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环境中重金属个体及混合物的毒性与作用机制综述。

A review of toxicity and mechanisms of individual and mixtures of heavy metals in the environment.

作者信息

Wu Xiangyang, Cobbina Samuel J, Mao Guanghua, Xu Hai, Zhang Zhen, Yang Liuqing

机构信息

School of the Environment, Jiangsu University, Xuefu Rd. 301, Zhenjiang, 212013, Jiangsu, China.

School of Chemistry and Chemical Engineering, Jiangsu University, Xuefu Rd. 301, Zhenjiang, 212013, China.

出版信息

Environ Sci Pollut Res Int. 2016 May;23(9):8244-59. doi: 10.1007/s11356-016-6333-x. Epub 2016 Mar 11.

Abstract

The rational for the study was to review the literature on the toxicity and corresponding mechanisms associated with lead (Pb), mercury (Hg), cadmium (Cd), and arsenic (As), individually and as mixtures, in the environment. Heavy metals are ubiquitous and generally persist in the environment, enabling them to biomagnify in the food chain. Living systems most often interact with a cocktail of heavy metals in the environment. Heavy metal exposure to biological systems may lead to oxidation stress which may induce DNA damage, protein modification, lipid peroxidation, and others. In this review, the major mechanism associated with toxicities of individual metals was the generation of reactive oxygen species (ROS). Additionally, toxicities were expressed through depletion of glutathione and bonding to sulfhydryl groups of proteins. Interestingly, a metal like Pb becomes toxic to organisms through the depletion of antioxidants while Cd indirectly generates ROS by its ability to replace iron and copper. ROS generated through exposure to arsenic were associated with many modes of action, and heavy metal mixtures were found to have varied effects on organisms. Many models based on concentration addition (CA) and independent action (IA) have been introduced to help predict toxicities and mechanisms associated with metal mixtures. An integrated model which combines CA and IA was further proposed for evaluating toxicities of non-interactive mixtures. In cases where there are molecular interactions, the toxicogenomic approach was used to predict toxicities. The high-throughput toxicogenomics combines studies in genetics, genome-scale expression, cell and tissue expression, metabolite profiling, and bioinformatics.

摘要

本研究的目的是回顾关于环境中铅(Pb)、汞(Hg)、镉(Cd)和砷(As)单独及混合存在时的毒性及相应机制的文献。重金属普遍存在且通常在环境中持久存在,使其能够在食物链中生物放大。生物系统最常与环境中的重金属混合物相互作用。生物系统暴露于重金属可能导致氧化应激,进而可能引发DNA损伤、蛋白质修饰、脂质过氧化等。在本综述中,与单一金属毒性相关的主要机制是活性氧(ROS)的产生。此外,毒性还通过谷胱甘肽的消耗以及与蛋白质巯基的结合来体现。有趣的是,像铅这样的金属通过消耗抗氧化剂对生物体产生毒性,而镉则通过其取代铁和铜的能力间接产生活性氧。接触砷产生的活性氧与多种作用模式相关,并且发现重金属混合物对生物体有不同影响。已经引入了许多基于浓度相加(CA)和独立作用(IA)的模型来帮助预测与金属混合物相关的毒性和机制。还进一步提出了一种结合CA和IA的综合模型来评估非相互作用混合物的毒性。在存在分子相互作用的情况下,采用毒理基因组学方法来预测毒性。高通量毒理基因组学结合了遗传学、基因组规模表达、细胞和组织表达、代谢物谱分析及生物信息学等方面的研究。

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