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了解他汀类药物的关键处置途径,以评估药物开发过程中的药物相互作用风险:不仅仅与 OATP1B1 有关。

Understanding the critical disposition pathways of statins to assess drug-drug interaction risk during drug development: it's not just about OATP1B1.

机构信息

Global DMPK-In Vitro/In Silico ADME, AstraZeneca R&D Alderley Park, Cheshire, UK.

出版信息

Clin Pharmacol Ther. 2012 Nov;92(5):584-98. doi: 10.1038/clpt.2012.163. Epub 2012 Oct 10.

Abstract

The use of statins is widespread across disease areas because many patients have comorbidities. Given that these drugs have become common as comedications, it is essential to have an understanding of the potential risks of drug-drug interactions (DDIs) between statins and candidate drugs in development. Although the hepatic uptake transporter organic anion-transporting polypeptide 1B1 (OATP1B1) is known to play a substantial role in statin-related DDI risk, other transporters and metabolizing enzymes can also be involved. Consequently, a holistic approach to risk assessment is required, tailored to each statin. Using evidence from pharmacogenetics, DDIs, and literature on absorption, distribution, metabolism, and elimination (ADME) in humans, this review identifies pathways that contribute the most to, and are therefore the most critical to, the disposition of each statin. It also provides an understanding of the expected theoretical maximum increase in systemic exposure if the disposition of a statin is inhibited. Finally, on a statin-by-statin basis, we propose in vitro inhibition studies that should be routinely conducted during drug development so as to better assess DDI risk.

摘要

他汀类药物的应用广泛分布于各个疾病领域,因为许多患者都患有合并症。鉴于这些药物已作为辅助药物广泛应用,因此了解他汀类药物与候选药物之间药物-药物相互作用(DDI)的潜在风险至关重要。虽然已知肝摄取转运体有机阴离子转运多肽 1B1(OATP1B1)在他汀类药物相关 DDI 风险中起着重要作用,但其他转运体和代谢酶也可能参与其中。因此,需要采用整体方法进行风险评估,并针对每种他汀类药物进行定制。本综述利用来自药物遗传学、DDI 以及人类吸收、分布、代谢和消除(ADME)文献中的证据,确定了对每种他汀类药物的处置贡献最大且因此最为关键的途径。它还提供了对如果一种他汀类药物的处置受到抑制,预计系统暴露的理论最大增加的理解。最后,我们针对每个他汀类药物提出了建议,在药物开发过程中应常规进行体外抑制研究,以便更好地评估 DDI 风险。

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