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The regulation of myoblast plasticity and its mechanism 被引量:2

The regulation of myoblast plasticity and its mechanism
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摘要 The development of skeletal muscle is a highly regulated,multi-step process in which pluripotent mesodermal cells give rise to myoblasts that subsequently withdraw from the cell cycle and differentiate into myotubes as well as myofibers.The plasticity of myoblasts plays a critical role in maintaining skeletal muscle structure and function by myoblast activation,migration,adhesion,membrane reorganization,nuclear fusion,finally forming myotubes/myofibers.Our studies demonstrate that the local hypoxic microenvironment,a great diversity of regulatory factors such as IL-6 superfamily factors(IL-6,LIF,CNTF) and TGF-β1 could regulate the myoblast plasticity.The aim of this paper is to review the previous studies focused on the regulation of myoblast plasticity and its mechanism in our laboratory.Knowledge about the microenvironment or factors involved in regulating the myoblast plasticity will help develop the prevention and cure measures of skeletal muscle diseases. The development of skeletal muscle is a highly regulated,multi-step process in which pluripotent mesodermal cells give rise to myoblasts that subsequently withdraw from the cell cycle and differentiate into myotubes as well as myofibers.The plasticity of myoblasts plays a critical role in maintaining skeletal muscle structure and function by myoblast activation,migration,adhesion,membrane reorganization,nuclear fusion,finally forming myotubes/myofibers.Our studies demonstrate that the local hypoxic microenvironment,a great diversity of regulatory factors such as IL-6 superfamily factors(IL-6,LIF,CNTF) and TGF-β1 could regulate the myoblast plasticity.The aim of this paper is to review the previous studies focused on the regulation of myoblast plasticity and its mechanism in our laboratory.Knowledge about the microenvironment or factors involved in regulating the myoblast plasticity will help develop the prevention and cure measures of skeletal muscle diseases.
出处 《中国应用生理学杂志》 CAS CSCD 2012年第6期524-531,共8页 Chinese Journal of Applied Physiology
基金 supported by grants from National Basic Research Program of China(2011CB711000) Natural Sciences Foundation of China(31171144 81272177) State Key Laboratory Grant of Space Medicine Fundamentals and Application(SM-FA09A01)
关键词 成肌细胞 可塑性 机制 调控因子 IL-6 骨骼肌 细胞周期 CNTF myoblast plasticity differentiation dedifferentiation myogenesis
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  • 1Li X, Wang X, Zhang P, et al. Extracellular signal-regulated kinase 112 mitogen-activated protein kinase pathway is involved in inhibition of myogenic differentiation of myoblasts by hypoxia[J]. Exp Physiol, 2012, 97(2): 257-264. 被引量:1
  • 2Sun Q, Zhang Y, Yang G, et al. Transforming growth facror-Ibetaregulated miR-24 promotes skeletal muscle differentiation[J]. Nucleic Acids Res, 2008, 36(8): 2690-2699. 被引量:1
  • 3Chen X, Mao Z, Liu S, et al. Dedifferentiation of adult human rnyoblasts induced by ciliary neurotrophic factor in vitm[J]. Mol Bioi Cell, 2005,16(7): 3140-315l. 被引量:1
  • 4Chen X, Zhang P, Liu S, et al. A novel role of CNTF in inducing dedifferentiation of adult human myoblasts via ERKll2 pathway[J]. J Neurochem, 2006, 98(suppll): 74. 被引量:1
  • 5Wang X, Wu H, Zhang Z, et al. Effects of interleukin-6, leukemia inhibitory factor and ciliary neurotrophic factor on the proliferation and differentiation of adult human myoblasts[J]. Cell Mol Neurobi- 01,2008,28(1): 113-124. 被引量:1

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