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成人运动轴突优先再支配退变肌肉神经。

Adult motor axons preferentially reinnervate predegenerated muscle nerve.

机构信息

Department of Orthopaedic Surgery, Johns Hopkins University, 601 N. Caroline Street, Baltimore, MD 21287, USA.

出版信息

Exp Neurol. 2013 Nov;249:1-7. doi: 10.1016/j.expneurol.2013.07.019. Epub 2013 Aug 8.

Abstract

Preferential motor reinnervation (PMR) is the tendency for motor axons regenerating after repair of mixed nerve to reinnervate muscle nerve and/or muscle rather than cutaneous nerve or skin. PMR may occur in response to the peripheral nerve pathway alone in juvenile rats (Brushart, 1993; Redett et al., 2005), yet the ability to identify and respond to specific pathway markers is reportedly lost in adults (Uschold et al., 2007). The experiments reported here evaluate the relative roles of pathway and end organ in the genesis of PMR in adult rats. Fresh and 2-week predegenerated femoral nerve grafts were transferred in correct or reversed alignment to replace the femoral nerves of previously unoperated Lewis rats. After 8 weeks of regeneration the motoneurons projecting through the grafts to recipient femoral cutaneous and muscle branches and their adjacent end organs were identified by retrograde labeling. Motoneuron counts were subjected to Poisson regression analysis to determine the relative roles of pathway and end organ identity in generating PMR. Transfer of fresh grafts did not result in PMR, whereas substantial PMR was observed when predegenerated grafts were used. Similarly, the pathway through which motoneurons reached the muscle had a significant impact on PMR when grafts were predegenerated, but not when they were fresh. Comparison of the relative roles of pathway and end organ in generating PMR revealed that neither could be shown to be more important than the other. These experiments demonstrate unequivocally that adult muscle nerve and cutaneous nerve differ in qualities that can be detected by regenerating adult motoneurons and that can modify their subsequent behavior. They also reveal that two weeks of Wallerian degeneration modify the environment in the graft from one that provides no modality-specific cues for motor neurons to one that actively promotes PMR.

摘要

优先运动再支配(PMR)是指混合神经修复后,运动轴突再生时重新支配肌肉神经和/或肌肉,而不是支配皮神经或皮肤的趋势。PMR 可能仅在幼年大鼠的外周神经通路中发生(Brushart,1993;Redett 等人,2005),但据报道,成年大鼠丧失了识别和响应特定通路标记的能力(Uschold 等人,2007)。这里报告的实验评估了在成年大鼠中 PMR 发生的通路和终末器官的相对作用。新鲜和 2 周前退化的股神经移植物以正确或反转的方式移植以替代先前未手术的 Lewis 大鼠的股神经。再生 8 周后,通过逆行标记鉴定通过移植物投射到受者股皮和肌支及其相邻终末器官的运动神经元。对运动神经元计数进行泊松回归分析,以确定通路和终末器官身份在产生 PMR 中的相对作用。新鲜移植物的转移未导致 PMR,而使用预先退化的移植物时则观察到大量 PMR。同样,当移植物预先退化时,运动神经元到达肌肉的通路对 PMR 有重大影响,但当移植物为新鲜时则没有。对产生 PMR 中通路和终末器官的相对作用的比较表明,两者都不能被证明比另一个更重要。这些实验明确表明,成年肌肉神经和皮神经在质量上存在差异,这些差异可以被再生的成年运动神经元检测到,并可以改变它们随后的行为。它们还表明,两周的 Wallerian 变性改变了移植物中的环境,从不能为运动神经元提供模态特异性线索的环境转变为积极促进 PMR 的环境。

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