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Identifying the Structural Adaptations that Drive the Mechanical Load-Induced Growth of Skeletal Muscle: A Scoping Review

机译:确定推动机械载荷诱导的骨骼肌生长的结构适应:范围审查

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摘要

The maintenance of skeletal muscle mass plays a critical role in health and quality of life. One of the most potent regulators of skeletal muscle mass is mechanical loading, and numerous studies have led to a reasonably clear understanding of the macroscopic and microscopic changes that occur when the mechanical environment is altered. For instance, an increase in mechanical loading induces a growth response that is mediated, at least in part, by an increase in the cross-sectional area of the myofibers (i.e., myofiber hypertrophy). However, very little is known about the ultrastructural adaptations that drive this response. Even the most basic questions, such as whether mechanical load-induced myofiber hypertrophy is mediated by an increase in the size of the pre-existing myofibrils and/or an increase in the number myofibrils, have not been resolved. In this review, we thoroughly summarize what is currently known about the macroscopic, microscopic and ultrastructural changes that drive mechanical load-induced growth and highlight the critical gaps in knowledge that need to be filled.
机译:骨骼肌的维持在健康和生活质量方面发挥着关键作用。骨骼肌质量最有效的调节剂之一是机械载荷,并且许多研究导致了对机械环境改变时发生的宏观和微观变化的合理清楚的了解。例如,机械负载的增加诱导至少部分地通过毫肌的横截面积增加(即MyoFiber肥大)的生长响应。然而,关于推动这种反应的超微结构适应很少。即使是最基本的问题,例如机械负载诱导的肌纤维肥大是否通过预先存在的肌纤维的大小和/或数量肌原纤维的增加而介导的介导。在本综述中,我们彻底总结了驱动机械负载引起的生长的宏观,微观和超微结构变化目前所知的内容,并突出需要填充的知识中的临界间隙。

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