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首页> 外文期刊>Experimental Neurology >Reinnervation of the biceps brachii muscle following cotransplantation of fetal spinal cord and autologous peripheral nerve into the injured cervical spinal cord of the adult rat.
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Reinnervation of the biceps brachii muscle following cotransplantation of fetal spinal cord and autologous peripheral nerve into the injured cervical spinal cord of the adult rat.

机译:将胎儿脊髓和自体周围神经共移植到成年大鼠受伤的颈脊髓后,肱二头肌肱神经再支配。

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In order to compensate the loss of motoneurons resulting from severe spinal cord injury and to reestablish peripheral motor connectivity, solid pieces of fetal spinal cord, taken from embryonic day 14 rat embryos, were transplanted into unilateral aspiration lesions of the cervical spinal cord of adult rats. Concomitantly, one end of a 3.5-cm autologous peripheral nerve graft was put in close contact with the embryonic graft; the other end was sutured to the distal stump of the musculocutaneous nerve which innervate the biceps brachii muscle. The animals were examined 3 and 6 months after surgery. Following intramuscular injection of horseradish peroxidase, retrograde axonal labeling studies indicated that both transplanted and host spinal neurons were able to extend axons all the way through the peripheral nerve graft and nerve stump, up to the reconnected muscles. The labeled cells in the transplant were generally observed close to the intraspinal tip of the peripheral nerve graft. Retrograde axonal tracing, as well as electrophysiological and histological data, demonstrated the sensory and motor reinnervation of the reconnected muscles. This muscular reinnervation was able to reverse the atrophic changes observed in the denervated muscle. In control experiments, the extraspinal end of the peripheral nerve graft was ligatured in order to compare the differentiation of the transplanted neurons and the survival of their growing axons with or without their muscular targets. Six months after both types of surgery, large-size grafted neurons, identified as motoneurons by immunocytochemistry for peripherine and calcitonin gene-related peptide, were only observed in fetal spinal cord transplants which were connected to denervated muscles, thus demonstrating the trophic influence of the muscle target on the survival and differentiation of the transplanted neurons and on the maintenance of the axons they had grown into the peripheral nerve graft. Copyright 2001 Academic Press.
机译:为了补偿由于严重脊髓损伤而引起的运动神经元的丢失并重建周围运动连接,将取自胚胎第14天大鼠胚胎的胎儿脊髓实心块移植到成年大鼠颈脊髓的单侧抽吸病变中。同时将3.5厘米的自体周围神经移植物的一端与胚胎移植物紧密接触。另一端缝合到支配肱二头肌肌肉的肌皮神经末梢。手术后3个月和6个月检查动物。肌肉内注射辣根过氧化物酶后,逆行轴突标记研究表明,移植的和宿主的脊髓神经元都能够将轴突一直延伸到周围的神经移植物和神经残端,直至重新连接的肌肉。通常在接近于周围神经移植物的椎内尖端处观察到移植物中的标记细胞。逆行轴突追踪以及电生理和组织学数据,证明了重新连接的肌肉的感觉和运动神经支配。这种肌肉神经支配能够逆转在神经支配肌中观察到的萎缩性变化。在对照实验中,将周围神经移植物的脊柱外端结扎,以比较移植的神经元的分化情况以及有无肌肉靶时其生长轴突的存活情况。两种类型的手术后六个月,仅在与失神经的肌肉相连的胎儿脊髓移植物中观察到大的移植神经元,通过免疫细胞化学鉴定为周围神经素和降钙素基因相关肽为运动神经元。肌肉的目标是移植神经元的存活和分化,以及维持它们已生长到周围神经移植物中的轴突的维持。版权所有2001,学术出版社。

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