首页> 外文期刊>Journal of Neuroscience Research >Alpha-motoneurons of the injured cervical spinal cord of the adult rat can reinnervate the biceps brachii muscle by regenerating axons through peripheral nerve bridges: combined ultrastructural and retrograde axonal tracing study.
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Alpha-motoneurons of the injured cervical spinal cord of the adult rat can reinnervate the biceps brachii muscle by regenerating axons through peripheral nerve bridges: combined ultrastructural and retrograde axonal tracing study.

机译:成年大鼠受伤的颈脊髓的α-运动神经元可以通过周围神经桥再生轴突来使肱二头肌肱二头肌神经再生:结合超微结构和逆行轴突追踪研究。

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摘要

Following our previous studies related to brachial plexus injury and repair, the present experimentation was designed to examine the ultrastructural features of those motoneurons of the locally injured cervical spinal cord of adult rats that were seen to regenerate into peripheral nerve (PN) bridges and to reinnervate nearby skeletal muscles. Here, the peripheral connection of the PN bridge was made with the biceps brachii (BB) muscle. Three months postsurgery, the spinal motoneurons labelled by retrograde axonal transport of horseradish peroxidase (HRP), after its injection into the BB, were selected on thick sections, using light microscopy, for the presence of dark amorphous granules of the HRP reaction product. Serial ultrathin sections were then made from the selected material. For the 10 labelled neurons studied, we examined the synaptic boutons present on the membrane of the neuronal soma. For five of them, we could observe three of the six types of synaptic boutons described for the alpha-motoneurons of the cat (S-type with spherical vesicles, F-types with flattened vesicles, and C-type with subsynaptic cistern). The largest boutons (type C) are specific to alpha-motoneurons. In comparison to normal material, we noticed a decrease in the number of boutons and an increase in the number of glial processes. After a transient phase of trophic changes, the reinnervated BB muscles showed a return of their fibers to nearly normal diameters as well as evidence of fiber type grouping. Simultaneous staining with silver and cholinesterase also revealed the presence of new motor endplates frequently contacted by several motoneurons. The present study indicates that, after a local spinal injury, typical alpha-motoneurons can reinnervate a skeletal muscle by regenerating axons into the permissive microenvironment provided by a PN graft. These data offer prospects for clinical reconstruction of the brachial plexus after avulsion of one or several nerve roots. Copyright 2001 Wiley-Liss, Inc.
机译:在我们先前有关臂丛神经损伤和修复的研究之后,本实验旨在检查成年大鼠局部受伤的颈脊髓的运动神经元的超微结构特征,这些运动神经元可再生为周围神经(PN)桥并恢复神经。附近的骨骼肌。此处,PN桥的外围连接是用肱二头肌(BB)肌肉进行的。手术后三个月,通过光学显微镜在厚切片上选择了厚厚的切片,以辣根过氧化物酶(HRP)的轴突逆行转运的方式标记了脊髓运动神经元,以观察到该产物有深色无定形颗粒。然后由选定的材料制成连续的超薄切片。对于研究的10个标记神经元,我们检查了神经体细胞膜上存在的突触钮扣。对于其中的五个,我们可以观察到为猫的α-运动神经元描述的六种突触钮扣中的三种(S型球形囊泡,F型扁平囊泡和C型突触下水箱)。最大的钮扣(C型)特定于α-运动神经元。与普通材料相比,我们注意到,钮扣的数量减少了,胶质突的数量增加了。在短暂的营养变化阶段之后,神经支配的BB肌肉显示其纤维恢复到接近正常的直径,并显示出纤维类型分组的证据。同时用银和胆碱酯酶染色还表明存在新的运动终板,该运动终板经常被多个运动神经元接触。本研究表明,在局部脊髓损伤后,典型的α-运动神经元可以通过将轴突再生为PN移植物提供的允许的微环境来重新激活骨骼肌。这些数据为一或多个神经根撕脱后臂丛神经的临床重建提供了前景。版权所有2001 Wiley-Liss,Inc.

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