Thomas R S, Lytle W E, Keefe T J, Constan A A, Yang R S
Center for Environmental Toxicology and Technology, Department of Environmental Health, Colorado State University, Fort Collins 80523-1680, USA.
Fundam Appl Toxicol. 1996 May;31(1):19-28. doi: 10.1006/faat.1996.0072.
Biologically based models with physiological parameters are becoming more popular as a tool to estimate target tissue doses from chemical exposures. However, the majority of current physiologically based pharmacokinetic (PBPK) models do not take into account the uncertainty and/or variability within the various model parameters. Consideration of uncertainty is important to evaluate the predictive ability and complexity of a model as well as identification of parameters which contribute disproportionately to variability in model output. In order to estimate the uncertainty in PBPK model output, a versatile and simple computational method is presented which can be readily incorporated into the majority of PBPK models without extensive additions to model computer code. In this paper, a separate computer program for Monte Carlo simulation is furnished that randomly samples values for model parameters and writes them into a run-time language (command file) format which can then be utilized to execute individual PBPK models. Modifications to the PBPK model allow the desired output to be written to a data file for statistical analysis. The method presented in this paper is applied to a simple PBPK model for benzene disposition.
具有生理参数的基于生物学的模型作为一种从化学暴露中估计靶组织剂量的工具正变得越来越流行。然而,当前大多数基于生理的药代动力学(PBPK)模型并未考虑各种模型参数中的不确定性和/或变异性。考虑不确定性对于评估模型的预测能力和复杂性以及识别对模型输出变异性贡献不成比例的参数很重要。为了估计PBPK模型输出中的不确定性,本文提出了一种通用且简单的计算方法,该方法可以很容易地纳入大多数PBPK模型中,而无需对模型计算机代码进行大量添加。本文提供了一个单独的用于蒙特卡罗模拟的计算机程序,该程序为模型参数随机采样值,并将其写入运行时语言(命令文件)格式,然后可用于执行单个PBPK模型。对PBPK模型的修改允许将所需输出写入数据文件进行统计分析。本文提出的方法应用于一个简单的苯处置PBPK模型。