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正常/营养不良联体小鼠的神经营养作用研究。

Study of neurotrophism in normal/dystrophic parabiotic mice.

作者信息

Saito A, Law P K, Fleischer S

出版信息

Muscle Nerve. 1983 Jan;6(1):14-28. doi: 10.1002/mus.880060105.

Abstract

The trophic influences of nerve and muscle on one another were studied in normal and dystrophic littermates of C57BL/6J dy2J mice parabiosed at 20 to 23 days after birth. Each parabiont had a soleus muscle cross-reinnervated by a tibial nerve of its partner. Ultrastructural abnormalities of muscle and endplate were quantified and compared 6 to 7 months postoperatively. The dystrophic nerve degenerated despite reinnervation to a normal muscle. The normal muscle did not prevent the dystrophic nerve from degenerating, and the dystrophic nerve induced degenerative changes in the reinnervated normal muscle. Normal nerve did not retard the genetically programmed degeneration of the dystrophic muscle. The dystrophic muscle, however, did not appear to cause normal nerve terminals to degenerate. We conclude that both nerve and muscle cells in dystrophic mice express characteristics of muscular dystrophy. Muscle fibers of a few motor units further suffer from abnormal neurotrophic influence because of the degeneration of the motor neurons. Myotrophic influence on nerve was not observed.

摘要

在出生后20至23天进行联体生活的C57BL/6J dy2J小鼠的正常和营养不良同窝仔鼠中,研究了神经和肌肉之间的营养影响。每个联体动物都有一块比目鱼肌由其伙伴的胫神经进行交叉神经支配。术后6至7个月,对肌肉和终板的超微结构异常进行了量化和比较。尽管重新支配了正常肌肉,但营养不良的神经仍发生了退化。正常肌肉并不能阻止营养不良的神经退化,而营养不良的神经会导致重新支配的正常肌肉发生退行性变化。正常神经并不能延缓营养不良肌肉的基因程序性退化。然而,营养不良的肌肉似乎不会导致正常神经末梢退化。我们得出结论,营养不良小鼠的神经和肌肉细胞都表现出肌肉营养不良的特征。由于运动神经元的退化,少数运动单位的肌纤维进一步受到异常神经营养影响。未观察到肌对神经的营养影响。

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