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几种暴露生物指标尿水平的性别差异:一项使用基于房室的毒代动力学模型的模拟研究。

Sex differences in urinary levels of several biological indicators of exposure: a simulation study using a compartmental-based toxicokinetic model.

作者信息

Tomicic Catherine, Vernez David

机构信息

a Institute for Work and Health , University of Lausanne , Lausanne , Switzerland.

出版信息

J Occup Environ Hyg. 2014;11(6):377-87. doi: 10.1080/15459624.2013.875180.

Abstract

Toxicokinetic modeling is a useful tool to describe or predict the behavior of a chemical agent in the human or animal organism. A general model based on four compartments was developed in a previous study to quantify the effect of human variability on a wide range of biological exposure indicators. The aim of this study was to adapt this existing general toxicokinetic model to three organic solvents--methyl ethyl ketone, 1-methoxy-2-propanol, and 1,1,1,-trichloroethane--and to take into account sex differences. In a previous human volunteer study we assessed the impact of sex on different biomarkers of exposure corresponding to the three organic solvents mentioned above. Results from that study suggested that not only physiological differences between men and women but also differences due to sex hormones levels could influence the toxicokinetics of the solvents. In fact the use of hormonal contraceptive had an effect on the urinary levels of several biomarkers, suggesting that exogenous sex hormones could influence CYP2E1 enzyme activity. These experimental data were used to calibrate the toxicokinetic models developed in this study. Our results showed that it was possible to use an existing general toxicokinetic model for other compounds. In fact, most of the simulation results showed good agreement with the experimental data obtained for the studied solvents, with a percentage of model predictions that lies within the 95% confidence interval varying from 44.4 to 90%. Results pointed out that for same exposure conditions, men and women can show important differences in urinary levels of biological indicators of exposure. Moreover, when running the models by simulating industrial working conditions, these differences could be even more pronounced. A general and simple toxicokinetic model, adapted for three well-known organic solvents, allowed us to show that metabolic parameters can have an important impact on the urinary levels of the corresponding biomarkers. These observations give evidence of an interindividual variability, an aspect that should have its place in the approaches for setting limits of occupational exposure.

摘要

毒代动力学建模是描述或预测化学物质在人体或动物体内行为的有用工具。在之前的一项研究中开发了一个基于四个房室的通用模型,以量化人类变异性对一系列生物暴露指标的影响。本研究的目的是将现有的通用毒代动力学模型应用于三种有机溶剂——甲乙酮、1-甲氧基-2-丙醇和1,1,1-三氯乙烷,并考虑性别差异。在之前的一项人体志愿者研究中,我们评估了性别对与上述三种有机溶剂相对应的不同暴露生物标志物的影响。该研究结果表明,不仅男性和女性之间的生理差异,而且性激素水平的差异都可能影响这些溶剂的毒代动力学。事实上,使用激素避孕药对几种生物标志物的尿液水平有影响,这表明外源性性激素可能会影响CYP2E1酶的活性。这些实验数据被用于校准本研究中开发的毒代动力学模型。我们的结果表明,可以将现有的通用毒代动力学模型用于其他化合物。事实上,大多数模拟结果与所研究溶剂的实验数据显示出良好的一致性,模型预测值落在95%置信区间内的百分比从44.4%到90%不等。结果指出,在相同的暴露条件下,男性和女性在暴露生物指标的尿液水平上可能会表现出重要差异。此外,在模拟工业工作条件运行模型时,这些差异可能会更加明显。一个适用于三种知名有机溶剂的通用且简单的毒代动力学模型使我们能够表明,代谢参数可能对相应生物标志物的尿液水平产生重要影响。这些观察结果证明了个体间的变异性,这一方面在职业暴露限值设定方法中应该占有一席之地。

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