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Biological monitoring: the role of toxicokinetics and physiologically based pharmacokinetic modeling.

机译:生物监测:毒物代谢动力学和基于生理的药代动力学模型的作用。

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摘要

This short review outlines the contribution of modeling techniques, particularly physiologically based pharmacokinetic (PBPK) modeling, in promulgating biological monitoring as a practical tool for the occupational health professional. The impact of modeling techniques is discussed in helping to establish the relevant biomarkers to measure, the appropriate time of sampling, and the relationship between atmospheric exposure limits and concentration of biological analyte. Of particular interest is the use of "population" PBPK techniques. These can explore the influence of physiological differences between workers or of particular susceptible subgroups (e.g., pregnant women, breast-feeding mothers, and infants) on the relationship between atmospheric exposure levels and biomarker concentration. Such techniques will become more widely used as biological monitoring guidance values (e.g., biological exposure indices, biological tolerance values) are increasingly established by various international professional and regulatory bodies.
机译:这篇简短的评论概述了建模技术(尤其是基于生理的药代动力学(PBPK)建模)在将生物学监测作为职业卫生专业人员的实用工具发布方面的贡献。讨论了建模技术的影响,以帮助建立相关的生物标记物进行测量,适当的采样时间以及大气暴露极限与生物分析物浓度之间的关系。特别令人感兴趣的是使用“种群” PBPK技术。这些可以探讨工人或特定易感亚群(例如孕妇,哺乳母亲和婴儿)之间的生理差异对大气暴露水平与生物标志物浓度之间关系的影响。随着各种国际专业和监管机构越来越多地确定生物监测指导值(例如,生物暴露指数,生物耐受值),这些技术将被更广泛地使用。

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