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Physiological levels of reactive oxygen species are required to maintain genomic stability in stem cells.

机译:需要活性氧物质的生理水平来维持干细胞中的基因组稳定性。

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摘要

Stem cell cytogenetic abnormalities constitute a roadblock to regenerative therapies. We investigated the possibility that reactive oxygen species (ROSs) influence genomic stability in cardiac and embryonic stem cells. Karyotypic abnormalities in primary human cardiac stem cells were suppressed by culture in physiological (5%) oxygen, but addition of antioxidants to the medium unexpectedly increased aneuploidy. Intracellular ROS levels were moderately decreased in physiological oxygen, but dramatically decreased by the addition of high-dose antioxidants. Quantification of DNA damage in cardiac stem cells and in human embryonic stem cells revealed a biphasic dose-dependence: antioxidants suppressed DNA damage at low concentrations, but potentiated such damage at higher concentrations. High-dose antioxidants decreased cellular levels of ATM (ataxia-telangiectasia mutated) and other DNA repair enzymes, providing a potential mechanistic basis for the observed effects. These results indicate that physiological levels of intracellular ROS are required to activate the DNA repair pathway for maintaining genomic stability in stem cells. The concept of an oxidative optimum biology and carcinogenesis.
机译:干细胞细胞遗传学异常构成了再生疗法的障碍。我们调查了活性氧物质(罗斯)在心脏和胚胎干细胞中影响基因组稳定性的可能性。通过生理(5%)氧的培养物抑制初级人心脏干细胞的核型异常,但向培养基中加入抗氧化剂意外增加的非综太增量。在生理氧中,细胞内ROS水平适度降低,但通过添加高剂量抗氧化剂显着降低。心脏干细胞和人胚胎干细胞中DNA损伤的定量揭示了两种剂量依赖性:抗氧化剂在低浓度下抑制DNA损伤,但在较高浓度下造成的这种损伤。高剂量抗氧化剂减少了ATM的细胞水平(Ataxia-Telanciectasia突变)和其他DNA修复酶,为观察到的效果提供潜在的机械基础。这些结果表明,在干细胞中,需要细胞内RO的生理水平来激活DNA修复途径。氧化最佳生物学和致癌物的概念。

著录项

  • 来源
    《Stem Cells》 |2010年第7期|共8页
  • 作者

    Li TS; Marban E;

  • 作者单位

    The Heart Institute Cedars-Sinai Medical Center Los Angeles California 90048 USA.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用一般科学;
  • 关键词

  • 入库时间 2022-08-20 05:47:48

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