首页> 外文期刊>Cell and Tissue Research >Hypoxia increases Sca-1/CD44 co-expression in murine mesenchymal stem cells and enhances their adipogenic differentiation potential.
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Hypoxia increases Sca-1/CD44 co-expression in murine mesenchymal stem cells and enhances their adipogenic differentiation potential.

机译:缺氧增加了小鼠间充质干细胞中Sca-1 / CD44的共表达,并增强了其成脂分化潜能。

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Mesenchymal stem cells (MSCs) are usually cultured under normoxic conditions (21% oxygen). However, in vivo, the physiological "niches" for MSCs have a much lower oxygen tension. Because of their plasticity, stem cells are particularly sensitive to their environments, and oxygen tension is one developmentally important stimulus in stem cell biology and plays a role in the intricate balance between cellular proliferation and commitment towards differentiation. Therefore, we investigated here the effect of hypoxia (2% oxygen) on murine adipose tissue (AT) MSC proliferation and adipogenic differentiation. AT cells were obtained from the omental fat and AT-MSCs were selected for their ability to attach to the plastic dishes, and were grown under normoxic and hypoxic conditions. Prior exposure of MSCs to hypoxia led to a significant reduction of ex vivo expansion time, with significantly increased numbers of Sca-1(+) as well as Sca-1(+)/CD44(+)double-positive cells. Under low oxygen culture conditions, the AT-MSC number markedly increased and their adipogenic differentiation potential was reduced. Notably, the hypoxia-mediated inhibition of adipogenic differentiation was reversible: AT-MSCs pre-exposed to hypoxia when switched to normoxic conditions exhibited significantly higher adipogenic differentiation capacity compared to their pre-exposed normoxic-cultured counterparts. Accordingly, the expression of adipocyte-specific genes, peroxisome proliferator activated receptor gamma (Ppargamma), lipoprotein lipase (Lpl) and fatty acid binding protein 4 (Fabp4) were significantly enhanced in hypoxia pre-exposed AT-MSCs. In conclusion, pre-culturing MSCs under hypoxic culture conditions may represent a strategy to enhance MSC production, enrichment and adipogenic differentiation.
机译:间充质干细胞(MSCs)通常在常氧条件下(21%氧气)培养。然而,在体内,MSC的生理“壁ches”具有低得多的氧张力。由于其可塑性,干细胞对周围的环境特别敏感,氧气紧张是干细胞生物学中一项重要的发展刺激因素,并且在细胞增殖与分化承诺之间的复杂平衡中发挥着作用。因此,我们在这里研究了缺氧(2%氧气)对鼠类脂肪组织(AT)MSC增殖和成脂分化的影响。从网膜脂肪中获得AT细胞,并根据其附着于塑料皿的能力选择AT-MSC,并使其在常氧和低氧条件下生长。 MSC先前暴露于低氧状态导致离体扩增时间显着减少,Sca-1(+)以及Sca-1(+)/ CD44(+)双重阳性细胞数量显着增加。在低氧培养条件下,AT-MSC数量显着增加,其成脂分化潜能降低。值得注意的是,低氧介导的脂肪形成分化抑制作用是可逆的:当切换至常氧条件下时,预先暴露于低氧状态的AT-MSCs与其预暴露的常氧培养物相比具有更高的成脂分化能力。因此,在低氧预暴露的AT-MSC中,脂肪细胞特异性基因,过氧化物酶体增殖物激活的受体γ(Ppargamma),脂蛋白脂肪酶(Lpl)和脂肪酸结合蛋白4(Fabp4)的表达显着增强。总之,在低氧培养条件下预培养MSCs可能代表增强MSC产生,富集和成脂分化的策略。

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