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通过半同步给药进行生物利用度估计:蒙特卡罗模拟研究

Bioavailability estimation by semisimultaneous drug administration: a Monte Carlo simulation study.

作者信息

Karlsson M O, Bredberg U

机构信息

Department of Biopharmaceutics and Pharmacokinetics, Faculty of Pharmacy, University of Uppsala, Sweden.

出版信息

J Pharmacokinet Biopharm. 1990 Apr;18(2):103-20. doi: 10.1007/BF01063554.

Abstract

The performance of a novel method for determination of drug absorption characteristics was evaluated by Monte Carlo simulations. In bioavailability studies with use of this method, the test and the reference doses are administered within a time interval of hours. Estimates of bioavailability are obtained by fitting an appropriate model to the concentration-time profile, which in its terminal portion is thus the summed concentration of the two doses. Drugs with different properties, mimicked by varying the kinetic rate constants (ka, lambda 1 and lambda 2), and experimental designs with different sets of conditions regarding the interval between doses, dose ratio, dose order, and duration of sampling, were simulated to determine what factors govern parameter estimation. The absorption characteristics of the simulated drugs could be adequately determined in experiments lasting for 12 hr or less, provided that a proper design was used. Fitting of a simpler or a more complex disposition model produced estimates with similar accuracy and precision to those noted with the true model. For some conditions the use of an improper absorption model resulted in slightly reduced accuracy, but as these fits were poor there was a clear need to try other models. In another set of simulations the use of the proposed method to assess the relative availability of two extravascular doses was evaluated. The relative rate and extent of absorption could be estimated with good precision for two formulations exhibiting a rapid to moderate rate of absorption.

摘要

通过蒙特卡罗模拟评估了一种用于确定药物吸收特性的新方法的性能。在使用该方法的生物利用度研究中,试验剂量和参比剂量在数小时的时间间隔内给药。通过将适当的模型拟合到浓度-时间曲线来获得生物利用度的估计值,该曲线的终末部分因此是两种剂量的总浓度。通过改变动力学速率常数(ka、lambda 1和lambda 2)模拟具有不同性质的药物,并针对剂量间隔、剂量比、剂量顺序和采样持续时间等不同条件集进行实验设计,以确定哪些因素控制参数估计。只要采用适当的设计,在持续12小时或更短时间的实验中就可以充分确定模拟药物的吸收特性。拟合较简单或较复杂的处置模型所产生的估计值与真实模型的估计值具有相似的准确度和精密度。在某些情况下,使用不适当的吸收模型会导致准确度略有降低,但由于这些拟合效果不佳,显然需要尝试其他模型。在另一组模拟中,评估了使用所提出的方法评估两种血管外给药剂量的相对生物利用度。对于两种表现出快速至中等吸收速率的制剂,可以高精度地估计吸收的相对速率和程度。

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