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Muscle satellite cells and impaired late stage regeneration in different murine models for muscular dystrophies

机译:肌肉营养不良的不同小鼠模型中的肌肉卫星细胞和晚期再生受损

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摘要

Satellite cells (SCs) are the main muscle stem cells responsible for its regenerative capacity. In muscular dystrophies, however, a failure of the regenerative process results in muscle degeneration and weakness. To analyze the effect of different degrees of muscle degeneration in SCs behavior, we studied adult muscle of the dystrophic strains: DMDmdx, Largemyd, DMDmdx/Largemyd, with variable histopathological alterations. Similar results were observed in the dystrophic models, which maintained normal levels of PAX7 expression, retained the Pax7-positive SCs pool, and their proliferation capacity. Moreover, elevated expression of MYOG, an important myogenic factor, was also observed. The ability to form new fibers was verified by the presence of dMyHC positive regenerating fibers. However, those fibers had incomplete maturation characteristics, such as small and homogenous fiber caliber, which could contribute to their dysfunction. We concluded that dystrophic muscles, independently of their degeneration degree, retain their SCs pool with proliferating and regenerative capacities. Nonetheless, the maturation of these new fibers is incomplete and do not prevent muscle degeneration. Taken together, these results suggest that the improvement of late muscle regeneration should better contribute to therapeutic approaches.
机译:卫星细胞(SCs)是负责其再生能力的主要肌肉干细胞。然而,在肌肉营养不良中,再生过程的失败导致肌肉变性和虚弱。为了分析不同程度的肌肉变性对SCs行为的影响,我们研究了营养不良菌株的成年肌肉:DMD mdx ,大 myd ,DMD mdx / Large myd ,具有可变的组织病理学改变。在营养不良模型中观察到了相似的结果,该模型维持了正常的PAX7表达水平,保留了Pax7阳性的SCs库及其增殖能力。此外,还观察到了重要的成肌因子MYOG的表达升高。 dMyHC阳性再生纤维的存在证实了形成新纤维的能力。然而,这些纤维具有不完全的成熟特性,例如较小且均一的纤维口径,这可能导致它们的功能障碍。我们得出的结论是,营养不良的肌肉,无论其退化程度如何,都可以保持其SC池,并具有增殖和再生能力。然而,这些新纤维的成熟是不完全的,并且不能防止肌肉变性。综上所述,这些结果表明晚期肌肉再生的改善应更好地有助于治疗方法。

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