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从基于靶点的药物处置推导的药物-受体相互作用的新平衡模型。

New Equilibrium Models of Drug-Receptor Interactions Derived from Target-Mediated Drug Disposition.

机构信息

Mathematical Institute, Leiden University, PB 9512, 2300 RA, Leiden, The Netherlands.

Department of Biomedical Sciences and Veterinary Public Health, Division of Pharmacology and Toxicology, Swedish University of Agricultural Sciences, Box 7028, 750 07, Uppsala, Sweden.

出版信息

AAPS J. 2018 May 14;20(4):69. doi: 10.1208/s12248-018-0221-x.

Abstract

In vivo analyses of pharmacological data are traditionally based on a closed system approach not incorporating turnover of target and ligand-target kinetics, but mainly focussing on ligand-target binding properties. This study incorporates information about target and ligand-target kinetics parallel to binding. In a previous paper, steady-state relationships between target- and ligand-target complex versus ligand exposure were derived and a new expression of in vivo potency was derived for a circulating target. This communication is extending the equilibrium relationships and in vivo potency expression for (i) two separate targets competing for one ligand, (ii) two different ligands competing for a single target and (iii) a single ligand-target interaction located in tissue. The derived expressions of the in vivo potencies will be useful both in drug-related discovery projects and mechanistic studies. The equilibrium states of two targets and one ligand may have implications in safety assessment, whilst the equilibrium states of two competing ligands for one target may cast light on when pharmacodynamic drug-drug interactions are important. The proposed equilibrium expressions for a peripherally located target may also be useful for small molecule interactions with extravascularly located targets. Including target turnover, ligand-target complex kinetics and binding properties in expressions of potency and efficacy will improve our understanding of within and between-individual (and across species) variability. The new expressions of potencies highlight the fact that the level of drug-induced target suppression is very much governed by target turnover properties rather than by the target expression level as such.

摘要

传统的体内药理学数据分析基于封闭系统方法,不包括靶标和配体-靶标动力学的转化,但主要侧重于配体-靶标结合特性。本研究将关于靶标和配体-靶标动力学的信息与结合平行纳入分析。在之前的一篇论文中,推导出了靶标-配体复合物与配体暴露之间的稳态关系,并为循环靶标推导出了新的体内效价表达。本通讯扩展了平衡关系和体内效价表达,用于 (i) 两个竞争同一配体的独立靶标,(ii) 两个竞争同一靶标的不同配体,以及 (iii) 位于组织中的单一配体-靶标相互作用。推导的体内效价表达将在药物相关发现项目和机制研究中都非常有用。两个靶标和一个配体的平衡状态可能对安全性评估有影响,而一个靶标上两种竞争配体的平衡状态可能揭示药效学药物相互作用何时重要。提出的位于周围的靶标平衡表达也可能对小分子与血管外靶标相互作用有用。在效价和效力的表达中纳入靶标转化、配体-靶标复合物动力学和结合特性,将提高我们对个体内和个体间(以及跨物种)变异性的理解。新的效价表达强调了这样一个事实,即药物诱导的靶标抑制水平在很大程度上取决于靶标转化特性,而不是靶标表达水平本身。

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