首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Preparation and Culture of Myogenic Precursor Cells/Primary Myoblasts from Skeletal Muscle of Adult and Aged Humans
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Preparation and Culture of Myogenic Precursor Cells/Primary Myoblasts from Skeletal Muscle of Adult and Aged Humans

机译:成人和老年人骨骼肌的成肌前体细胞/原代成肌细胞的制备和培养

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摘要

Skeletal muscle homeostasis depends on muscle growth (hypertrophy), atrophy and regeneration. During ageing and in several diseases, muscle wasting occurs. Loss of muscle mass and function is associated with muscle fiber type atrophy, fiber type switching, defective muscle regeneration associated with dysfunction of satellite cells, muscle stem cells, and other pathophysiological processes. These changes are associated with changes in intracellular as well as local and systemic niches. In addition to most commonly used rodent models of muscle ageing, there is a need to study muscle homeostasis and wasting using human models, which due to ethical implications, consist predominantly of in vitro cultures. Despite the wide use of human Myogenic Progenitor Cells (MPCs) and primary myoblasts in myogenesis, there is limited data on using human primary myoblast and myotube cultures to study molecular mechanisms regulating different aspects of age-associated muscle wasting, aiding in the validation of mechanisms of ageing proposed in rodent muscle. The use of human MPCs, primary myoblasts and myotubes isolated from adult and aged people, provides a physiologically relevant model of molecular mechanisms of processes associated with muscle growth, atrophy and regeneration. Here we describe in detail a robust, inexpensive, reproducible and efficient protocol for the isolation and maintenance of human MPCs and their progeny — myoblasts and myotubes from human muscle samples using enzymatic digestion. Furthermore, we have determined the passage number at which primary myoblasts from adult and aged people undergo senescence in an in vitro culture. Finally, we show the ability to transfect these myoblasts and the ability to characterize their proliferative and differentiation capacity and propose their suitability for performing functional studies of molecular mechanisms of myogenesis and muscle wasting in vitro.
机译:骨骼肌的动态平衡取决于肌肉的生长(肥大),萎缩和再生。在衰老期间以及在某些疾病中,会发生肌肉萎缩。肌肉质量和功能的丧失与肌肉纤维型萎缩,纤维类型转换,与卫星细胞,肌肉干细胞功能障碍和其他病理生理过程相关的肌肉再生不良有关。这些变化与细胞内以及局部和全身性壁ches的变化有关。除了最常用的肌肉衰老啮齿动物模型外,还需要使用人类模型研究肌肉的稳态和消瘦,这是出于伦理学的考虑,主要由体外培养组成。尽管在成肌过程中广泛使用了人类成肌祖细胞(MPC)和原代成肌细胞,但有关使用人原代成肌细胞和成肌细胞培养物研究调节与年龄相关的肌肉消瘦的不同方面的分子机制(以帮助验证机制)的数据有限啮齿动物肌肉老化的建议。从成人和老年人中分离出的人MPC,原代成肌细胞和肌管的使用,提供了与肌肉生长,萎缩和再生相关的分子机制的生理相关模型。在这里,我们详细描述了一种健壮,廉价,可重现和有效的方案,用于通过酶消化从人类肌肉样本中分离和维持人类MPC及其子代-成肌细胞和肌管。此外,我们确定了成年和老年人原代成肌细胞在体外培养中衰老的传代次数。最后,我们展示了转染这些成肌细胞的能力,以及表征它们的增殖和分化能力的能力,并提出了它们适用于进行肌发生和肌肉消瘦的分子机制的功能研究的适用性。

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