A guide to developing population files for physiologically-based pharmacokinetic modeling in the Simcyp Simulator

IF 3.1 3区 医学 Q2 PHARMACOLOGY & PHARMACY
Liam Curry, Sarah Alrubia, Frederic Y. Bois, Ruth Clayton, Eman El-Khateeb, Trevor N. Johnson, Muhammad Faisal, Sibylle Neuhoff, Kris Wragg, Amin Rostami-Hodjegan
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Abstract

The Simcyp Simulator is a software platform widely used in the pharmaceutical industry to conduct stochastic physiologically-based pharmacokinetic (PBPK) modeling. This approach has the advantage of combining routinely generated in vitro data on drugs and drug products with knowledge of biology and physiology parameters to predict a priori potential pharmacokinetic changes in absorption, distribution, metabolism, and excretion for populations of interest. Combining such information with pharmacodynamic knowledge of drugs enables planning for potential dosage adjustment when clinical studies are feasible. Although the conduct of dedicated clinical studies in some patient groups (e.g., with hepatic or renal diseases) is part of the regulatory path for drug development, clinical studies for all permutations of covariates potentially affecting pharmacokinetics are impossible to perform. The role of PBPK in filling the latter gap is becoming more appreciated. This tutorial describes the different input parameters required for the creation of a virtual population giving robust predictions of likely changes in pharmacokinetics. It also highlights the considerations needed to qualify the models for such contexts of use. Two case studies showing the step-by-step development and application of population files for obese or morbidly obese patients and individuals with Crohn's disease are provided as the backbone of our tutorial to give some hands-on and real-world examples.

Abstract Image

为 Simcyp 模拟器中基于生理学的药代动力学建模开发群体文件指南。
Simcyp 模拟器是制药行业广泛使用的软件平台,用于进行随机生理药代动力学(PBPK)建模。这种方法的优点是将日常生成的药物和药物产品体外数据与生物学和生理学参数知识结合起来,先验地预测相关人群在吸收、分布、代谢和排泄方面可能发生的药代动力学变化。将这些信息与药物的药效学知识结合起来,就能在临床研究可行时为可能的剂量调整制定计划。虽然在某些患者群体(如肝病或肾病患者)中开展专门的临床研究是药物开发监管途径的一部分,但对可能影响药代动力学的所有协变量进行临床研究是不可能的。PBPK 在填补后一个空白方面的作用正日益受到重视。本教程介绍了创建虚拟群体所需的不同输入参数,以便对药物代谢动力学可能发生的变化进行可靠预测。它还强调了在这种情况下使用模型时需要考虑的问题。本教程以两个案例研究为基础,分别展示了肥胖或病态肥胖患者和克罗恩病患者群体文件的逐步开发和应用,并提供了一些实际操作和真实世界的例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.00
自引率
11.40%
发文量
146
审稿时长
8 weeks
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