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A generalized physiologically-based toxicokinetic modeling system for chemical mixtures containing metals

机译:通用的基于生理的毒物动力学建模系统用于含金属的化学混合物

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摘要

BackgroundHumans are routinely and concurrently exposed to multiple toxic chemicals, including various metals and organics, often at levels that can cause adverse and potentially synergistic effects. However, toxicokinetic modeling studies of exposures to these chemicals are typically performed on a single chemical basis. Furthermore, the attributes of available models for individual chemicals are commonly estimated specifically for the compound studied. As a result, the available models usually have parameters and even structures that are not consistent or compatible across the range of chemicals of concern. This fact precludes the systematic consideration of synergistic effects, and may also lead to inconsistencies in calculations of co-occurring exposures and corresponding risks. There is a need, therefore, for a consistent modeling framework that would allow the systematic study of cumulative risks from complex mixtures of contaminants.
机译:背景技术人类经常并同时暴露于多种有毒化学物质(包括各种金属和有机物)中,其水平通常会导致不良和潜在的协同作用。但是,这些化学物质暴露的毒物动力学模型研究通常是在单一化学物质基础上进行的。此外,通常会针对所研究的化合物专门估算各种化学品的可用模型的属性。结果,可用的模型通常具有在所关注的化学品范围内不一致或不兼容的参数甚至结构。这一事实妨碍了系统地考虑协同效应,也可能导致共同承担风险和相应风险的计算不一致。因此,需要一个一致的建模框架,以允许系统地研究复杂污染物混合物造成的累积风险。

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