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Methotrexate Pharmacokinetics in Transgenic Mice with Liver-Specific Expression of Human Organic Anion-Transporting Polypeptide 1B1 (SLCO1B1)

Evita van de Steeg, Cornelia M.M. van der Kruijssen, Els Wagenaar, Johanna E.C. Burggraaff, Elly Mesman, Kathryn E. Kenworthy and Alfred H. Schinkel
Drug Metabolism and Disposition February 2009, 37 (2) 277-281; DOI: https://doi.org/10.1124/dmd.108.024315
Evita van de Steeg
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Cornelia M.M. van der Kruijssen
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Els Wagenaar
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Johanna E.C. Burggraaff
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Elly Mesman
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Kathryn E. Kenworthy
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Alfred H. Schinkel
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Abstract

Human organic anion-transporting polypeptide 1B1 (OATP1B1) is an important hepatic uptake transporter that can transport a wide variety of drugs. In the present study, we have generated and characterized a transgenic mouse model with specific and functional expression of human OATP1B1 (SLCO1B1) in the liver. Immunohistochemical staining revealed basolateral localization of transgenic OATP1B1 in the liver, whereas no expression of OATP1B1 was found in the kidney and small intestine. Using this transgenic model, the in vivo role of human OATP1B1 in the disposition of the anticancer drug methotrexate (MTX) was studied. In mice on a semisynthetic diet, the area under the plasma concentration-time curve for intravenous methotrexate in SLCO1B1 transgenic mice was 1.5-fold decreased compared with wild-type mice. Furthermore, the amount of MTX in the liver was markedly higher (∼2-fold) in the SLCO1B1 transgenic mice compared with wild-type mice, resulting in 2- to 4-fold higher liver-plasma ratios of MTX. Some murine liver Slco genes were markedly down-regulated on the semisynthetic diet compared with a standard diet, which probably reduced murine Oatp-mediated MTX uptake in the liver and therefore facilitated detection of the function of the transgenic OATP1B1. Taken together, these data demonstrate a marked and possibly rate-limiting role for human OATP1B1 in MTX elimination in vivo. Variation in OATP1B1 activity due to genetic polymorphisms, drug-drug interactions, and possibly dietary conditions may therefore play a role in the severity of MTX-related toxicity. SLCO1B1 transgenic mice could be a useful tool in studying the in vivo role of human OATP1B1 in drug pharmacokinetics.

Footnotes

  • This work was supported by GlaxoSmithKline [Grant S2918]; the Technical Sciences Foundation of the Netherlands Organization for Scientific Research (NOW/STW) [Grant BFA.6165]; and the Dutch Cancer Society [Grants 2000-2143, 2007-3764].

  • Article, publication date, and citation information can be found at http://dmd.aspetjournals.org.

  • doi:10.1124/dmd.108.024315.

  • ABBREVIATIONS: OATP1B1, organic anion-transporting polypeptide 1B1; MTX, methotrexate; kb, kilobase; PCR, polymerase chain reaction; ApoE, apolipoprotein E; RT, real-time; 7-OH-MTX, 7-hydroxy-methotrexate; HPLC, high-performance liquid chromatography; AUC, area under plasma versus time curve; HCR1, hepatic control region-1.

  • ↵ Embedded Image The online version of this article (available at http://dmd.aspetjournals.org) contains supplemental material.

    • Received September 1, 2008.
    • Accepted November 13, 2008.
  • The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 37 (2)
Drug Metabolism and Disposition
Vol. 37, Issue 2
1 Feb 2009
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OtherShort Communication

Methotrexate Pharmacokinetics in Transgenic Mice with Liver-Specific Expression of Human Organic Anion-Transporting Polypeptide 1B1 (SLCO1B1)

Evita van de Steeg, Cornelia M.M. van der Kruijssen, Els Wagenaar, Johanna E.C. Burggraaff, Elly Mesman, Kathryn E. Kenworthy and Alfred H. Schinkel
Drug Metabolism and Disposition February 1, 2009, 37 (2) 277-281; DOI: https://doi.org/10.1124/dmd.108.024315

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OtherShort Communication

Methotrexate Pharmacokinetics in Transgenic Mice with Liver-Specific Expression of Human Organic Anion-Transporting Polypeptide 1B1 (SLCO1B1)

Evita van de Steeg, Cornelia M.M. van der Kruijssen, Els Wagenaar, Johanna E.C. Burggraaff, Elly Mesman, Kathryn E. Kenworthy and Alfred H. Schinkel
Drug Metabolism and Disposition February 1, 2009, 37 (2) 277-281; DOI: https://doi.org/10.1124/dmd.108.024315
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