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肌发生和肌肉再生。

Myogenesis and muscle regeneration.

机构信息

Department of Anatomy and Molecular Embryology, Institute of Anatomy, Ruhr University Bochum, 44780 Bochum, Germany.

出版信息

Histochem Cell Biol. 2012 Aug;138(2):187-99. doi: 10.1007/s00418-012-0972-x. Epub 2012 May 27.

Abstract

Skeletal muscle has received much attention with regard to developmental origin, control of cell differentiation and regeneration. In this article, early landmarks in skeletal muscle research are reviewed and recent findings on myogenesis are addressed with particular focus on novel regulatory molecules including miRNAs, as well as on the topographical heterogeneity of skeletal muscle origin. The latter has developed into a central theme of keen interest in the past years, particularly since overlaps in genetic and embryological background between head muscle subsets and heart muscle have been described. As embryonic myogenesis and regenerating myofibers employ common molecules, the heterogeneity in embryonic sources from which skeletal muscle groups in the vertebrate body take origin is closely reflected by differences in the susceptibility to particular muscle dystrophies as well as their regeneration potential. In the regeneration chapter of this review the progress that has been made in the field of muscle stem cell biology, with special focus on the satellite cells, is outlined. Satellite cells are considered the most promising source of muscle stem cells possessing a high regenerative potential. We shall discuss recent insights into the heterogeneous nature of these satellite cells not just in terms of their expression profile but also their regeneration potential. Latest findings about the motility of the satellite cell shall also be discussed. Furthermore, we shall outline the impact of an improved understanding of muscle stem cells within their environment, and of satellite cells in particular, on efficient stem cell replacement therapies for muscular dystrophies, putting embryological findings and stem cell approaches into context.

摘要

骨骼肌的发育起源、细胞分化和再生的控制受到了广泛关注。本文回顾了骨骼肌研究的早期里程碑,并重点介绍了成肌发生的最新发现,特别关注包括 miRNA 在内的新型调节分子,以及骨骼肌起源的拓扑异质性。后者已成为近年来人们关注的核心主题,特别是因为已经描述了头部肌肉亚群和心脏肌肉之间在遗传和胚胎背景上的重叠。由于胚胎成肌发生和再生肌纤维使用共同的分子,因此在脊椎动物体内起源的骨骼肌群的胚胎来源的异质性在特定肌肉营养不良的易感性及其再生潜力方面得到了很好的反映。在本综述的肌肉再生部分,概述了肌肉干细胞生物学领域的进展,特别关注卫星细胞。卫星细胞被认为是具有高再生潜力的肌肉干细胞的最有希望的来源。我们将讨论最近对这些卫星细胞异质性的深入了解,不仅在其表达谱方面,而且在其再生潜力方面。还将讨论卫星细胞的运动性的最新发现。此外,我们将概述在肌肉干细胞及其微环境,特别是卫星细胞中的理解的提高对肌肉营养不良的有效干细胞替代治疗的影响,将胚胎学发现和干细胞方法置于上下文中。

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