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Functional Neuronal Differentiation of Injury-Induced Muscle-Derived Stem Cell-Like Cells with Therapeutic Implications

机译:损伤诱导的肌肉来源的干细胞样细胞的功能神经元分化与治疗意义。

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摘要

Mammalian skeletal muscles contain a number of heterogeneous cell populations. Our previous study characterized a unique population of myogenic lineage stem cells that can be isolated from adult mammalian skeletal muscles upon injury. These injury-induced muscle-derived stem cell-like cells (iMuSCs) displayed a multipotent state with sensitiveness and strong migration abilities. Here, we report that these iMuSCs have the capability to form neurospheres that represent multiple neural phenotypes. The induced neuronal cells expressed various neuron-specific proteins, their mRNA expression during neuronal differentiation recapitulated embryonic neurogenesis, they generated action potentials, and they formed functional synapses in vitro. Furthermore, the transplantation of iMuSCs or their cell extracts into the muscles of mdx mice (i.e., a mouse model of Duchenne Muscular Dystrophy [DMD]) could restore the morphology of their previously damaged neuromuscular junctions (NMJs), suggesting that the beneficial effects of iMuSCs may not be restricted to cell restoration alone, but also due to their transient paracrine actions. The current study reveals the essential role of iMuSCs in the restoration of NMJs related to injuries and diseases.
机译:哺乳动物的骨骼肌包含许多异质细胞群。我们先前的研究描述了独特的成肌谱系干细胞种群,这些成群干细胞可以在受伤后从成年哺乳动物的骨骼肌中分离出来。这些损伤诱导的肌肉来源的干细胞样细胞(iMuSCs)表现出多能状态,具有敏感性和强大的迁移能力。在这里,我们报告这些iMuSCs具有形成代表多种神经表型的神经球的能力。诱导的神经元细胞表达各种神经元特异性蛋白,它们在神经元分化过程中的mRNA表达可概括胚胎神经发生,产生动作电位,并在体外形成功能性突触。此外,将iMuSCs或它们的细胞提取物移植到mdx小鼠(即Duchenne肌肉营养不良[DMD]的小鼠模型)的肌肉中,可以恢复其先前受损的神经肌肉接头(NMJs)的形态,这表明iMuSC可能不仅限于细胞修复,还由于其短暂的旁分泌作用。当前的研究揭示了iMuSC在恢复与伤害和疾病有关的NMJ中的重要作用。

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