Sheiner L B, Stanski D R, Vozeh S, Miller R D, Ham J
Clin Pharmacol Ther. 1979 Mar;25(3):358-71. doi: 10.1002/cpt1979253358.
We propose a model of drug pharmacodynamic response that when integrated with a pharmacokinetic model allows characterization of the temporal aspects of pharmacodynamics as well as the time-independent sensitivity component. The total model can accommodate extremes of effect. It allows fitting of simultaneous plasma concentration (Cp) and effect data from the initial distribution phase of drug administration, or from any non-equilibrium phase. The model postulates a hypothetical effect compartment, the dynamics of which are adjusted to reflect the temporal dynamics of drug effect. The effect compartment is modeled as an additional compartment linked to the plasma compartment by a first-order process, but whose exponential does not enter into the pharmacokinetic solution for the mass of drug in the body. The hypothetical amount of drug in the effect compartment is then related to the observed effect by the Hill equation, a nonlinear sigmoid form. Nonlinear least-squares data fitting is used for parameter estimation. The model is demonstrated on two different sets of Cp and effect data for the drug d-tubocurarine (dTC). In 7 normal subjects, the (mean +/- SD) rate constant for equilibration of dTC effect (paralysis) and Cp is 0.13 +/- 0.04 min-1 and the (mean +/- SD) steady-state Cp required to produce 50% paralysis is 0.37 +/- 0.05 microgram/ml.
我们提出了一种药物药效学反应模型,该模型与药代动力学模型相结合时,能够对药效学的时间特性以及与时间无关的敏感性成分进行表征。完整的模型可以涵盖各种效应极端情况。它能够拟合给药初始分布阶段或任何非平衡阶段的同时血浆浓度(Cp)和效应数据。该模型假定存在一个虚拟效应室,其动态过程经调整以反映药物效应的时间动态。效应室被建模为通过一级过程与血浆室相连的一个额外室,但其指数不进入体内药物质量的药代动力学求解过程。然后,效应室中虚拟的药物量通过希尔方程(一种非线性S形形式)与观察到的效应相关联。采用非线性最小二乘法进行数据拟合以估计参数。该模型在两组不同的筒箭毒碱(dTC)的Cp和效应数据上得到了验证。在7名正常受试者中,dTC效应(麻痹)与Cp达到平衡的(均值±标准差)速率常数为0.13±0.04 min⁻¹,产生50%麻痹所需的(均值±标准差)稳态Cp为0.37±0.05微克/毫升。