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肌肉卫星细胞:探索调控它们的基础生物学

Muscle Satellite Cells: Exploring the Basic Biology to Rule Them.

作者信息

Almeida Camila F, Fernandes Stephanie A, Ribeiro Junior Antonio F, Keith Okamoto Oswaldo, Vainzof Mariz

机构信息

Human Genome and Stem Cell Research Center, IBUSP, Rua do Matão 106, Cidade Universitária, 5508-900 São Paulo, SP, Brazil.

出版信息

Stem Cells Int. 2016;2016:1078686. doi: 10.1155/2016/1078686. Epub 2016 Mar 3.

Abstract

Adult skeletal muscle is a postmitotic tissue with an enormous capacity to regenerate upon injury. This is accomplished by resident stem cells, named satellite cells, which were identified more than 50 years ago. Since their discovery, many researchers have been concentrating efforts to answer questions about their origin and role in muscle development, the way they contribute to muscle regeneration, and their potential to cell-based therapies. Satellite cells are maintained in a quiescent state and upon requirement are activated, proliferating, and fusing with other cells to form or repair myofibers. In addition, they are able to self-renew and replenish the stem pool. Every phase of satellite cell activity is highly regulated and orchestrated by many molecules and signaling pathways; the elucidation of players and mechanisms involved in satellite cell biology is of extreme importance, being the first step to expose the crucial points that could be modulated to extract the optimal response from these cells in therapeutic strategies. Here, we review the basic aspects about satellite cells biology and briefly discuss recent findings about therapeutic attempts, trying to raise questions about how basic biology could provide a solid scaffold to more successful use of these cells in clinics.

摘要

成年骨骼肌是一种有丝分裂后组织,在受伤后具有巨大的再生能力。这是由驻留干细胞(即卫星细胞)完成的,卫星细胞在50多年前就已被识别。自发现以来,许多研究人员一直致力于回答有关其起源、在肌肉发育中的作用、对肌肉再生的贡献方式以及在基于细胞的治疗中的潜力等问题。卫星细胞维持在静止状态,在需要时被激活,进行增殖并与其他细胞融合以形成或修复肌纤维。此外,它们能够自我更新并补充干细胞池。卫星细胞活动的每个阶段都受到许多分子和信号通路的高度调节与协调;阐明卫星细胞生物学中涉及的参与者和机制至关重要,这是揭示在治疗策略中可对哪些关键点进行调节以从这些细胞中获取最佳反应的第一步。在此,我们回顾卫星细胞生物学的基本方面,并简要讨论治疗尝试的最新发现,试图提出关于基础生物学如何能为在临床上更成功地利用这些细胞提供坚实框架的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04ab/4794588/e0cc6e7a0a83/SCI2016-1078686.001.jpg

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