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首页> 外文期刊>Differentiation: The Journal of the International Society of Differentiation >Cell cycle regulators are critical for maintaining the differentiation potential and immaturity in adipogenesis of adipose-derived stem cells.
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Cell cycle regulators are critical for maintaining the differentiation potential and immaturity in adipogenesis of adipose-derived stem cells.

机译:细胞周期调节剂对于维持脂肪干细胞在脂肪形成中的分化潜能和不成熟至关重要。

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A single cell division is governed by the catalytic reactions of cyclins and cyclin-dependent kinases (CDKs). Stem cells are unique in that they can differentiate into tissue-specific cell types (lineage commitment) during cell division (self-renewal). In this study, we analyzed changes in the differentiation potency of adipose tissue-derived stem cells (ADSCs) according to the number of spontaneous cell divisions. We used low passage number (p3) to late passage number (p60) adipose-derived stem cells (ADSCs) as our model system. A preliminary investigation of the typical stem cell phenotypes revealed that CD44 expression decreased remarkably as the passage number of the ADSCs increased. Further examinations revealed that the higher the cell passage number, the lower the cell proliferation capability, differentiation potency, and expression of stem cell transcriptional factors and cell cycle regulators such as cyclins E, A, B, CDK2, and CDK1/CDC2. To verify if the observed changes in differentiation potency according to the number of cell divisions were related to cell cycle regulators, p3 ADSCs were treated with the selective CDK2 and CDK1/CDC2 inhibitor Purvalanol A. Inhibitor treatment of p3 ADSCs induced changes in the morphology, differentiation potency, and pattern of stem cell transcriptional factor expression so that these low passage ADSCs more closely resembled high-passage ADSCs. Collectively, our results indicate that cell cycle regulators control the differentiation potency of ADSCs, and provide insights into the cell biology and differentiation potency of ADSCs according to the number of cell divisions.
机译:单细胞分裂由细胞周期蛋白和细胞周期蛋白依赖性激酶(CDK)的催化反应控制。干细胞的独特之处在于,它们可以在细胞分裂(自我更新)过程中分化为组织特异性细胞类型(谱系承诺)。在这项研究中,我们根据自发细胞分裂的数量分析了脂肪组织衍生干细胞(ADSCs)分化潜能的变化。我们使用低传代数(p3)至晚期传代数(p60)脂肪干细胞(ADSC)作为我们的模型系统。对典型干细胞表型的初步研究表明,随着ADSC传代次数的增加,CD44表达显着下降。进一步的检查表明,细胞传代数越高,细胞增殖能力,分化潜能以及干细胞转录因子和细胞周期调节因子(如细胞周期蛋白E,A,B,CDK2和CDK1 / CDC2)的表达越低。为了验证观察到的根据细胞分裂数目的分化潜能变化是否与细胞周期调节剂有关,用选择性CDK2和CDK1 / CDC2抑制剂Purvalanol A处理p3 ADSC。对p3 ADSC的抑制剂处理可诱导形态变化,分化潜能和干细胞转录因子表达模式,使这些低传代ADSC与高传代ADSC更加相似。总体而言,我们的结果表明,细胞周期调节因子可控制ADSCs的分化潜能,并根据细胞分裂的数量深入了解ADSCs的细胞生物学和分化潜能。

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