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Highly efficient, functional engraftment of skeletal muscle stem cells in dystrophic muscles

机译:营养不良的骨骼肌干细胞的高效功能移植

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Satellite cells reside beneath the basal lamina of skeletal muscle fibers and include cells that act as precursors for muscle growth and repair. Although they share a common anatomical localization and typically are considered a homogeneous population, satellite cells actually exhibit substantial heterogeneity. We used cell-surface marker expression to purify from the satellite cell pool a distinct population of skeletal muscle precursors (SMPs) that function as muscle stem cells. When engrafted into muscle of dystrophin-deficient mdx mice, purified SMPs contributed to up to 94% of myofibers, restoring dystrophin expression and significantly improving muscle histology and contractile function. Transplanted SMPs also entered the satellite cell compartment, renewing the endogenous stem cell pool and participating in subsequent rounds of injury repair. Together, these studies indicate the presence in adult skeletal muscle of prospectively isolatable muscle-forming stem cells and directly demonstrate the efficacy of myogenic stem cell transplant for treating muscle degenerative disease.
机译:卫星细胞位于骨骼肌纤维的基底层下方,并且包括充当肌肉生长和修复前体的细胞。尽管它们具有共同的解剖学定位并且通常被视为同质种群,但卫星细胞实际上表现出明显的异质性。我们使用细胞表面标志物表达从卫星细胞池中纯化出不同的骨骼肌前体(SMP)群,它们起着肌肉干细胞的作用。当将其植入肌营养不良蛋白缺陷型mdx小鼠的肌肉中时,纯化的SMP最多可构成94%的肌纤维,恢复肌营养不良蛋白的表达并显着改善肌肉组织学和收缩功能。移植的SMP也进入卫星细胞区室,更新内源性干细胞库并参与随后的损伤修复。总之,这些研究表明成年骨骼肌中存在可能可分离的形成肌肉的干细胞,并直接证明了成肌干细胞移植治疗肌肉变性疾病的功效。

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