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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Oxidative stress inhibits adhesion and transendothelial migration, and induces apoptosis and senescence of induced pluripotent stem cells
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Oxidative stress inhibits adhesion and transendothelial migration, and induces apoptosis and senescence of induced pluripotent stem cells

机译:氧化应激抑制粘附和跨内皮迁移,并诱导诱导的多能干细胞凋亡和衰老

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Summary: Oxidative stress caused by cellular accumulation of reactive oxygen species (ROS) is a major contributor to disease and cell death. However, how induced pluripotent stem cells (iPSC) respond to different levels of oxidative stress is largely unknown. Here, we investigated the effect of H2O2-induced oxidative stress on iPSC function in vitro. Mouse iPSC were treated with H2O2 (25-100 μmol/L). IPSC adhesion, migration, viability, apoptosis and senescence were analysed. Expression of adhesion-related genes, stress defence genes, and osteoblast- and adipocyte-associated genes were determined by reverse transcription polymerase chain reaction. The present study found that H2O2 (25-100 μmol/L) decreased iPSC adhesion to matrix proteins and endothelial cells, and downregulated gene expression levels of adhesion-related molecules, such as integrin alpha 7, cadherin 1 and 5, melanoma cell adhesion molecule, vascular cell adhesion molecule 1, and monocyte chemoattractant protein-1. H2O2 (100 μmol/L) decreased iPSC viability and inhibited the capacity of iPSC migration and transendothelial migration. iPSC were sensitive to H2O2-induced G2/M arrest, senescence and apoptosis when exposed to H2O2 at concentrations above 25 μmol/L. H2O2 increased the expression of stress defence genes, including catalase, cytochrome B alpha, lactoperoxidase and thioredoxin domain containing 2. H2O2 upregulated the expression of osteoblast- and adipocyte-associated genes in iPSC during their differentiation; however, short-term H2O2-induced oxidative stress did not affect the protein expression of the pluripotency markers, octamer-binding transcription factor 4 and sex-determining region Y-box 2. The present results suggest that iPSC are sensitive to H2O2 toxicity, and inhibition of oxidative stress might be a strategy for improving their functions.
机译:摘要:由活性氧(ROS)的细胞积累引起的氧化应激是导致疾病和细胞死亡的主要因素。但是,诱导多能干细胞(iPSC)如何对不同水平的氧化应激作出反应在很大程度上尚不清楚。在这里,我们研究了H2O2诱导的氧化应激对iPSC功能的影响。小鼠iPSC用过氧化氢(25-100μmol/ L)处理。分析了IPSC的粘附,迁移,生存力,凋亡和衰老。通过逆转录聚合酶链反应确定粘附相关基因,压力防御基因以及成骨细胞和脂肪细胞相关基因的表达。本研究发现,H2O2(25-100μmol/ L)降低iPSC对基质蛋白和内皮细胞的粘附,并下调粘附相关分子(如整合素α7,钙黏着蛋白1和5,黑素瘤细胞粘附分子)的基因表达水平。 ,血管细胞粘附分子1和单核细胞趋化蛋白1。 H2O2(100μmol/ L)降低了iPSC的活力,并抑制了iPSC迁移和跨内皮迁移的能力。当暴露于浓度超过25μmol/ L的H2O2时,iPSC对H2O2诱导的G2 / M阻滞,衰老和细胞凋亡敏感。 H2O2增加了包括2的过氧化氢酶,细胞色素Bα,乳过氧化物酶和硫氧还蛋白结构域在内的应激防御基因的表达。H2O2在分化过程中上调了iPSC中成骨细胞和脂肪细胞相关基因的表达;然而,短期H2O2诱导的氧化应激并没有影响多能性标志物,八聚体结合转录因子4和性别决定区域Y-box 2的蛋白质表达。目前的结果表明iPSC对H2O2毒性敏感,并且抑制氧化应激可能是改善其功能的策略。

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