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输入速率依赖性立体选择性药代动力学:脉动口服输入的影响。

Input rate-dependent stereoselective pharmacokinetics: effect of pulsatile oral input.

作者信息

Mehvar R

机构信息

College of Pharmacy and Health Sciences, Drake University, Des Moines, Iowa.

出版信息

Chirality. 1994;6(3):185-95. doi: 10.1002/chir.530060305.

Abstract

Computer simulation was used to test the effects of pulsatile oral input on the stereoselectivity in the area under the blood concentration-time curves (AUCs) of the enantiomers of racemic drugs. The effects of input rate determinants, namely, dose, dosage interval, and formulation on the stereoselectivity were investigated under both steady-state and nonsteady-state conditions. Simulations were carried out for drugs undergoing Michaelis-Menten hepatic metabolism with different enantiomeric maximum velocity (Vmax) or constant (Km) values. With pulsatile input, the enantiomeric AUC ratios of both types of drugs were dependent on all the determinants of input rate. However, in most cases, the direction of input rate-dependent changes in the enantiomeric AUC ratios for drugs with different enantiomeric Vmax was opposite of that for drugs with different enantiomeric Km. The direction and magnitude of changes in the enantiomeric AUC ratios were also dependent on the selected dose, dosage interval, and formulation. Further, different conclusions could be reached based on the nonsteady-state and steady-state data. Additional simulations were then performed to test the effects of input rate-dependent stereoselective pharmacokinetics on the bioequivalence of chiral drugs with nonlinear metabolism. These simulations suggested that bioequivalence studies based on the racemic drug measurement may result in erroneous conclusions for the individual enantiomers. The results of this study may be used as a tool for the design of experiments to test the input rate dependence of stereoselective pharmacokinetics and bioequivalence of racemic drugs in animals and humans.

摘要

采用计算机模拟来测试脉动口服输入对消旋药物对映体血药浓度-时间曲线下面积(AUC)的立体选择性的影响。在稳态和非稳态条件下,研究了输入速率决定因素(即剂量、给药间隔和剂型)对立体选择性的影响。对具有不同对映体最大速度(Vmax)或常数(Km)值的米氏肝代谢药物进行了模拟。对于脉动输入,这两种类型药物的对映体AUC比值均取决于输入速率的所有决定因素。然而,在大多数情况下,具有不同对映体Vmax的药物的对映体AUC比值随输入速率变化的方向与具有不同对映体Km的药物相反。对映体AUC比值变化的方向和幅度也取决于所选的剂量、给药间隔和剂型。此外,基于非稳态和稳态数据可能会得出不同的结论。随后进行了额外的模拟,以测试输入速率依赖性立体选择性药代动力学对手性药物非线性代谢生物等效性的影响。这些模拟表明,基于消旋药物测量的生物等效性研究可能会得出关于单个对映体的错误结论。本研究结果可作为一种工具,用于设计实验,以测试动物和人类中消旋药物立体选择性药代动力学和生物等效性对输入速率的依赖性。

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