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Research ArticleArticle

Substrate-Dependent Inhibition of Organic Anion Transporting Polypeptide 1B1: Comparative Analysis with Prototypical Probe Substrates, Estradiol-17β-Glucuronide, Estrone-3-Sulfate, and Sulfobromophthalein

Saki Izumi, Yoshitane Nozaki, Takafumi Komori, Kazuya Maeda, Osamu Takenaka, Kazutomi Kusano, Tsutomu Yoshimura, Hiroyuki Kusuhara and Yuichi Sugiyama
Drug Metabolism and Disposition August 6, 2013, dmd.113.052290; DOI: https://doi.org/10.1124/dmd.113.052290
Saki Izumi
1 Drug Metabolism and Pharmacokinetics Japan, Tsukuba Research Laboratories, Eisai Co. Ltd.;
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Yoshitane Nozaki
1 Drug Metabolism and Pharmacokinetics Japan, Tsukuba Research Laboratories, Eisai Co. Ltd.;
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Takafumi Komori
1 Drug Metabolism and Pharmacokinetics Japan, Tsukuba Research Laboratories, Eisai Co. Ltd.;
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Kazuya Maeda
2 Graduate School of Pharmaceutical Sciences, The University of Tokyo;
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Osamu Takenaka
1 Drug Metabolism and Pharmacokinetics Japan, Tsukuba Research Laboratories, Eisai Co. Ltd.;
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Kazutomi Kusano
1 Drug Metabolism and Pharmacokinetics Japan, Tsukuba Research Laboratories, Eisai Co. Ltd.;
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Tsutomu Yoshimura
1 Drug Metabolism and Pharmacokinetics Japan, Tsukuba Research Laboratories, Eisai Co. Ltd.;
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Hiroyuki Kusuhara
2 Graduate School of Pharmaceutical Sciences, The University of Tokyo;
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Yuichi Sugiyama
3 Sugiyama Laboratory, RIKEN Innovation Center, Research Cluster for Innovation, RIKEN
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  • For correspondence: ychi.sugiyama@riken.jp
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Abstract

Organic anion transporting polypeptide (OATP) 1B1 plays an important role in the hepatic uptake of many drugs, and the evaluation of OATP1B1-mediated drug-drug interactions (DDIs) is emphasized in the latest DDI (draft) guidance from US and EU regulatory agencies. It has been suggested that some OATP1B1 inhibitors show a discrepancy in their inhibitory potential depending on the substrates used in the cell-based assay. In this study, inhibitory effects of fourteen compounds on the OATP1B1-mediated uptake of prototypical substrates, [3H]estradiol-17β-glucuronide (E2G), [3H]estrone-3-sulfate (E1S), and [3H]sulfobromophthalein (BSP) were studied in OATP1B1-transfected cells. Inhibitory potencies of tested compounds varied depending on the substrates. Ritonavir, gemfibrozil, and erythromycin caused remarkable substrate-dependent inhibition with up to 117-, 14-, and 13-fold difference in their IC50 values, respectively. Also, clinically-relevant OATP inhibitors, rifampin and cyclosporin A exhibited up to 12- and 6-fold variation in their IC50 values, respectively. Regardless of the inhibitors tested, the most potent OATP1B1 inhibition was observed when [3H]E2G was used as a substrate. Mutual inhibition studies on OATP1B1 indicated that E2G and E1S competitively inhibited each other, whereas BSP noncompetitively inhibited E2G uptake. In addition, BSP inhibited E1S in a competitive manner, but E1S caused an atypical kinetics on BSP uptake. This study showed substrate-dependent inhibition of OATP1B1, and demonstrated that E2G was the most sensitive in vitro OATP1B1 probe substrate among three substrates tested. This will give us an insight into the assessment of clinically relevant OATP1B1-mediated DDI in vitro with minimum potential of false-negative prediction.

  • active transport
  • drug transport
  • drug-drug interactions
  • hepatic transport
  • hepatic uptake
  • inhibition
  • transporters
  • The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 50 (5)
Drug Metabolism and Disposition
Vol. 50, Issue 5
1 May 2022
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Substrate-Dependent Inhibition of Organic Anion Transporting Polypeptide 1B1: Comparative Analysis with Prototypical Probe Substrates, Estradiol-17β-Glucuronide, Estrone-3-Sulfate, and Sulfobromophthalein
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Research ArticleArticle

Substrate-Dependent Inhibition of Organic Anion Transporting Polypeptide 1B1: Comparative Analysis with Prototypical Probe Substrates, Estradiol-17β-Glucuronide, Estrone-3-Sulfate, and Sulfobromophthalein

Saki Izumi, Yoshitane Nozaki, Takafumi Komori, Kazuya Maeda, Osamu Takenaka, Kazutomi Kusano, Tsutomu Yoshimura, Hiroyuki Kusuhara and Yuichi Sugiyama
Drug Metabolism and Disposition August 6, 2013, dmd.113.052290; DOI: https://doi.org/10.1124/dmd.113.052290

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Research ArticleArticle

Substrate-Dependent Inhibition of Organic Anion Transporting Polypeptide 1B1: Comparative Analysis with Prototypical Probe Substrates, Estradiol-17β-Glucuronide, Estrone-3-Sulfate, and Sulfobromophthalein

Saki Izumi, Yoshitane Nozaki, Takafumi Komori, Kazuya Maeda, Osamu Takenaka, Kazutomi Kusano, Tsutomu Yoshimura, Hiroyuki Kusuhara and Yuichi Sugiyama
Drug Metabolism and Disposition August 6, 2013, dmd.113.052290; DOI: https://doi.org/10.1124/dmd.113.052290
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