首页> 外文期刊>Journal of exposure science & environmental epidemiology >Interpreting PCB levels in breast milk using a physiologically based pharmacokinetic model to reconstruct the dynamic exposure of Italian women
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Interpreting PCB levels in breast milk using a physiologically based pharmacokinetic model to reconstruct the dynamic exposure of Italian women

机译:使用基于生理学的药代动力学模型解释母乳中的PCB含量,以重建意大利女性的动态暴露

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摘要

Polychlorinated biphenyls (PCBs) are persistent contaminants suspected to cause adverse health effects in humans. As PCBs levels in food have not been monitored frequently in the past, modeling approaches based on environmental data have been proposed to predict the human dietary intake. In this work, we propose to improve these approaches by taking into account internal levels of PCBs in humans. This methodology is based on the analysis of biomonitoring data using exposure and physiologically based pharmacokinetic (PBPK) modeling to determine the most probable scenario of exposure. Breast milk concentrations were measured in Italian women for PCB-138, PCB-153 and PCB-180. For each congener, three exposure scenarios were derived and a PBPK model was used to relate the lifetime exposure to the breast milk levels. For the three PCBs, we determined the most probable scenario of exposure. Our results support the adequacy of the exposure and the PBPK models for PCB-180 and PCB-153, whereas we observed discrepancies between the models and the biomonitoring data for PCB-138. Our intake estimates are in good agreement with previous exposure assessments based solely on food contamination demonstrating the relevance of our approach to reconstruct accurately the exposure and to fill in data gaps on exposure.
机译:多氯联苯(PCBs)是持久性污染物,被怀疑对人类健康造成不利影响。由于过去不经常监控食品中的PCB含量,因此提出了基于环境数据的建模方法来预测人类的饮食摄入量。在这项工作中,我们建议通过考虑人类内部PCB的内部水平来改进这些方法。该方法基于使用暴露和基于生理的药代动力学(PBPK)模型来确定最可能暴露情况的生物监测数据分析。在意大利妇女中测量了PCB-138,PCB-153和PCB-180中母乳的浓度。对于每个同类物,得出了三种暴露情景,并使用PBPK模型将终生暴露与母乳水平相关联。对于这三种PCB,我们确定了最可能的暴露情况。我们的结果支持PCB-180和PCB-153的暴露量和PBPK模型的充分性,而我们观察到的模型与PCB-138的生物监测数据之间的差异。我们的摄入量估算值与以前基于食物污染的暴露量评估非常吻合,表明我们的方法对于准确地重构暴露量并填补暴露量数据缺口的重要性。

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