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反馈控制间接响应模型。

Feedback control indirect response models.

作者信息

Zhang Yaping, D'Argenio David Z

机构信息

Department of Biomedical Engineering, University of Southern California, Los Angeles, CA, 90089, USA.

出版信息

J Pharmacokinet Pharmacodyn. 2016 Aug;43(4):343-58. doi: 10.1007/s10928-016-9479-8. Epub 2016 Jul 9.

Abstract

A general framework is introduced for modeling pharmacodynamic processes that are subject to autoregulation, which combines the indirect response (IDR) model approach with methods from classical feedback control of engineered systems. The canonical IDR models are modified to incorporate linear combinations of feedback control terms related to the time course of the difference (the error signal) between the pharmacodynamic response and its basal value. Following the well-established approach of traditional engineering control theory, the proposed feedback control indirect response models incorporate terms proportional to the error signal itself, the integral of the error signal, the derivative of the error signal or combinations thereof. Simulations are presented to illustrate the types of responses produced by the proposed feedback control indirect response model framework, and to illustrate comparisons with other PK/PD modeling approaches incorporating feedback. In addition, four examples from literature are used to illustrate the implementation and applicability of the proposed feedback control framework. The examples reflect each of the four mechanisms of drug action as modeled by each of the four canonical IDR models and include: selective serotonin reuptake inhibitors and extracellular serotonin; histamine H2-receptor antagonists and gastric acid; growth hormone secretagogues and circulating growth hormone; β2-selective adrenergic agonists and potassium. The proposed feedback control indirect response approach may serve as an exploratory modeling tool and may provide a bridge for development of more mechanistic systems pharmacology models.

摘要

本文介绍了一个用于对受自动调节的药效学过程进行建模的通用框架,该框架将间接响应(IDR)模型方法与工程系统经典反馈控制方法相结合。对标准IDR模型进行了修改,以纳入与药效学响应与其基础值之间的差异(误差信号)随时间变化相关的反馈控制项的线性组合。遵循传统工程控制理论中成熟的方法,所提出的反馈控制间接响应模型纳入了与误差信号本身、误差信号的积分、误差信号的导数或它们的组合成比例的项。通过仿真来说明所提出的反馈控制间接响应模型框架产生的响应类型,并说明与其他纳入反馈的药代动力学/药效学(PK/PD)建模方法的比较。此外,还使用了文献中的四个例子来说明所提出的反馈控制框架的实施和适用性。这些例子反映了由四个标准IDR模型建模的四种药物作用机制中的每一种,包括:选择性5-羟色胺再摄取抑制剂与细胞外5-羟色胺;组胺H2受体拮抗剂与胃酸;生长激素促分泌剂与循环生长激素;β2选择性肾上腺素能激动剂与钾。所提出的反馈控制间接响应方法可作为一种探索性建模工具,并可为更具机械性的系统药理学模型的开发提供桥梁。

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