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关于稳态分布容积及其与二室模型的关系。

On the volume of distribution at steady state and its relationship with two-compartmental models.

作者信息

Yates James W T, Arundel Philip A

机构信息

Drug Metabolism and Pharmacokinetics, AstraZeneca, Alderley Park, Cheshire, United Kingdom.

出版信息

J Pharm Sci. 2008 Jan;97(1):111-22. doi: 10.1002/jps.21089.

Abstract

The volume of distribution at steady state is considered to be one of the primary pharmacokinetic measurements obtained from in vivo experiments. This quantity is quite commonly calculated using moments of the observed concentration curve, the process being referred to as noncompartmental analysis. In this paper the underlying assumptions of noncompartmental analysis are analysed with regard to the observed behaviour of models with two compartments: one of which has elimination from the central compartment, the other from the peripheral tissue compartment. This is in order to clarify the relationship between volume of distribution and clearance. It is shown that these two models are indistinguishable from measurements in blood. Furthermore relationships between the parameter values for the two models are given so that they produce the same observed profile. Expressions are derived in a novel way that relates the volume of distribution to these model rate constants. The definitions of clearance and volume of distribution at steady state are investigated using several different mathematical techniques, demonstrating the consistency of the derived expressions. It is shown, in a manner that the authors believe is a new approach, that when the assumption of central elimination does not apply, noncompartmental analysis will under estimate the volume of distribution, whereas clearance remains unchanged. This is compared quantitatively with respect to the volume predicted where central elimination holds, and is a result of an extended mean residence time.

摘要

稳态分布容积被认为是从体内实验获得的主要药代动力学测量值之一。这个量通常使用观察到的浓度曲线的矩来计算,这个过程被称为非房室分析。在本文中,针对具有两个房室的模型的观察行为,分析了非房室分析的潜在假设:其中一个房室从中央房室消除,另一个从周边组织房室消除。这是为了阐明分布容积与清除率之间的关系。结果表明,这两种模型在血液测量中无法区分。此外,还给出了两种模型参数值之间的关系,以便它们产生相同的观察到的曲线。以一种新颖的方式推导了将分布容积与这些模型速率常数相关联的表达式。使用几种不同的数学技术研究了稳态清除率和分布容积的定义,证明了推导表达式的一致性。作者认为以一种新的方式表明,当中央消除的假设不适用时,非房室分析将低估分布容积,而清除率保持不变。这与中央消除成立时预测的容积进行了定量比较,这是延长平均停留时间的结果。

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