基于实验数据的毒物动力学/毒物动力学模型模拟三氯乙烯、二氯甲烷、苯乙烯和正己烷的毒物动力学。

Yumiko Nakayama, Fumio Kishida, Iwao Nakatsuka, Masatoshi Matsuo
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引用次数: 0

摘要

毒物动力学/毒物动力学(TKTD)模型基于生理数据(如血流、组织分配系数和代谢)模拟化学物质的毒物动力学。在这项研究中,Andersen和Clewell的TKTD模型使用了7个隔室和10个微分方程来计算隔室中的化学平衡(Andersen和Clewell 1996,基于生理的药代动力学/药理学建模和风险评估研讨会,8月5日至16日在美国科罗拉多州立大学)。利用该模型,作者试图模拟四种化学物质:三氯乙烯、二氯甲烷、苯乙烯和正己烷的行为,并对结果进行了评估。通过吸入和口服接触途径对三氯乙烯的行为进行了模拟。模拟和测量之间的差异是由于暴露途径的吸收率之间的差异。通过改变吸收率,模拟结果与实测值吻合。另外三种化学物质的模拟结果也很好。因此,该模型可用于模拟化学物质的行为,进行初步毒性评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of the toxicokinetics of trichloroethylene, methylene chloride, styrene and n-hexane by a toxicokinetics/toxicodynamics model using experimental data.

The toxicokinetics/toxicodynamics (TKTD) model simulates the toxicokinetics of a chemical based on physiological data such as blood flow, tissue partition coefficients and metabolism. In this study, Andersen and Clewell's TKTD model was used with seven compartments and ten differential equations for calculating chemical balances in the compartments (Andersen and Clewell 1996, Workshop on physiologically-based pharmacokinetic/pharmacodynamic modeling and risk assessment, Aug. 5-16 at Colorado State University, U.S.A) . Using this model, the authors attempted to simulate the behavior of four chemicals: trichloroethylene, methylene chloride, styrene and n-hexane, and the results were evaluated. Simulations of the behavior of trichloroethylene taken in via inhalation and oral exposure routes were also done. The differences between simulations and measurements are due to the differences between the absorption rates of the exposure routes. By changing the absorption rates, the simulation showed agreement with the measured values. The simulations of the other three chemicals showed good results. Thus, this model is useful for simulating the behavior of chemicals for preliminary toxicity assessment.

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