Espié Pascal, Tytgat Dominique, Sargentini-Maier Maria-Laura, Poggesi Italo, Watelet Jean-Baptiste
UCB Pharma SA, Belgium.
Drug Metab Rev. 2009;41(3):391-407. doi: 10.1080/10837450902891360.
Allometric scaling is widely used to predict human pharmacokinetic parameters from preclinical species, and many different approaches have been proposed over the years to improve its predictive performance. Nevertheless, prediction errors are commonly observed in the practical application of simple allometry, for example, in cases where the hepatic metabolic clearance is mainly determined by enzyme activities, which do not scale allometrically across species. Therefore, if good correlation was noted for some drugs, poor correlation was observed for others, highlighting the need for other conceptual approaches. Physiologically based pharmacokinetic (PBPK) models are now a well-established approach to conduct extrapolations across species and to generate simulations of pharmacokinetic profiles under various physiological conditions. While conventional pharmacokinetic models are defined by drug-related data themselves, PBPK models have richer information content and integrate information from various sources, including drug-dependent, physiological, and biological parameters as they vary in between species, subjects, or with age and disease state. Therefore, the biological and mechanistic bases of PBPK models allow the extrapolation of the kinetic behavior of drugs with regard to dose, route, and species. In addition, by providing a link between tissue concentrations and toxicological or pharmacological effects, PBPK modeling represents a framework for mechanistic pharmacokinetic-pharmacodynamic models.
异速生长标度法被广泛用于从临床前物种预测人体药代动力学参数,多年来已提出许多不同方法来提高其预测性能。然而,在简单异速生长法的实际应用中通常会观察到预测误差,例如,在肝代谢清除率主要由酶活性决定的情况下,而酶活性在不同物种间并非按异速生长规律变化。因此,对于某些药物观察到良好的相关性,而对于其他药物则观察到较差的相关性,这凸显了需要其他概念性方法。基于生理的药代动力学(PBPK)模型现在是一种成熟的方法,用于跨物种进行外推,并在各种生理条件下生成药代动力学概况的模拟。虽然传统药代动力学模型由药物相关数据本身定义,但PBPK模型具有更丰富的信息内容,并整合了来自各种来源的信息,包括药物依赖性、生理和生物学参数,因为它们在物种、个体之间或随年龄和疾病状态而变化。因此,PBPK模型的生物学和机制基础允许推断药物在剂量、给药途径和物种方面的动力学行为。此外,通过在组织浓度与毒理学或药理学效应之间建立联系,PBPK建模代表了一个用于机制性药代动力学 - 药效学模型的框架。