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In vitro human hepatocyte-based experimental systems for the evaluation of human drug metabolism, drug-drug interactions, and drug toxicity in drug development

机译:基于体外人肝细胞的实验系统,用于评估药物开发中的人类药物代谢,药物-药物相互作用和药物毒性

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摘要

Species difference in drug metabolism and drug toxicity is a well-established phenomenon. As a result, the classical paradigm of preclinical testing of drug candidates in animals may not be appropriate. One preclinical approach to evaluate human drug properties, especially ADMET (absorption, disposition, metabolism, elimination, and toxicity) properties, is to apply in vitro experimental systems with relevant human properties. The latest advances include the use of human hepatocytes to evaluate hepatic uptake, metabolism, efflux and toxicity. Successful cryopreservation of human hepatocytes to retain high viability, metabolic capacity, as well as the ability to be cultured allow routine application of this relevant experimental system. This review summarizes the latest findings on human hepatocytes isolation, cryopreservation, culturing, as well as application in the evaluation of metabolic stability, metabolite profiling, hepatic uptake and efflux, metabolic drug-drug interactions, and drug toxicity. The use of hepatocyte to evaluate the role of metabolism in drug toxicity represents a major advance in drug toxicity evaluation. The use of the novel integrated discrete multiple organ coculture (IdMOC) system allows the evaluation of the role of hepatic metabolism on nonhepatic toxicity.
机译:药物代谢和药物毒性的物种差异是一种公认​​的现象。结果,对动物中候选药物进行临床前测试的经典范例可能不合适。评估人类药物特性,尤其是ADMET(吸收,处置,代谢,消除和毒性)特性的一种临床前方法是应用具有相关人类特性的体外实验系统。最新进展包括使用人类肝细胞评估肝吸收,新陈代谢,外排和毒性。成功地冷冻保存人肝细胞以保留高生存力,新陈代谢能力以及培养能力,使得该相关实验系统得以常规应用。这篇综述总结了有关人类肝细胞分离,冷冻保存,培养以及在评估代谢稳定性,代谢物谱,肝吸收和流出,代谢药物相互作用以及药物毒性方面的最新发现。使用肝细胞评估代谢在药物毒性中的作用代表了药物毒性评估的一项重大进展。使用新型集成的离散多器官共培养(IdMOC)系统可以评估肝脏代谢对非肝毒性的作用。

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