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首页> 外文期刊>The FASEB Journal >Effects of spaceflight on the muscles of the murine shoulder
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Effects of spaceflight on the muscles of the murine shoulder

机译:太空飞行对小鼠肩部肌肉的影响

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摘要

Mechanical loading is necessary for the development and maintenance of the musculoskeletal system. Removal of loading viamicrogravity, paralysis, or bed rest leads to rapid loss of muscle mass and function; however, the molecular mechanisms that lead to these changes are largely unknown, particularly for the spaceflight (SF) microgravity environment. Furthermore, few studies have explored these effects on the shoulder, a dynamically stabilized joint with a large range of motion; therefore, we examined the effects of microgravity on mouse shoulder muscles for the 15-d Space Transportation System (STS)-131, 13-d STS-135, and 30-d Bion-M1 missions. Mice from STS missions were euthanized within 4 h after landing, whereas mice from the Bion-M1 mission were euthanized within 14 h after landing. The motion-generating deltoid muscle was more sensitive to microgravity than the joint-stabilizing rotator cuff muscles. Mice from the STS-131 mission exhibited reduced myogenic (Myf5 and -6) and adipogenic (Pparg, Cebpa, and Lep) gene expression, whereas either no change or an increased expression of these genes was observed in mice from the Bion-M1 mission. In summary, muscle responses to microgravity were muscle type specific, short-duration SF caused dramatic molecular changes to shoulder muscles and responses to reloading uponlanding were rapid.
机译:机械负荷对于肌肉骨骼系统的发育和维护是必要的。通过微重力、瘫痪或卧床休息解除负荷会导致肌肉质量和功能迅速丧失;然而,导致这些变化的分子机制在很大程度上是未知的,特别是对于航天(SF)微重力环境。此外,很少有研究探讨这些对肩部的影响,肩部是一种具有大范围运动的动态稳定关节;因此,我们研究了微重力对 15-d 空间运输系统 (STS)-131、13-d STS-135 和 30-d Bion-M1 任务的小鼠肩部肌肉的影响。来自STS任务的小鼠在着陆后4小时内被安乐死,而来自Bion-M1任务的小鼠在着陆后14小时内被安乐死。产生运动的三角肌比关节稳定的肩袖肌肉对微重力更敏感。来自STS-131任务的小鼠表现出成肌(Myf5和-6)和成脂(Pparg,Cebpa和Lep)基因表达降低,而在Bion-M1任务的小鼠中未观察到这些基因的表达变化或增加。总之,肌肉对微重力的反应是肌肉类型特异性的,短时间的SF会引起肩部肌肉的显着分子变化,并且对着陆时重新加载的反应是迅速的。

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