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The Suppression of Medium Acidosis Improves the Maintenance and Differentiation of Human Pluripotent Stem Cells at High Density in Defined Cell Culture Medium

机译:抑制中性酸中毒可改善在定义的细胞培养基中高密度人多能干细胞的维持和分化

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摘要

Cell density has profound impacts on the cell culture practices of human pluripotent stem cells. The regulation of cell growth, cell death, pluripotency and differentiation converge at high density, but it is largely unknown how different regulatory mechanisms act at this stage. We use a chemically defined medium to systemically examine cellular activities and the impact of medium components in high-density culture. We show that medium acidosis is the main factor that alters cell cycle, gene expression and cellular metabolism at high cell density. The low medium pH leads to inhibition of glucose consumption, cell cycle arrest, and subsequent cell death. At high cell density, the suppression of medium acidosis with sodium bicarbonate (NaHCO3) significantly increases culture capacity for stem cell survival, derivation, maintenance and differentiation. Our study provides a simple and effective tool to improve stem cell maintenance and applications.
机译:细胞密度对人类多能干细胞的细胞培养实践具有深远的影响。细胞生长,细胞死亡,多能性和分化的调节以高密度收敛,但是在此阶段如何发挥不同的调节机制在很大程度上尚不清楚。我们使用化学定义的培养基来系统地检查细胞活动以及高密度培养物中培养基成分的影响。我们表明中度酸中毒是改变细胞周期,基因表达和高细胞密度的细胞代谢的主要因素。低pH值会导致葡萄糖消耗受到抑制,细胞周期停滞以及随后的细胞死亡。在高细胞密度下,用碳酸氢钠(NaHCO3)抑制中等酸中毒可显着提高培养能力,促进干细胞的存活,衍生,维持和分化。我们的研究提供了一种简单有效的工具来改善干细胞的维护和应用。

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