首页> 外文期刊>American Journal of Physiology >A muscle precursor cell-dependent pathway contributes to muscle growth after atrophy.
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A muscle precursor cell-dependent pathway contributes to muscle growth after atrophy.

机译:肌肉前体细胞依赖性途径有助于萎缩后肌肉的生长。

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摘要

Slow-twitch skeletal muscle atrophies greatly in response to unloading conditions. The cellular mechanisms that contribute to the restoration of muscle mass after atrophy are largely unknown. Here, we show that atrophy of the mouse soleus is associated with a 36% decrease in myonuclear number after 2 wk of hindlimb suspension. Myonuclear number is restored to control values during the 2-wk recovery period in which muscle mass returns to normal, suggesting that muscle precursor cells proliferate and fuse with myofibers. Inhibition of muscle precursor cell proliferation by local gamma-irradiation of the hindlimb completely prevents this increase in myonuclear number. Muscle growth occurs normally during the first week in irradiated muscles, but growth during the second week is inhibited, leading to a 50% attenuation in the restoration of muscle mass. Thus early muscle growth occurs independently of an increase in myonuclear number, whereas later growth requires proliferating muscle precursor cells leading to myonuclear accretion. These results suggest that increasing the proliferative capacity of muscle precursor cells may enhance restoration of muscle mass after atrophy.
机译:缓慢抽搐的骨骼肌萎缩在无负荷情况下有很大反应。萎缩后有助于肌肉质量恢复的细胞机制在很大程度上尚不清楚。在这里,我们显示小鼠比目鱼肌萎缩与后肢悬吊2周后肌核数目减少36%有关。在2周恢复期间,肌肉质量恢复正常,肌核数目恢复至控制值,表明肌肉前体细胞增生并与肌纤维融合。后肢的局部伽马射线辐照抑制肌肉前体细胞的增殖完全阻止了肌核数目的这种增加。肌肉生长通常在受辐照的肌肉的第一周内发生,但第二周内的生长受到抑制,导致肌肉质量的恢复降低了50%。因此,早期的肌肉生长独立于肌核数目的增加而发生,而后期的生长则需要增殖肌肉前体细胞,导致肌核的积聚。这些结果表明增加肌肉前体细胞的增殖能力可以增强萎缩后肌肉质量的恢复。

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