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首页> 外文期刊>Stem cell research >Fetal muscle contains different CD34+ cell subsets that distinctly differentiate into adipogenic, angiogenic and myogenic lineages - ScienceDirect
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Fetal muscle contains different CD34+ cell subsets that distinctly differentiate into adipogenic, angiogenic and myogenic lineages - ScienceDirect

机译:胎儿肌肉包含不同的CD34 +细胞亚群,这些亚群可明显区分为成脂,血管生成和成肌谱系-ScienceDirect

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We have previously demonstrated that CD34+ cells isolated from fetal mouse muscles are an interesting source of myogenic progenitors. In the present work, we pinpoint the tissue location of these CD34+ cells using cell surface and phenotype markers. In order to identify the myogenic population, we next purified different CD34+ subsets, determined their expression of relevant lineage-related genes, and analyzed their differentiation capacities in vitro and in vivo. The CD34+ population comprised a CD31+/CD45? cell subset exhibiting endothelial characteristics and only capable of forming microvessels in vivo. The CD34+/CD31?/CD45?/Sca1+ subpopulation, which is restricted to the muscle epimysium, displayed adipogenic differentiation both in vitro and in vivo. CD34+/CD31?/CD45?/Sca1? cells, localized in the muscle interstitium, transcribed myogenic genes, but did not display the characteristics of adult satellite cells. These cells were distinct from pericytes and fibroblasts. They were myogenic in vitro, and efficiently contributed to skeletal muscle regeneration in vivo, although their myogenic potential was lower than that of the unfractionated CD34+ cell population. Our results indicate that angiogenic and adipogenic cells grafted with myogenic cells enhance their contribution to myogenic regeneration, highlighting the fundamental role of the microenvironment on the fate of transplanted cells.
机译:先前我们已经证明,从胎儿小鼠肌肉分离的CD34 +细胞是成肌祖细胞的有趣来源。在目前的工作中,我们使用细胞表面和表型标记物来定位这些CD34 +细胞的组织位置。为了鉴定肌原性种群,我们接下来纯化了不同的CD34 +亚群,确定了它们与相关谱系相关基因的表达,并分析了它们在体内和体外的分化能力。 CD34 +群体包括CD31 + / CD45?细胞子集具有内皮特性,仅能在体内形成微血管。局限于肌肉上皮细胞的CD34 + /CD31β/CD45β/ Sca1 +亚群在体外和体内均显示出成脂分化。 CD34 + / CD31?/ CD45?/ Sca1?位于肌间质中的细胞转录了成肌基因,但未显示成年卫星细胞的特征。这些细胞不同于周细胞和成纤维细胞。它们的体外成肌能力,并有效地促进了体内骨骼肌的再生,尽管它们的成肌潜能低于未分级的CD34 +细胞群。我们的结果表明,嫁接成肌细胞的血管生成和成脂细胞增强了它们对成肌再生的贡献,突出了微环境对移植细胞命运的根本作用。

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