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Pre-culturing human adipose tissue mesenchymal stem cells under hypoxia increases their adipogenic and osteogenic differentiation potentials

机译:在缺氧条件下预培养人脂肪组织间充质干细胞可增加其成脂和成骨分化潜能

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Objectives: Hypoxia is an important factor in many aspects of stem-cell biology including their viability, proliferation, differentiation and migration. We evaluated whether low oxygen level (2%) affected human adipose tissue mesenchymal stem-cell (hAT-MSC) phenotype, population growth, viability, apoptosis, necrosis and their adipogenic and osteogenic differentiation potential. Materials and methods: hAT-MSCs from four human donors were cultured in growth medium under either normoxic or hypoxic conditions for 7 days and were then transferred to normoxic conditions to study their differentiation potential. Results: Hypoxia enhanced hAT-MSC expansion and viability, whereas expression of mesenchymal markers such as CD90, CD73 and endothelial progenitor cell marker CD34, remained unchanged. We also found that pre-culturing hAT-MSCs under hypoxia resulted in their enhanced ability to differentiate into adipocytes and osteocytes. Conclusions: This protocol could be useful for maximizing hAT-MSC potential to differentiate in vitro into the adipogenic and osteogenic lineages, for use in plastic and reconstructive surgery, and in tissue engineering strategies.
机译:目的:缺氧是干细胞生物学许多方面的重要因素,包括其生存能力,增殖,分化和迁移。我们评估了低氧水平(2%)是否会影响人类脂肪组织间充质干细胞(hAT-MSC)表型,种群增长,生存力,细胞凋亡,坏死及其成脂和成骨分化潜能。材料和方法:将来自四个人类供体的hAT-MSC在常氧或低氧条件下的生长培养基中培养7天,然后转移至常氧条件下研究其分化潜能。结果:缺氧增强了hAT-MSC的扩增和生存能力,而间充质标志物如CD90,CD73和内皮祖细胞标志物CD34的表达则保持不变。我们还发现,在缺氧条件下进行hAT-MSC的预培养会导致其分化为脂肪细胞和骨细胞的能力增强。结论:该方案可用于最大化hAT-MSC在体外分化为成脂和成骨谱系的潜力,用于整形和重建手术以及组织工程策略。

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