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食品污染物混合物对人体细胞的协同毒性作用。

Synergic toxic effects of food contaminant mixtures in human cells.

作者信息

Kopp Benjamin, Sanders Pascal, Alassane-Kpembi Imourana, Fessard Valérie, Zalko Daniel, Le Hégarat Ludovic, Audebert Marc

机构信息

Toxalim, INRAE, INP-ENVT, INP-EI-Purpan, Université de Toulouse 3 Paul Sabatier, Toulouse, France.

ANSES (French Agency for Food, Environmental and Occupational Health & Safety), Toxicology of Contaminants Unit, Fougères, France.

出版信息

Mutagenesis. 2020 Aug 18. doi: 10.1093/mutage/geaa019.

Abstract

Humans are exposed to multiple exogenous substances, notably through food consumption. Many of these compounds are suspected to impact human health, and their combination could exacerbate their harmful effects. We previously observed in human cells that, among the six most prevalent food contaminant complex mixtures identified in the French diet, synergistic interactions between component appeared in two mixtures compared with the response with the chemicals alone. In the present study, we demonstrated in human cells that these properties are driven only by two heavy metals in each mixture: tellurium (Te) with cadmium (Cd) and Cd with inorganic arsenic (As), respectively. It appeared that the predicted effects for these binary mixtures using the mathematical model of Chou and Talalay confirmed synergism between these heavy metals. Based on different cell biology experiments (cytotoxicity, genotoxicity, mutagenesis and DNA repair inhibition experiments), a detailed mechanistic analysis of these two mixtures suggests that concomitant induction of oxidative DNA damage and decrease of their repair capacity contribute to the synergistic toxic effect of these chemical mixtures. Overall, these results may have broad implications for the fields of environmental toxicology and chemical mixture risk assessment.

摘要

人类会接触到多种外源性物质,尤其是通过食物摄入。其中许多化合物被怀疑会影响人类健康,而且它们的组合可能会加剧其有害影响。我们之前在人类细胞中观察到,在法国饮食中确定的六种最普遍的食物污染物复合混合物中,与单独使用化学物质的反应相比,两种混合物中各成分之间出现了协同相互作用。在本研究中,我们在人类细胞中证明,这些特性仅由每种混合物中的两种重金属驱动:分别是碲(Te)与镉(Cd)以及Cd与无机砷(As)。似乎使用Chou和Talalay的数学模型对这些二元混合物的预测效应证实了这些重金属之间的协同作用。基于不同的细胞生物学实验(细胞毒性、遗传毒性、诱变和DNA修复抑制实验),对这两种混合物进行的详细机制分析表明,氧化DNA损伤的同时诱导及其修复能力的降低促成了这些化学混合物的协同毒性作用。总体而言,这些结果可能对环境毒理学和化学混合物风险评估领域具有广泛的意义。

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