首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Developmental regulation of interstitial cell density in bullfrog skeletal muscle.
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Developmental regulation of interstitial cell density in bullfrog skeletal muscle.

机译:牛蛙骨骼肌间质细胞密度的发育调节。

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Denervation of skeletal muscle results in striking connective tissue remodelling in junctional areas of muscle. Since extracellular matrix molecules mediate axonal growth and synaptic differentiation, it is likely that the interstitial cells and matrix molecules that accumulate near synaptic sites after denervation influence the regrowth and regeneration of synaptic connections. The experiments presented here addressed the question of whether the junctional connective tissue in developing bullfrog skeletal muscle was also specialized in its cellular and molecular composition. Denervation responses of muscle, such as extrajunctional sensitivity to acetylcholine, often reproduce the characteristics of developing muscle during synaptogenesis. In developing muscle, the distribution of interstitial cells was nonuniform during the period of muscle fibre birth and synaptogenesis. Interstitial cells were concentrated near synaptic sites as in denervated adult muscle. Unlike denervated adult muscle, there were no junctional accumulations of fibronectin or tenascin, matrix molecules produced by interstitial cells, in developing muscles. These results demonstrate that the junctional connective tissue in developing muscle is identified by a high density of interstitial cells that may play a role in the identification and formation of synaptic sites. Further, the junctional matrix environment of developing muscle is distinct from the matrix remodelling that occurs in response to denervation, suggesting that the matrix production by interstitial cells during development is regulated differently from that after denervation of the neuromuscular junction.
机译:骨骼肌的神经支配导致在肌肉交界区域发生明显的结缔组织重塑。由于细胞外基质分子介导轴突生长和突触分化,去神经化后在突触部位附近积聚的间质细胞和基质分子可能会影响突触连接的再生和再生。这里介绍的实验解决了发育中的牛蛙骨骼肌中的结缔组织是否也专门针对其细胞和分子组成的问题。肌肉的神经支配反应,例如对乙酰胆碱的结外敏感性,通常在突触形成过程中重现发育中的肌肉的特征。在发育中的肌肉中,间质细胞的分布在肌肉纤维出生和突触形成期间是不均匀的。间质细胞集中在突触部位附近,就像在成年神经肌肉中一样。与成神经支配的肌肉不同,在发育中的肌肉中没有纤连蛋白或肌腱蛋白(由间质细胞产生的基质分子)的连接积累。这些结果表明,发育中的肌肉的结缔组织是由高密度的间质细胞所识别的,该间隙细胞可能在突触部位的识别和形成中起作用。此外,发育中的肌肉的交界基质环境不同于响应于神经支配而发生的基质重塑,这表明在发育过程中,间质细胞的基质产生与神经肌肉交界的神经支配后的调节不同。

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