially be translated to clinical trials if successful to improve outcomes after peripheral nerve injury.

INTERNATIONAL REGISTERED REPORT IDENTIFIER (IRRID): PRR1-10.2196/18706.

摘要

背景

尽管目前有神经修复技术,但周围神经损伤后的预后仍然很差。目前,尚无确凿证据表明哺乳动物轴突在横断后能够自发融合。值得注意的是,某些无脊椎动物物种在横断后能够自动融合。虽然尚未通过实验观察到哺乳动物轴突的自动融合,但迄今为止,尚无哺乳动物研究证明再生的轴膜与完整的远端节段轴膜接触,以确定哺乳动物周围神经轴突在横断后是否具有自动融合所需的内在机制。

目的

本研究旨在通过增强轴突再生、延缓华勒氏变性、限制免疫反应和防止髓鞘阻塞来评估再生轴突与完整远端节段轴突之间的融合能力。

方法

本研究将使用大鼠坐骨神经模型来评估一种新型周围神经修复方案对行为、电生理和形态学参数的影响。该方案包括多种术前、术中和术后干预措施。将通过跨修复横断部位的动作电位电生理传导来评估融合情况。将使用透射电子显微镜评估轴突-轴突接触情况。将用坐骨神经功能指数分析行为恢复情况。本研究共使用36只大鼠。实验组将使用24只大鼠,阴性对照组将使用12只大鼠。对于实验组和阴性对照组,都将有一个行为组和另一个将接受电生理和形态学分析的组。主要终点将是病变部位是否存在动作电位。次要终点将包括用坐骨神经功能指数评估行为恢复情况以及对再生轴突与完整远端节段轴突之间的轴突-轴突接触进行形态学分析。

结果

截至2020年3月,作者正在申请资助并等待机构审查委员会的批准。最终随访将于2021年1​​2月完成。

结论

在本研究中,将使用行为和电生理参数评估所提出的新型周围神经修复方案的疗效。作者认为,本研究将提供有关在适当条件下哺乳动物是否可能发生自发轴突融合的信息。如果成功,该信息可能会转化为临床试验,以改善周围神经损伤后的预后。

国际注册报告识别码(IRRID):PRR1-10.2196/18706。

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