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Human exposure to dietary inorganic arsenic and other arsenic species: State of knowledge gaps and uncertainties

机译:人体暴露于饮食中的无机砷和其他砷物种:知识差距和不确定性的状况

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摘要

Inorganic arsenic (iAs) is ubiquitous in the environment as arsenite (AsIII) and arsenate (AsV) compounds and biotransformation of these toxic chemicals leads to the extraordinary variety of organoarsenic species found in nature. Despite classification as a human carcinogen based on data from populations exposed through contaminated drinking water, only recently has a need for regulatory limits on iAs in food been recognized. The delay was due to the difficulty in risk assessment of dietary iAs, which critically relies on speciation analysis providing occurrence data for iAs in food – and not simply for total arsenic.In the present review the state of knowledge regarding arsenic speciation in food and diet is evaluated with focus on iAs and human exposure assessment through different dietary approaches including duplicate diet studies, market basket surveys, and total diet studies. The analytical requirements for obtaining reliable data for iAs in food are discussed and iAs levels in foods and beverages are summarized, along with information on other (potentially) toxic co-occurring organoarsenic compounds.Quantitative exposure assessment of iAs in food is addressed, focusing on the need of capturing variability and extent of exposure and identifying what dietary items drive very high exposure for certain population groups. Finally, gaps and uncertainties are discussed, including effect of processing and cooking, and iAs bioavailability.
机译:无机砷(iAs)在环境中无处不在,就像砷(AsIII)和砷酸盐(AsV)化合物一样,这些有毒化学物质的生物转化导致自然界发现了种类繁多的有机砷。尽管根据来自受污染饮用水暴露人群的数据将其归类为人类致癌物,但直到最近才认识到需要对食品中iAs进行管理限制。延迟的原因是饮食中iAs风险评估的困难,它主要依赖于形态分析来提供食品中iAs的发生数据,而不仅仅是简单地测定总砷。本文对食品和饮食中砷的形态形成了解通过不同的饮食方法(包括重复饮食研究,市场调查和总饮食研究)重点评估iAs和人体暴露评估。讨论了获取食品中iAs可靠数据的分析要求,总结了食品和饮料中iAs的水平以及其他(潜在)有毒共生有机砷化合物的信息。解决了食品中iAs的定量暴露评估,重点是需要了解暴露的变异性和程度,并确定哪些饮食项目对某些人群会导致很高的暴露。最后,讨论了差距和不确定性,包括加工和蒸煮的影响以及iAs生物利用度。

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