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Automated Scale Reduction of Nonlinear QSP Models With an Illustrative Application to a Bone Biology System

机译:非线性QSP模型的自动尺度缩减及其在骨生物学系统中的示例性应用

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摘要

Integrating quantitative systems pharmacology (QSP) into pharmacokinetics/pharmacodynamics (PKPD) has resulted in models that are highly complex and often not amenable to further exploration via estimation or design. Because QSP models are usually depicted using nonlinear differential equations it is not straightforward to apply some model reduction techniques, such as proper lumping. In this study, we explore the combined use of linearization and proper lumping as a general method to simplification of a nonlinear QSP model. We illustrate this with a bone biology model and the reduced model was then applied to describe bone mineral density (BMD) changes due to denosumab dosing. The methodologies used in this study can be applied to other multiscale models for developing a mechanism‐based structural model for future analyses.
机译:将定量系统药理学(QSP)集成到药代动力学/药效学(PKPD)中,得出的模型非常复杂,通常不适合通过估计或设计进行进一步探索。由于通常使用非线性微分方程来描述QSP模型,因此应用某些模型简化技术(例如适当的集总法)并不容易。在这项研究中,我们探索了线性化和适当集总的组合使用,作为简化非线性QSP模型的通用方法。我们用骨骼生物学模型对此进行了说明,然后将简化后的模型应用于描述由于地诺单抗剂量引起的骨矿物质密度(BMD)变化。本研究中使用的方法可以应用于其他多尺度模型,以开发基于机制的结构模型以用于将来的分析。

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