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The environment and male reproduction: The effect of cadmium exposure on reproductive function and its implication in fertility

机译:环境与男性繁殖:镉暴露对生育功能及其对生育的影响

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Highlights ? Cadmium is a male reproductive toxicant acting by several pathogenetic mechanisms. ? Cadmium exerts toxic effects even at low levels of exposure. ? Observational studies reported conflicting data; study designs need to be improved. ? Additional experimental studies in humans are recommended. Abstract Cadmium is an environmental pollutant known as endocrine disruptor. Testis is particularly susceptible to cadmium, and testis injury occurs at high but even low levels of exposure. Cadmium reproductive toxicity is mediated by multiple mechanisms, including structural damage to testis vasculature and blood-testis barrier, inflammation, cytotoxicity on Sertoli and Leydig cells, oxidative stress mainly by means of mimicry and interference with essential ions, apoptosis, interference with selected signaling pathways and epigenetic regulation of genes involved in the regulation of reproductive function, and disturbance of the hypothalamus-pituitary-gonadal axis. The current review outlines epidemiological observational findings from environmental and occupational exposure in humans, and reports experimental studies in humans and animals. Lastly, a focus on the pathogenetic mechanisms of cadmium toxicity and on the specific mechanisms of cadmium sensitivity and resistance, particularly assessed in animal models, is included. Despite convincing experimental findings in animals and supporting evidences in humans identifying cadmium as reproductive toxicant, observational findings are controversial, suffering from heterogeneity of study design and pattern of exposure, and from co-exposure to multiple pollutants.
机译:强调 ?镉是一种由几种致病机制作用的男性生殖毒物。还镉即使在低水平的曝光率下也会发挥毒性作用。还观察性研究报告数据冲突;研究设计需要改进。还建议使用其他实验研究。摘要镉是一种被称为内分泌破坏器的环境污染物。睾丸特别易于镉,并且睾丸损伤发生在高但甚至低水平的暴露中。镉繁殖毒性由多种机制介导,包括睾丸血管系统和血液睾丸屏障,炎症,细胞毒性对血清和裂片细胞的结构损伤,氧化应激主要通过模仿和干扰对必需离子,细胞凋亡,干扰与所选信号传导途径的干扰和表观遗传调节参与生殖功能调控的基因,以及下丘脑 - 垂体 - 垂体轴的干扰。目前的审查概述了人类环境和职业暴露的流行病学观察结果,并报告了人类和动物的实验研究。最后,包括镉毒性和镉敏感性和抗性特定机制的关注,特别是在动物模型中进行的镉敏感性和抗性的特定机制。尽管令人信服动物的实验结果和鉴定镉的人类作为生殖毒物的支持证据,但观察结果是有争议的,患有研究设计和暴露模式的异质性,以及来自多种污染物的共同暴露。

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