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首页> 外文期刊>Journal of Cellular Physiology >Intracellular redox imbalance and extracellular amino acid metabolic abnormality contribute to arsenic-induced developmental retardation in mouse preimplantation embryos.
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Intracellular redox imbalance and extracellular amino acid metabolic abnormality contribute to arsenic-induced developmental retardation in mouse preimplantation embryos.

机译:细胞内氧化还原平衡和细胞外氨基酸代谢异常导致arsenic-induced发育迟缓老鼠胚胎植入前的胚胎。

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摘要

Inorganic arsenic, an environmental contaminant, is known to cause cancer, developmental retardation, and many other serious diseases. Previous researches have shown that arsenic exerts its toxicity partially through generating reactive oxygen species (ROS). However, it is still not well understood how ROS links arsenic exposure to developmental retardation of preimplantation embryo. Here we demonstrate that high-level arsenite induces severe redox imbalance by decreasing the levels of glutathione and increasing the levels of ROS through the oxidative stress adaptor p66Shc, which induces apoptosis by activating the cytochrome c-caspase. In addition, low-level arsenite seriously perturbs the metabolism of extracellular amino acid, especially that of the cytotoxic and antioxidative amino acids in preimplantation embryos, may also be the reason for developmental delay. Furthermore, an antioxidant, N-acetyl-L-cysteine, improves the development of arsenite-exposed embryos by reducing intracellular ROS and adjusting amino acid metabolism, suggesting that increasing the intracellular antioxidant level may have preventive or therapeutic effects on arsenic-induced embryonic toxicity. In conclusion, we suggest that p66Shc-linked redox imbalance and abnormal extracellular amino acid metabolism mediate arsenite-induced embryonic retardation.
机译:无机砷的环境污染物,会导致癌症,发展吗迟钝,和许多其他严重的疾病。以前的研究已经表明砷发挥其毒性通过生成部分活性氧(ROS)。仍然不是很清楚如何ROS砷的链接发展迟缓胚胎植入前的胚胎。高级亚砷酸诱发严重的氧化还原不平衡减少谷胱甘肽的水平并增加活性氧的水平通过诱发的氧化应激适配器p66Shc通过激活细胞色素c-caspase细胞凋亡。此外,亚砷酸低级认真扰乱细胞外氨基酸的代谢酸,特别是细胞毒性在胚胎植入前的抗氧化的氨基酸胚胎,也可能发展的原因延迟。N-acetyl-L-cysteine,提高的发展arsenite-exposed胚胎通过减少细胞内ROS和调整氨基酸新陈代谢,建议增加细胞内抗氧化水平预防或治疗效果arsenic-induced胚胎毒性。结论,我们建议p66Shc-linked氧化还原不平衡和异常细胞外氨基酸代谢调节arsenite-induced胚胎缺陷。

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