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Stem cells for skeletal muscle repair

机译:干细胞修复骨骼肌

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摘要

Skeletal muscle is a highly specialized tissue composed of non-dividing, multi-nucleated muscle fibres that contract to generate force in a controlled and directed manner. Skeletal muscle is formed during embryogenesis from a subset of muscle precursor cells, which generate both differentiated muscle fibres and specialized muscle-forming stem cells known as satellite cells. Satellite cells remain associated with muscle fibres after birth and are responsible for muscle growth and repair throughout life. Failure in satellite cell function can lead to delayed, impaired or failed recovery after muscle injury, and such failures become increasingly prominent in cases of progressive muscle disease and in old age. Recent progress in the isolation of muscle satellite cells and elucidation of the cellular and molecular mediators controlling their activity indicate that these cells represent promising therapeutic targets. Such satellite cell-based therapies may involve either direct cell replacement or development of drugs that enhance endogenous muscle repair mechanisms. Here, we discuss recent breakthroughs in understanding both the cell intrinsic and extrinsic regulators that determine the formation and function of muscle satellite cells, as well as promising paths forward to realizing their full therapeutic potential.
机译:骨骼肌是高度专业化的组织,由不分裂的多核肌肉纤维组成,它们以受控和定向的方式收缩以产生力量。骨骼肌在胚胎发生过程中由一部分肌肉前体细胞形成,该前体细胞既生成分化的肌肉纤维,又生成专门的形成肌肉的干细胞,称为卫星细胞。出生后卫星细胞仍与肌纤维相关,并在整个生命中负责肌肉的生长和修复。卫星细胞功能的衰竭会导致肌肉损伤后恢复的延迟,受损或失败,而这种缺陷在进行性肌肉疾病和老年时变得越来越突出。在分离肌肉卫星细胞以及阐明控制其活性的细胞和分子介体方面的最新进展表明,这些细胞代表了有希望的治疗靶标。这种基于卫星细胞的疗法可能涉及直接细胞置换或开发增强内源性肌肉修复机制的药物。在这里,我们讨论了了解细胞内在和外在调节剂(决定肌肉卫星细胞的形成和功能)的最新突破,以及实现其全部治疗潜力的有前途的途径。

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