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完整小鼠肌肉中发芽和突触形成的跨神经元诱导

The transneuronal induction of sprouting and synapse formation in intact mouse muscles.

作者信息

Rotshenker S, Tal M

出版信息

J Physiol. 1985 Mar;360:387-96. doi: 10.1113/jphysiol.1985.sp015623.

Abstract

The pattern of innervation to intact peroneal and extensor digitorum longus muscles of normal and experimental young adult mice was studied by light microscopy after staining neuromuscular junctions by a combined silver-cholinesterase stain. Spontaneous sprouting and synapse formation occur in intact muscles of normal mice. In about 7% of the junctions, sprouts contribute to the innervation of muscle fibres already innervated by their parent axons. Axotomy of the sciatic nerve in one hind limb is followed by an average 3-fold increase over normal in the incidence of sprouting and synapse formation in the intact muscles of the opposite hind limb. The time to onset of sprouting and synapse formation becomes shorter as the site of the contralateral axotomy is placed closer to the spinal cord. A significant increase over normal in the incidence of sprouting is first observed 5 days after a proximal sciatic nerve cut and only 12 days after a distal sciatic nerve cut. The timing of sprouting is independent of the difference in the number of axons that are involved in the contralateral axotomies at different sites. These findings suggest that, in the intact muscles of normal mice, sprouting and synapse formation is an ongoing process which can be enhanced by contralateral axotomy. As in frogs (Rotshenker, 1979, 1982) the underlying mechanism may be the transneuronal induction of sprouting and synapse formation.

摘要

通过联合银胆碱酯酶染色对神经肌肉接头进行染色后,利用光学显微镜研究了正常和实验性成年幼鼠完整腓骨肌和趾长伸肌的神经支配模式。正常小鼠的完整肌肉中会发生自发的轴突发芽和突触形成。在大约7%的接头处,轴突侧支会支配已经由其母轴突支配的肌纤维。一侧后肢坐骨神经切断后,对侧后肢完整肌肉中轴突发芽和突触形成的发生率平均比正常情况增加3倍。随着对侧轴突切断部位靠近脊髓,轴突发芽和突触形成开始的时间会缩短。坐骨神经近端切断后5天首次观察到发芽发生率显著高于正常,而远端坐骨神经切断后仅12天出现这种情况。发芽的时间与不同部位对侧轴突切断所涉及的轴突数量差异无关。这些发现表明,在正常小鼠的完整肌肉中,轴突发芽和突触形成是一个持续的过程,对侧轴突切断可增强这一过程。与青蛙的情况一样(罗申克,1979年、1982年),其潜在机制可能是轴突发芽和突触形成的跨神经元诱导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1d6/1193467/e78a970d9002/jphysiol00578-0409-a.jpg

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