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种间外推

Interspecies extrapolation.

作者信息

Kenyon Elaina M

机构信息

Pharmacokinetics Branch, Integrated Systems Toxicology Division, MD B105-03, National Health and Environmental Effects Research Laboratory, Office of Research and Development, US Environmental Protection Agency, Research Triangle Park, NC, USA.

出版信息

Methods Mol Biol. 2012;929:501-20. doi: 10.1007/978-1-62703-050-2_19.

Abstract

Interspecies extrapolation encompasses two related but distinct topic areas that are germane to quantitative extrapolation and hence computational toxicology-dose scaling and parameter scaling. Dose scaling is the process of converting a dose determined in an experimental animal to a toxicologically equivalent dose in humans using simple allometric assumptions and equations. In a hierarchy of quantitative extrapolation approaches, this option is used when minimal information is available for a chemical of interest. Parameter scaling refers to cross-species extrapolation of specific biological processes describing rates associated with pharmacokinetic (PK) or pharmacodynamic (PD) events on the basis of allometric relationships. These parameters are used in biologically based models of various types that are designed for not only cross-species extrapolation but also for exposure route (e.g., inhalation to oral) and exposure scenario (duration) extrapolation. This area also encompasses in vivo scale-up of physiological rates determined in various experimental systems. Results from in vitro metabolism studies are generally most useful for interspecies extrapolation purposes when integrated into a physiologically based pharmacokinetic (PBPK) modeling framework. This is because PBPK models allow consideration and quantitative evaluation of other physiological factors, such as binding to plasma proteins and blood flow to the liver, which may be as or more influential than metabolism in determining relevant dose metrics for risk assessment.

摘要

种间外推包含两个相关但不同的主题领域,它们与定量外推相关,因此也与计算毒理学——剂量缩放和参数缩放相关。剂量缩放是指利用简单的异速生长假设和公式,将实验动物中确定的剂量转换为人体中毒理学等效剂量的过程。在定量外推方法的层次结构中,当关于目标化学物质的信息极少时,会使用此选项。参数缩放是指基于异速生长关系,对描述与药代动力学(PK)或药效动力学(PD)事件相关速率的特定生物过程进行跨物种外推。这些参数用于各种类型的基于生物学的模型中,这些模型不仅用于跨物种外推,还用于暴露途径(如吸入到口服)和暴露场景(持续时间)外推。该领域还包括在各种实验系统中确定的生理速率的体内放大。当整合到基于生理学的药代动力学(PBPK)建模框架中时,体外代谢研究的结果通常对种间外推目的最有用。这是因为PBPK模型允许考虑和定量评估其他生理因素,如与血浆蛋白的结合以及肝脏的血流量,这些因素在确定风险评估的相关剂量指标时可能与代谢一样或更具影响力。

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