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骨骼肌生长和再生过程中的卫星细胞行为。

Satellite cell behavior during skeletal muscle growth and regeneration.

作者信息

Schultz E

机构信息

Department of Anatomy, University of Wisconsin, Madison 53706.

出版信息

Med Sci Sports Exerc. 1989 Oct;21(5 Suppl):S181-6.

PMID:2691829
Abstract

Satellite cells play an integral role in normal development of skeletal muscle by providing a source for postmitotic myonuclei and in repair of injured myofibers by serving as the source of myoblasts that participate in the regeneration response. The population of satellite cells in a muscle undergoes an ordered change both in relative and absolute numbers over the course of the postnatal growth period. Quantitative studies have shown that the changes are not the same among muscles or even among the individual myofibers within a muscle. In general, oxidative muscles have a much higher density of satellite cells than do glycolytic muscles. Although the exact reasons for the differences in the population densities are unknown, differences in the growth patterns of muscles or in their activity levels may be related factors. These differences point to the fact that the mechanisms that regulate satellite cell mitotic and fusion behavior are also not the same in all muscles. The activity state of muscle is an important factor in the regulation of satellite cell behavior. Increased functional demand that induces a hypertrophic response results in increased satellite cell mitotic activity, and decreased activity that results in atrophy results in decreased mitotic activity. Finally, elevated satellite cell mitotic activity can be a sensitive indicator of muscle damage, especially when the damage is minimal and difficult to detect by morphological means.

摘要

卫星细胞在骨骼肌的正常发育中起着不可或缺的作用,它为有丝分裂后的肌核提供来源;在受损肌纤维的修复中,卫星细胞作为参与再生反应的成肌细胞来源发挥作用。在出生后的生长阶段,肌肉中卫星细胞的数量在相对和绝对数量上都会经历有序变化。定量研究表明,不同肌肉之间甚至同一肌肉内的单个肌纤维之间的变化都不相同。一般来说,氧化型肌肉的卫星细胞密度比糖酵解型肌肉高得多。尽管卫星细胞数量密度差异的确切原因尚不清楚,但肌肉生长模式或活动水平的差异可能是相关因素。这些差异表明,调节卫星细胞有丝分裂和融合行为的机制在所有肌肉中也不尽相同。肌肉的活动状态是调节卫星细胞行为的一个重要因素。增加功能需求诱导肥大反应会导致卫星细胞有丝分裂活动增加,而导致萎缩的活动减少则会导致有丝分裂活动减少。最后,卫星细胞有丝分裂活动升高可能是肌肉损伤的一个敏感指标,尤其是当损伤很轻微且难以通过形态学方法检测到时。

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