首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Inhibition of cellular senescence by developmentally regulated FGF receptors in mesenchymal stem cells.
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Inhibition of cellular senescence by developmentally regulated FGF receptors in mesenchymal stem cells.

机译:间充质干细胞中发育受调节的FGF受体抑制细胞衰老。

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摘要

Bone-derived mesenchymal stem cells (MSCs) are important cells for use in cell therapy, tissue engineering, and regenerative medicine, but also to study bone development, homeostasis, and repair. However, little is known about their developmental ontology and in vivo identity. Because fibroblast growth factors (FGFs) play key roles in bone development and their receptors are developmentally regulated in bones, we hypothesized that MSCs should express FGF receptors (FGFRs), reflecting their developmental origin and potential. We show here that FGFR1/2 are expressed by rare mesenchymal progenitors in putative MSC niches in vivo, including the perichondrium, periosteum, and trabecular marrow. FGFR1 cells often appeared as pericytes. These cells display a characteristic MSC phenotype in vitro when expanded with FGF-2, which appears to maintain MSC stemness by inhibiting cellular senescence through a PI3K/AKT-MDM2 pathway and by promoting proliferation. FGFRs may therefore be involved in MSC self-renewal. In summary, FGFR1/2 are developmentally regulated markers of MSCs in vivo and in vitro and are important in maintaining MSC stemness.
机译:骨源间充质干细胞(MSC)是重要的细胞,可用于细胞治疗,组织工程和再生医学,也可用于研究骨骼发育,体内稳态和修复。然而,关于它们的发育本体和体内身份知之甚少。因为成纤维细胞生长因子(FGFs)在骨骼发育中起着关键作用,并且它们的受体在骨骼中受到发育调节,所以我们假设MSC应该表达FGF受体(FGFRs),反映它们的发育起源和潜力。我们在这里显示,FGFR1 / 2在体内假定的MSC壁ni中由罕见的间充质祖细胞表达,包括软骨膜,骨膜和小梁骨髓。 FGFR1细胞通常以周细胞的形式出现。当用FGF-2扩增时,这些细胞在体外表现出特征性的MSC表型,它似乎通过PI3K / AKT-MDM2途径抑制细胞衰老并促进增殖来维持MSC干细胞。因此,FGFR可能参与了MSC的自我更新。综上所述,FGFR1 / 2是体内和体外MSCs的发育调控标记,对维持MSC的干性非常重要。

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