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Extrinsic Regulation of Satellite Cell Function and Muscle Regeneration Capacity during Aging

机译:老化期间卫星细胞功能和肌肉再生能力的外在调节

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摘要

Optimal regeneration of skeletal muscle in response to injury requires the contribution of tissue resident stem cells termed satellite cells. Normally residing at the interface between the muscle fiber and overlying basal lamina it is generally understood with age the satellite cell pool exhibits decline both in number and function. Over the past decade mechanisms that contribute to these declines have begun to emerge. Implicit in aged-related satellite cell dysfunction and decline is the involvement of signals from the environment. Many of the signals that become deregulated with age have conserved functions during distinct stages of muscle fiber formation both in early development and regeneration. In particular, modulations in Wnt, TGFβ, Notch and FGF emanating from aged skeletal muscle fibers or the systemic milieu have emerged as age-related alterations that significantly impact both the maintenance of the satellite cell pool and skeletal muscle regenerative efficacy. In this review we will summarize how the aforementioned pathways contribute to skeletal muscle development and regeneration.We will then discuss deregulation of these cascades with age and how they contribute to satellite cell depletion and dysfunction. The review will also summarize some of the challenges we face in trying to draw parallels between murine and human satellite cell aging. Finally, we will highlight the few examples whereby FDA approved drugs may be exploited to modulate specific signaling cascades in effort to preserve skeletal muscle regenerative function with age.
机译:响应于损伤的骨骼肌的最佳再生需要被称为卫星细胞的组织驻留干细胞的贡献。通常认为,正常情况下,卫星细胞池通常位于肌肉纤维和上层基底膜之间的界面,其数量和功能均下降。在过去的十年中,促成这些下降的机制已经开始出现。与衰老相关的卫星细胞功能障碍和衰落的隐含含义是来自环境的信号的参与。随着年龄的增长而放松的许多信号在早期发育和再生期间在肌纤维形成的不同阶段具有保守的功能。尤其是,衰老的骨骼肌纤维或全身环境产生的Wnt,TGFβ,Notch和FGF的调节已成为与年龄相关的变化,这些变化显着影响卫星细胞池的维持和骨骼肌的再生功效。在这篇综述中,我们将总结上述途径如何促进骨骼肌的发育和再生,然后我们将讨论随着年龄的增长这些级联的失调以及它们如何促进卫星细胞的衰竭和功能障碍。这篇综述还将总结我们在试图将鼠类与人类卫星细胞衰老之间的相似之处时面临的一些挑战。最后,我们将重点介绍几个示例,在这些示例中,可以利用FDA批准的药物来调节特定的信号传导级联,以保持骨骼肌的再生功能。

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