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刘叶, 刘子祺, 陈雯, 王庆. 镉表观遗传毒性研究进展[J]. 中国公共卫生, 2020, 36(8): 1152-1156. DOI: 10.11847/zgggws1123116
引用本文: 刘叶, 刘子祺, 陈雯, 王庆. 镉表观遗传毒性研究进展[J]. 中国公共卫生, 2020, 36(8): 1152-1156. DOI: 10.11847/zgggws1123116
Ye LIU, Zi-qi LIU, Wen CHEN, . Advances in researches on epigenetic toxicity of cadmium[J]. Chinese Journal of Public Health, 2020, 36(8): 1152-1156. DOI: 10.11847/zgggws1123116
Citation: Ye LIU, Zi-qi LIU, Wen CHEN, . Advances in researches on epigenetic toxicity of cadmium[J]. Chinese Journal of Public Health, 2020, 36(8): 1152-1156. DOI: 10.11847/zgggws1123116

镉表观遗传毒性研究进展

Advances in researches on epigenetic toxicity of cadmium

  • 摘要: 镉是一种常见的重金属毒物,工业上含镉化合物产品的广泛使用不可避免地会导致镉的环境污染,并主要通过食物链进入机体。镉对生物体的毒作用包括肝肾损伤、神经内分泌、生殖发育及致癌致畸等方面,并且可能与发育源性疾病间具有紧密的关联。表观遗传可以在不改变DNA序列的情况下调控基因的表达,主要方式包括DNA甲基化、组蛋白修饰、非编码RNA调控 (ncRNA)。遗传学机制已被证实是含镉化学物发挥毒作用的重要机制,但近年来的研究表明表观遗传学修饰在调控镉的毒效应中的作用可能更为重要。因此,本文对表观遗传修饰的变化在镉发挥毒性效应中的作用作一综述。

     

    Abstract: Cadmium is one of the most common heavy metal toxicant and mainly enters body through the food chain. In industry, the extensive use of cadmium compounds will inevitably result in environmental cadmium contamination. The toxic effects of cadmium on organisms include liver and kidney damage, neuroendocrine, reproductive development and carcinogenic teratogenesis, and may be closely related to developmental diseases. Epigenetics can regulate gene expressions without altering the DNA sequence, including DNA methylation, histone modification, and non-coding RNA. Genetic mechanisms have been shown to be one of the important mechanisms for toxic effects of cadmium-containing chemicals, but recent studies have shown that the role of epigenetics modifications in regulating the toxic effects of cadmium may be more important. Therefore, we review the role of epigenetic modification in the toxic effects of cadmium.

     

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