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运动神经元可优先重新支配皮肤通路。

Motor neurons can preferentially reinnervate cutaneous pathways.

作者信息

Robinson Grant A, Madison Roger D

机构信息

Department of Surgery, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Exp Neurol. 2004 Dec;190(2):407-13. doi: 10.1016/j.expneurol.2004.08.007.

Abstract

Previous work in the rat femoral nerve has shown that regenerating motor neurons preferentially reinnervate a terminal nerve branch to muscle as opposed to skin. This process has been termed preferential motor reinnervation (PMR) and has been interpreted as evidence that regenerating motor axons can differentiate between Schwann cell tubes that reside in muscle versus cutaneous terminal pathways. However, much of this previous work has been confounded by motor axons having access to target muscle during the regeneration period. The present experiments prevented muscle contact by regenerating motor axons. By 8 weeks under these conditions, significantly more motor neurons reinnervated the cutaneous pathway rather than the original muscle pathway. We propose that cutaneous and muscle terminal pathways are not inherently different in terms of their ability to support regeneration of motor neurons. Rather, we suggest that it is the relative level of trophic support provided by each nerve branch that determines whether motor axons will remain in that particular branch. Within the context of the femoral nerve model, our results suggest a hierarchy of trophic support for regenerating motor axons with muscle contact being the highest, followed by the length of the terminal nerve branch and/or contact with skin.

摘要

先前对大鼠股神经的研究表明,再生的运动神经元优先重新支配通向肌肉的终末神经分支,而非皮肤。这一过程被称为优先运动再支配(PMR),并被解释为再生运动轴突能够区分存在于肌肉与皮肤终末通路中的施万细胞管的证据。然而,先前的许多研究都因运动轴突在再生期间能够接触到目标肌肉而受到干扰。本实验通过阻止再生运动轴突与肌肉接触来进行。在这些条件下,到8周时,重新支配皮肤通路而非原始肌肉通路的运动神经元明显更多。我们提出,皮肤和肌肉终末通路在支持运动神经元再生的能力方面并非本质上不同。相反,我们认为是每个神经分支提供的营养支持的相对水平决定了运动轴突是否会留在该特定分支中。在股神经模型的背景下,我们的结果表明,对于再生运动轴突,营养支持存在一个等级体系,其中与肌肉接触的营养支持最高,其次是终末神经分支的长度和/或与皮肤的接触。

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