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芬布鲁替尼的复杂药物相互作用及利用转运体内源性生物标志物阐明药物相互作用机制

Complex DDI by Fenebrutinib and the Use of Transporter Endogenous Biomarkers to Elucidate the Mechanism of DDI.

机构信息

Clinical Science, Genentech, Inc., South San Francisco, California, USA.

Clinical Pharmacology, Genentech, Inc., South San Francisco, California, USA.

出版信息

Clin Pharmacol Ther. 2020 Jan;107(1):269-277. doi: 10.1002/cpt.1599. Epub 2019 Sep 16.

Abstract

Mechanistic understanding of complex clinical drug-drug interactions (DDIs) with potential involvement of multiple elimination pathways has been challenging, especially given the general lack of specific probe substrates for transporters. Here, we conducted a clinical DDI study to evaluate the interaction potential of fenebrutinib using midazolam (MDZ; CYP3A), simvastatin (CYP3A and OATP1B), and rosuvastatin (BCRP and OATP1B) as probe substrates. Fenebrutinib (200 mg) increased the area under the curve (AUC) of these probe substrates twofold to threefold. To evaluate the mechanism of the observed DDIs, we measured the concentration of coproporphyrin I (CP-I) and coproporphyrin III (CP-III), endogenous biomarkers of OATP1B. There was no change in CP-I or CP-III levels with fenebrutinib, suggesting that the observed DDIs were caused by inhibition of CYP3A and BCRP rather than OATP1B, likely due to increased bioavailability. This is the first published account using an endogenous transporter biomarker to understand the mechanism of complex DDIs involving multiple elimination pathways.

摘要

机制理解复杂的临床药物-药物相互作用(DDI),可能涉及多种消除途径,一直具有挑战性,特别是鉴于一般缺乏用于转运体的特定探针底物。在这里,我们进行了一项临床 DDI 研究,以评估芬纳替尼(fenebrutinib)使用咪达唑仑(MDZ;CYP3A)、辛伐他汀(CYP3A 和 OATP1B)和瑞舒伐他汀(BCRP 和 OATP1B)作为探针底物的相互作用潜力。芬纳替尼(200mg)使这些探针底物的 AUC 增加了两倍至三倍。为了评估观察到的 DDI 的机制,我们测量了内源性 OATP1B 生物标志物粪卟啉 I(CP-I)和粪卟啉 III(CP-III)的浓度。芬纳替尼治疗后 CP-I 或 CP-III 水平没有变化,这表明观察到的 DDI 是由 CYP3A 和 BCRP 的抑制引起的,而不是 OATP1B,可能是由于生物利用度增加所致。这是首次使用内源性转运体生物标志物来了解涉及多种消除途径的复杂 DDI 机制的报告。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8d6/6977399/e5f2be24bb37/CPT-107-269-g001.jpg

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