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Fiber types in mammalian skeletal muscles.

机译:哺乳动物骨骼肌中的纤维类型。

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Mammalian skeletal muscle comprises different fiber types, whose identity is first established during embryonic development by intrinsic myogenic control mechanisms and is later modulated by neural and hormonal factors. The relative proportion of the different fiber types varies strikingly between species, and in humans shows significant variability between individuals. Myosin heavy chain isoforms, whose complete inventory and expression pattern are now available, provide a useful marker for fiber types, both for the four major forms present in trunk and limb muscles and the minor forms present in head and neck muscles. However, muscle fiber diversity involves all functional muscle cell compartments, including membrane excitation, excitation-contraction coupling, contractile machinery, cytoskeleton scaffold, and energy supply systems. Variations within each compartment are limited by the need of matching fiber type properties between different compartments. Nerve activity is a major control mechanism of the fiber type profile, and multiple signaling pathways are implicated in activity-dependent changes of muscle fibers. The characterization of these pathways is raising increasing interest in clinical medicine, given the potentially beneficial effects of muscle fiber type switching in the prevention and treatment of metabolic diseases.
机译:哺乳动物的骨骼肌包括不同的纤维类型,其身份首先是在胚胎发育过程中通过内在的肌源性控制机制建立的,随后又受到神经和激素因素的调节。不同纤维类型的相对比例在物种之间显着变化,并且在人类中显示出个体之间的显着差异。肌球蛋白重链同工型,现在可以得到完整的库存和表达方式,为躯干和四肢肌肉中存在的四种主要形式以及头颈部肌肉中存在的次要形式提供了一种有用的纤维类型标记。但是,肌肉纤维的多样性涉及所有功能性肌肉细胞区室,包括膜激发,激发-收缩偶联,收缩机械,细胞骨架支架和能量供应系统。每个隔室中的变化受到不同隔室之间匹配纤维类型特性的需要的限制。神经活动是纤维类型分布的主要控制机制,并且多种信号通路与肌肉纤维的活动依赖性变化有关。考虑到肌肉纤维类型转换在代谢疾病的预防和治疗中的潜在有益作用,这些途径的表征正引起人们对临床医学的日益关注。

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