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循环系统对口服给药后吸收和消除常数估算的影响:重新分析

Influence of Circulation System on Estimation of Absorption and Elimination Constant after per oral Drug Administration: A Reanalysis.

作者信息

Rausova Z, Chrenova J, Dedik L

机构信息

Institute of Automation, Measurement and Applied Informatics, Faculty of Mechanical Engineering, Slovak University of Technology, Namestie Slobody 17, 812 31 Bratislava, Slovakia.

出版信息

Indian J Pharm Sci. 2013 Mar;75(2):171-7.

Abstract

This study aimed to identify the cause of atypical shape of measured concentration-time profile in the peak area by one compartment open model with a lag time (Bateman function with a lag) after single dose oral administration of drug published in "Pharmacokinetic and Pharmacodynamic Data Analysis: Concepts and Application" by Gabrielsson and Weiner (1997) and two concentration profiles after frequent sampling oral glucose tolerance test. Following the oral administration of 100 μg of substance A to human volunteer, frequent sampling was carried out and concentration-time profiles were obtained. Our hemodynamic circulatory structural model capable of parameters estimation of circulation and gastrointestinal subsystem to explain the plateau within the interval 40-100 min (substance A) and 15-30 min (glucose) of the measured concentration-time profile was developed. The mean residence time, the rate constants of absorption and elimination parameters of our model were calculated. Comparing to the Bateman function, our results demonstrate better approximation of the substance A and glucose concentration-time profile and estimation of absorption rate constant by our structural model. Obtained model results indicate that the atypical shape of measured concentration-time profile of single dose oral administration of drug was probably caused by the gastrointestinal and circulation system with deep compartment. This applies to the substances with high coefficient of absorption.

摘要

本研究旨在确定单剂量口服药物后,采用具有滞后时间的一室开放模型(带滞后的贝特曼函数)在峰面积处测量的浓度-时间曲线呈现非典型形状的原因,该模型发表于加布里埃尔松和维纳(1997年)所著的《药代动力学和药效学数据分析:概念与应用》,以及频繁采样口服葡萄糖耐量试验后的两条浓度曲线。在向人类志愿者口服100μg物质A后,进行频繁采样并获得浓度-时间曲线。我们开发了一种血流动力学循环结构模型,能够对循环和胃肠子系统的参数进行估计,以解释测量的浓度-时间曲线在40 - 100分钟(物质A)和15 - 30分钟(葡萄糖)区间内的平台期。计算了我们模型的平均驻留时间、吸收速率常数和消除参数。与贝特曼函数相比,我们的结果表明,我们的结构模型能更好地逼近物质A和葡萄糖的浓度-时间曲线,并能估计吸收速率常数。所获得的模型结果表明,单剂量口服药物测量的浓度-时间曲线的非典型形状可能是由具有深隔室的胃肠和循环系统引起的。这适用于吸收系数高的物质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c470/3757855/ed040628c933/IJPhS-75-171-g001.jpg

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