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Rapid CommunicationShort Communication

Minor Compensatory Changes in SAGE Mdr1a (P-gp), Bcrp, and Mrp2 Knockout Rats Do Not Detract from Their Utility in the Study of Transporter-Mediated Pharmacokinetics

Maciej J. Zamek-Gliszczynski, Keith M. Goldstein, April Paulman, Thomas K. Baker and Timothy P. Ryan
Drug Metabolism and Disposition June 2013, 41 (6) 1174-1178; DOI: https://doi.org/10.1124/dmd.113.051409
Maciej J. Zamek-Gliszczynski
Drug Disposition and Toxicology, Lilly Research Laboratories, Indianapolis, IN (M.J.Z.-G., K.M.G., T.K.B., T.P.R.); and Covance Laboratories, Greenfield, IN (A.P.)
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Keith M. Goldstein
Drug Disposition and Toxicology, Lilly Research Laboratories, Indianapolis, IN (M.J.Z.-G., K.M.G., T.K.B., T.P.R.); and Covance Laboratories, Greenfield, IN (A.P.)
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April Paulman
Drug Disposition and Toxicology, Lilly Research Laboratories, Indianapolis, IN (M.J.Z.-G., K.M.G., T.K.B., T.P.R.); and Covance Laboratories, Greenfield, IN (A.P.)
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Thomas K. Baker
Drug Disposition and Toxicology, Lilly Research Laboratories, Indianapolis, IN (M.J.Z.-G., K.M.G., T.K.B., T.P.R.); and Covance Laboratories, Greenfield, IN (A.P.)
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Timothy P. Ryan
Drug Disposition and Toxicology, Lilly Research Laboratories, Indianapolis, IN (M.J.Z.-G., K.M.G., T.K.B., T.P.R.); and Covance Laboratories, Greenfield, IN (A.P.)
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Abstract

Mdr1a-, Bcrp-, and Mrp2-knockout rats are a more practical species for absorption, distribution, metabolism, and excretion (ADME) studies than murine models and previously demonstrated expected alterations in the pharmacokinetics of various probe substrates. At present, gene expression and pathology changes were systematically studied in the small intestine, liver, kidney, and brain tissue from male SAGE Mdr1a, Bcrp, and Mrp2 knockout rats versus wild-type Sprague-Dawley controls. Gene expression data supported the relevant knockout genotype. As expected, Mrp2 knockout rats were hyperbilirubinemic and exhibited upregulation of hepatic Mrp3. Overall, few alterations were observed within 112 ADME-relevant genes. The two potentially most consequential changes were upregulation of intestinal carboxylesterase in Mdr1a knockouts and catechol-O-methyltransferase in all tissues of Bcrp knockout rats. Previously reported upregulation of hepatic Mdr1b P-glycoprotein in proprietary Wistar Mdr1a knockout rats was not observed in the SAGE counterpart investigated herein. Relative liver and kidney weights were 22–53% higher in all three knockouts, with microscopic increases in hepatocyte size in Mdr1a and Mrp2 knockout rats and glomerular size in Bcrp and Mrp2 knockouts. Increased relative weight of clearing organs is quantitatively consistent with reported increases in the clearance of drugs that are not substrates of the knocked-out transporter. Overall, SAGE knockout rats demonstrated modest compensatory changes, which do not preclude their general application to study transporter-mediated pharmacokinetics. However, until future studies elucidate the magnitude of functional change, caution is warranted in rare instances of extensive metabolism by catechol-O-methyltransferase in Bcrp knockouts and intestinal carboxylesterase in Mdr1a knockout rats, specifically for molecules with free catechol groups and esters subject to gut-wall hydrolysis.

Footnotes

    • Received February 3, 2013.
    • Accepted April 2, 2013.
  • ↵dx.doi.org/10.1124/dmd.113.051409.

  • Embedded ImageThis article has supplemental material available at dmd.aspetjournals.org.

  • Copyright © 2013 by The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 41 (6)
Drug Metabolism and Disposition
Vol. 41, Issue 6
1 Jun 2013
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Rapid CommunicationShort Communication

Minor Compensatory Changes in SAGE Knockout Rats

Maciej J. Zamek-Gliszczynski, Keith M. Goldstein, April Paulman, Thomas K. Baker and Timothy P. Ryan
Drug Metabolism and Disposition June 1, 2013, 41 (6) 1174-1178; DOI: https://doi.org/10.1124/dmd.113.051409

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Rapid CommunicationShort Communication

Minor Compensatory Changes in SAGE Knockout Rats

Maciej J. Zamek-Gliszczynski, Keith M. Goldstein, April Paulman, Thomas K. Baker and Timothy P. Ryan
Drug Metabolism and Disposition June 1, 2013, 41 (6) 1174-1178; DOI: https://doi.org/10.1124/dmd.113.051409
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