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镉诱导致癌的来龙去脉:机制与预防。

Ins and outs of cadmium-induced carcinogenesis: Mechanism and prevention.

机构信息

Graduate School of Medicine, Henan Polytechnic University, Jiaozuo 454000, China; Department of Environmental Health, University of Fukui School of Medical Science, 23-3 Matsuoka Shimoaizuki, Eiheiji, Fukui 910-1193 Japan.

Department of Basic Medical Sciences, College of Medicine, King Saud Bin Abdulaziz University of Health Sciences, Jeddah, Saudi Arabia.

出版信息

Cancer Treat Res Commun. 2021;27:100372. doi: 10.1016/j.ctarc.2021.100372. Epub 2021 Apr 8.

Abstract

Cadmium (Cd) is a heavy metal and a highly toxic pollutant that is released into the environment as a byproduct of most modern factories and industries. Cd enters our body in significant quantities from contaminated water, cigarette smoke, or food product to many detrimental health hazards. Based on causal association all the Cd-related or derived compounds have been classified as carcinogens. In this study, we present an overview of the published literature to understand the molecular mechanisms for Cd-induced carcinogenesis and its prevention. In acute Cd poisoning production of reactive oxygen species is a key factor. However, chronic Cd exposure can transform cells to become more resistant to oxidative stress. Also, as an epigenetic mechanism Cd acts indirectly on DNA repair mechanisms via alteration of reactions upstream. Those transformed cells acquire resistance to apoptosis and deregulation of calcium homeostasis. Leading to uncontrolled carcinogenic cell proliferation and inherent DNA lesions. Flavonoids commonly found in plant foods have been shown to have a protective effect against Cd-induced carcinogenicity. A wide variety of tumorigenic mechanisms involved in chronic Cd exposure and the beneficial effects of flavonoids against Cd-induced carcinogenicity necessitate further investigations.

摘要

镉(Cd)是一种重金属,也是一种高度有毒的污染物,作为大多数现代工厂和工业的副产品释放到环境中。Cd 通过受污染的水、香烟烟雾或食品等途径大量进入我们的身体,对健康造成许多不利的危害。基于因果关系,所有与 Cd 相关或衍生的化合物都被归类为致癌物质。在这项研究中,我们对已发表的文献进行了综述,以了解 Cd 诱导的致癌作用及其预防的分子机制。在急性 Cd 中毒中,活性氧的产生是一个关键因素。然而,慢性 Cd 暴露会使细胞转化,从而对氧化应激产生更强的抵抗力。此外,作为一种表观遗传机制,Cd 通过改变上游反应间接作用于 DNA 修复机制。这些转化细胞获得了对细胞凋亡的抵抗和钙稳态的失调。导致不受控制的致癌细胞增殖和固有 DNA 损伤。植物性食物中常见的类黄酮已被证明具有预防 Cd 诱导的致癌作用。慢性 Cd 暴露涉及多种致癌机制,类黄酮对 Cd 诱导的致癌作用的有益影响需要进一步研究。

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