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当前重金属诱导男性生殖毒性的机制观点。

Current mechanistic perspectives on male reproductive toxicity induced by heavy metals.

机构信息

World Bank Africa Centre of Excellence in Oilfield Chemicals Research (CEFOR), University of Port Harcourt, Port Harcourt, Rivers State, Nigeria.

Department of Experimental Pharmacology & Toxicology, Faculty of Pharmacy, University of Port Harcourt, Port Harcourt, Rivers State, Nigeria.

出版信息

J Environ Sci Health C Toxicol Carcinog. 2020;38(3):204-244. doi: 10.1080/26896583.2020.1782116. Epub 2020 Jul 10.

Abstract

Environmental and occupational exposures to heavy metals have led to various deleterious damages to the biological system of which infertility is one of them. Infertility is a global public health concern, affecting 15% of all couples of reproductive age. Out of the 100% cases of reported infertility among couples, 40% of the cases are related to male factors; including decreased semen quality. This review focuses on the recent mechanistic perspectives of heavy metal-induced male reproductive toxicity. The associated toxic metal-mediated mechanisms of male reproductive toxicity include ion mimicry, disruption of cell signaling pathways, oxidative stress, altered gene expression, epigenetic regulation of gene expression, apoptosis, disruption of testis/blood barrier, inflammation and endocrine disruption. The current literature suggests that non-coding RNAs (ncRNAs) mediate paternal intergenerational epigenetic inheritance and thus has a direct functional importance, as well as possess novel biomarker potential, for male reproductive toxicity. To identify the specific ncRNAs with the most profound impacts on heavy metal-induced male reproductive toxicity should be thrust of further research.

摘要

环境和职业暴露于重金属会对生物系统造成各种有害影响,其中不孕是其中之一。不孕是一个全球性的公共卫生问题,影响到所有育龄夫妇的 15%。在报告的夫妇不孕病例中,有 40%与男性因素有关;包括精液质量下降。本综述重点介绍了重金属诱导的男性生殖毒性的最新机制观点。与男性生殖毒性相关的毒性金属介导的机制包括离子模拟、细胞信号通路的破坏、氧化应激、基因表达改变、基因表达的表观遗传调控、细胞凋亡、睾丸/血屏障破坏、炎症和内分泌干扰。目前的文献表明,非编码 RNA(ncRNA)介导亲代跨代表观遗传遗传,因此具有直接的功能重要性,并具有潜在的新型生物标志物,用于男性生殖毒性。确定对重金属诱导的男性生殖毒性影响最大的特定 ncRNA 应该是进一步研究的重点。

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