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快速向慢速类型转变的肌肉中亚细胞结构的重组。一项体视学研究。

The reorganization of subcellular structure in muscle undergoing fast-to-slow type transformation. A stereological study.

作者信息

Eisenberg B R, Salmons S

出版信息

Cell Tissue Res. 1981;220(3):449-71. doi: 10.1007/BF00216750.

Abstract

Transformation of fast-twitch into slow-twitch skeletal muscle was induced in adult rabbits by chronic low-frequency stimulation and studied at the ultrastructural level. With the use of stereological techniques, a time course was established for changes in mitochondrial volume, sarcotubular system, and Z-band thickness for periods of stimulation ranging from 6 h to 24 weeks. T-tubules, terminal cisternae, and sarcoplasmic reticulum decreased at an early stage and reached levels typical of slow muscle after only 2 weeks of stimulation. Transformation of Z-band structure took place between 1 1/2 and 3 weeks after the onset of stimulation. Mitochondrial volume increased several fold over the first 3 weeks of stimulation, and fell rapidly after 7 weeks, although it still remained above the levels typical of slow muscle. Although there was no sign of degradation and regeneration of the muscle fibers themselves, considerable structural reorganization was evident at the subcellular level after 1 week of stimulation. The fibers passed through a less well organized transitional stage in which fibers could not be assigned to a normal ultrastructural category. After 3 weeks all of the stimulated fibers could be assigned to the normal slow-twitch category although some subcellular irregularities persisted even after 24 weeks. The ultrastructural alterations are discussed in relation to functional and biochemical changes in the whole muscle.

摘要

通过慢性低频刺激诱导成年兔快肌向慢肌转变,并在超微结构水平进行研究。利用体视学技术,确定了刺激6小时至24周期间线粒体体积、肌管系统和Z带厚度变化的时间进程。T管、终池和肌浆网在早期减少,仅刺激2周后就达到慢肌的典型水平。Z带结构的转变发生在刺激开始后的1.5至3周之间。线粒体体积在刺激的前3周增加了几倍,并在7周后迅速下降,尽管仍高于慢肌的典型水平。虽然没有肌肉纤维本身降解和再生的迹象,但刺激1周后亚细胞水平明显发生了相当大的结构重组。纤维经历了一个组织较差的过渡阶段,在此阶段纤维不能被归类为正常的超微结构类别。3周后,所有受刺激的纤维都可归类为正常的慢肌类别,尽管即使在24周后仍有一些亚细胞不规则现象存在。本文讨论了超微结构改变与整个肌肉功能和生化变化的关系。

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