Shaw P N, Houston J B
Department of Pharmacy, University of Manchester, England.
J Pharmacokinet Biopharm. 1987 Oct;15(5):497-510. doi: 10.1007/BF01061759.
A simple model simulating the kinetics of drug metabolism inhibition interaction is investigated. The relative sensitivity of drug and metabolite concentration-time profiles as indices of inhibition is assessed. Under steady-state conditions where inhibitor concentrations are maintained constant, the determination of metabolite in addition to drug kinetics provides little additional information when inhibition is nonselective in nature. However metabolite profiles do offer increased sensitivity when parallel routes of metabolism exist and there is selectivity of inhibitory action. Non-steady-state conditions are also investigated as they often apply in inhibition studies; the inhibitor is often administered as a single dose or as a multiple dosing regimen rather than by a constant rate intravenous infusion. Under the former conditions, when inhibitor concentrations in the body fluctuate during the study, metabolite kinetics can be more useful than drug kinetics. The changes evident in the metabolite concentration-time profiles are substantial due to both the inhibition per se and the nonlinearity in the system arising from inhibitor elimination. It is concluded that metabolite kinetics provide a useful aid in the detection of drug metabolism inhibition interactions.
研究了一个模拟药物代谢抑制相互作用动力学的简单模型。评估了药物和代谢物浓度-时间曲线作为抑制指标的相对敏感性。在抑制剂浓度保持恒定的稳态条件下,当抑制本质上是非选择性的时候,除了药物动力学外,代谢物的测定几乎没有提供额外信息。然而,当存在平行代谢途径且抑制作用具有选择性时,代谢物曲线确实提供了更高的敏感性。还研究了非稳态条件,因为它们经常应用于抑制研究中;抑制剂通常以单剂量或多剂量方案给药,而不是通过恒速静脉输注。在前一种条件下,当体内抑制剂浓度在研究过程中波动时,代谢物动力学可能比药物动力学更有用。由于抑制本身以及抑制剂消除引起的系统非线性,代谢物浓度-时间曲线中明显的变化是显著的。得出的结论是,代谢物动力学有助于检测药物代谢抑制相互作用。