miRNAs and Muscle Stem Cells

F. Hernández-Torres, Lara Rodriguez-Outeiriño, Lidia Matías-Valiente, E. Lozano-Velasco, D. Franco, A. Aránega
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Abstract

Skeletal muscle represents between 30 and 38% of the human body mass. Both the maintenance and repair of adult muscle tissue are directed by satellite cells (SCs). SCs are located beneath the basal lamina of the skeletal muscle myofiber. They are quiescent for most of their life but, in response to physiological stimuli or muscle trauma, they activate, proliferate, and enter the myogenic program via generating myogenic progenitors (myoblasts) that fuse to existing myofibers or de novo myofibers. MicroRNAs (miRNAs or miRs) play a critical role in regulating muscle regeneration and stem cell behavior. In this chapter, we review the pivotal role in the regulation of SC quiescence, activation, and differentiation in the context of muscular dystrophies.
mirna与肌肉干细胞
骨骼肌占人体质量的30%到38%。成人肌肉组织的维持和修复都是由卫星细胞(SCs)指导的。SCs位于骨骼肌肌纤维基底层的下方。它们在生命的大部分时间都处于静止状态,但在生理刺激或肌肉创伤的反应下,它们会激活、增殖,并通过产生肌源性祖细胞(成肌细胞)进入肌源性程序,这些祖细胞与现有的肌纤维或新生的肌纤维融合。MicroRNAs (miRNAs或miRs)在调节肌肉再生和干细胞行为中起着关键作用。在本章中,我们回顾了在肌营养不良的背景下,SC静止、激活和分化的调节中的关键作用。
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