Shi Shaojun, Li Yunqiao
Department of Pharmacy, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1277 Jiefang Avenue, Wuhan 430022, People's Republic of China.
Curr Drug Metab. 2014;15(10):915-41. doi: 10.2174/1389200216666150401110610.
In recent years, the functional interplay between drug-metabolizing enzymes (DMEs) and drug transporters (DTs) in drug absorption and disposition, as well as the complex drug interactions (DIs), has become an intriguing contention, which has also been termed the "transport-metabolism interplay". The current mechanistic understanding for this interplay is first discussed. In the present article, studies investigating the interplay between cytochrome P450 enzymes (CYPs) and efflux transporters have been systematically reviewed in vitro, in situ, in silico, in animals and humans, followed by CYPs-uptake transporters, CYPs-uptake transporters-efflux transporters, and phase II metabolic enzymes-transporters interplay studies. Although several cellular, isolated organ and whole animal studies, in conjunction with simulation and modelling, have addressed the issue that DMEs and DTs can work cooperatively to affect the bioavailability of shared substrate drugs, convincing evidences in human studies are still lacking. Furthermore, the functional interplay between DMEs and DTs will be highly substrate- and dose- dependent. Additionally, we review recent studies to evaluate the influence of genetic variations in the interplay between DMEs and DTs, which might be helpful for the prediction of pharmacokinetics (PK) and possible DIs in human more correctly. There is strong evidence of coordinately regulated DEMs and DTs gene expression and protein activity (e.g. nuclear receptors). Taken together, further investigations and analysis are urgently needed to explore the functional interplay of DMEs and DTs and to delineate the underlying mechanisms.
近年来,药物代谢酶(DMEs)与药物转运体(DTs)在药物吸收和处置过程中的功能相互作用,以及复杂的药物相互作用(DIs),已成为一个引人关注的争论点,这也被称为“转运-代谢相互作用”。本文首先讨论了目前对这种相互作用的机制理解。在本文中,对细胞色素P450酶(CYPs)与外排转运体之间相互作用的研究已在体外、原位、计算机模拟、动物和人体中进行了系统综述,随后是CYPs-摄取转运体、CYPs-摄取转运体-外排转运体以及II相代谢酶-转运体相互作用的研究。尽管一些细胞、离体器官和整体动物研究,结合模拟和建模,已经解决了DMEs和DTs可以协同作用以影响共同底物药物生物利用度的问题,但人体研究中仍缺乏令人信服的证据。此外,DMEs和DTs之间的功能相互作用将高度依赖于底物和剂量。此外,我们综述了最近的研究,以评估基因变异对DMEs和DTs相互作用的影响,这可能有助于更准确地预测人体中的药代动力学(PK)和可能的药物相互作用。有强有力的证据表明DEMs和DTs的基因表达和蛋白活性受到协调调节(例如核受体)。综上所述,迫切需要进一步的研究和分析来探索DMEs和DTs的功能相互作用,并阐明其潜在机制。