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Using Physiologically-Based Pharmacokinetic Models to Incorporate Chemical and Non-Chemical Stressors into Cumulative Risk Assessment: A Case Study of Pesticide Exposures

机译:使用基于生理的药代动力学模型将化学和非化学应激源纳入累积风险评估:农药暴露的案例研究

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Cumulative risk assessment has been proposed as an approach to evaluate the health risks associated with simultaneous exposure to multiple chemical and non-chemical stressors. Physiologically based pharmacokinetic/pharmacodynamic (PBPK/PD) models can allow for the inclusion and evaluation of multiple stressors, including non-chemical stressors, but studies have not leveraged PBPK/PD models to jointly consider these disparate exposures in a cumulative risk context. In this study, we focused on exposures to organophosphate (OP) pesticides for children in urban low-income environments, where these children would be simultaneously exposed to other pesticides (including pyrethroids) and non-chemical stressors that may modify the effects of these exposures (including diet). We developed a methodological framework to evaluate chemical and non-chemical stressor impacts on OPs, utilizing an existing PBPK/PD model for chlorpyrifos. We evaluated population-specific stressors that would influence OP doses or acetylcholinesterase (AChE) inhibition, the relevant PD outcome. We incorporated the impact of simultaneous exposure to pyrethroids and dietary factors on OP dose through the compartments of metabolism and PD outcome within the PBPK model, and simulated combinations of stressors across multiple exposure ranges and potential body weights. Our analyses demonstrated that both chemical and non-chemical stressors can influence the health implications of OP exposures, with up to 5-fold variability in AChE inhibition across combinations of stressor values for a given OP dose. We demonstrate an approach for modeling OP risks in the presence of other population-specific environmental stressors, providing insight about co-exposures and variability factors that most impact OP health risks and contribute to children’s cumulative health risk from pesticides. More generally, this framework can be used to inform cumulative risk assessment for any compound impacted by chemical and non-chemical stressors through metabolism or PD outcomes.
机译:已经提出了累积风险评估作为评估与同时暴露于多种化学和非化学应激源相关的健康风险的方法。基于生理学的药代动力学/药效学(PBPK / PD)模型可以纳入和评估多种应激源,包括非化学应激源,但研究并未利用PBPK / PD模型在累积风险范围内共同考虑这些不同的暴露。在这项研究中,我们重点研究了城市低收入环境中儿童接触有机磷酸酯(OP)农药的情况,这些儿童将同时接触其他农药(包括拟除虫菊酯)和非化学胁迫源,这可能会改变这些接触的影响(包括饮食)。我们利用毒死rif的现有PBPK / PD模型,开发了一种方法框架来评估化学和非化学应激源对OP的影响。我们评估了可能影响OP剂量或乙酰胆碱酯酶(AChE)抑制(相关PD结局)的特定人群应激源。我们在PBPK模型中纳入了同时暴露于拟除虫菊酯和饮食因素对OP剂量的影响,即通过新陈代谢和PD结局进行模拟,并模拟了多种暴露范围和潜在体重下应激源的组合。我们的分析表明,化学和非化学应激源均可以影响OP暴露对健康的影响,对于给定的OP剂量,整个应激源值组合中对AChE抑制的变化最多可达5倍。我们演示了一种在存在其他特定于人群的环境压力因素的情况下对OP风险进行建模的方法,可提供有关共同接触和变异性因素的见解,这些因素会最大程度地影响OP的健康风险,并导致农药造成儿童的累积健康风险。更一般而言,该框架可用于通过代谢或PD结果,为受化学和非化学应激源影响的任何化合物提供累积风险评估信息。

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