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Key to opening kidney for in vitro-in vivo extrapolation entrance in health and disease:Part II Mechanistic models and in vitro-in vivo extrapolation

机译:开放肾脏进行体外 - 体内外推入健康和疾病的关键:第二部分机制模型和体外 - 体内外推

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摘要

It is envisaged that application of mechanistic models will improve prediction of changes in renal disposition due to drug-drug interactions, genetic polymorphism in enzymes and transporters and/or renal impairment. However, developing and validating mechanistic kidney models is challenging due to the number of processes that may occur (filtration, secretion, reabsorption and metabolism) in this complex organ. Prediction of human renal drug disposition from preclinical species may be hampered by species differences in the expression and activity of drug metabolising enzymes and transporters. A proposed solution is bottom-up prediction of pharmacokinetic parameters based on in vitro-in vivo extrapolation (IVIVE), mediated by recent advances in in vitro experimental techniques and application of relevant scaling factors. This review is a follow-up to the Part I of the report from the 2015 AAPS Annual Meeting and Exhibition (Orlando, FL; 25th–29th October 2015) which focuses on IVIVE and mechanistic prediction of renal drug disposition. It describes the various mechanistic kidney models that may be used to investigate renal drug disposition. Particular attention is given to efforts that have attempted to incorporate elements of IVIVE. In addition, the use of mechanistic models in prediction of renal drug-drug interactions and potential for application in determining suitable adjustment of dose in kidney disease are discussed. The need for suitable clinical pharmacokinetics data for the purposes of delineating mechanistic aspects of kidney models in various scenarios is highlighted.
机译:可以预期,由于药物相互作用,酶和转运蛋白的遗传多态性和/或肾功能不全,机制模型的应用将改善对肾脏处置变化的预测。然而,由于在这种复杂器官中可能发生的过程数量众多(过滤,分泌,重吸收和代谢),因此开发和验证机械肾脏模型具有挑战性。药物代谢酶和转运蛋白在表达和活性上的物种差异可能会妨碍根据临床前物种对人肾药物处置的预测。提出的解决方案是基于体外-体内外推法(IVIVE)的自下而上的药物动力学参数预测,这是由体外实验技术的最新进展和相关比例因子的应用所介导的。此次审查是对2015 AAPS年度会议和展览(佛罗里达州奥兰多; 2015年10月25日至29日)报告第一部分的后续研究,该报告的重点是IVIVE和肾脏药物处置的机理预测。它描述了可用于研究肾脏药物处置的各种机制性肾脏模型。特别注意已尝试结合IVIVE要素的工作。另外,还讨论了在预测肾脏药物相互作用中使用机械模型以及在确定肾脏疾病剂量的适当调整中的应用潜力。着重指出了需要合适的临床药代动力学数据来描述各种情况下肾脏模型的机械方面。

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