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Wiley InterScience

Basic & Clinical Pharmacology & Toxicology

Basic & Clinical Pharmacology & Toxicology

Volume 101 Issue 3, Pages 159 - 162

Published Online: 20 Jun 2007

Journal compilation © 2010 Nordic Pharmacological Society


Published on behalf of the Nordic Pharmacological Society and the preferred publication of the European Association for Clinical Pharmacology and Therapeutics
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Is Bupropion a More Specific Substrate for Porcine CYP2E than Chlorzoxazone and p-Nitrophenol?
Mette T. Skaanild and Christian Friis
Department of Veterinary Pathobiology, Faculty of Life Sciences, University of Copenhagen, Frederiksberg C, Denmark
Author for correspondence: Mette T. Skaanild, Department of Veterinary Pathobiology, Faculty of Life Sciences, University of Copenhagen, DK-1870 Frederiksberg C, Denmark (fax +45 35 33 35 14, e-mail mts@life.ku.dk).
Copyright © 2007 The Authors
Journal compilation © 2007 Nordic Pharmacological Society

ABSTRACT

Abstract:  Porcine microsomes are able to hydroxylate chlorzoxazone and p-nitrophenol, the most commonly used human test substrates for CYP2E1. However, in pigs, CYP2E appears not to be the only enzyme involved in the hydroxylation of chlorzoxazone and p-nitrophenol, as the enzyme capacity and immunochemical level of the apoprotein do not correlate. The present study shows that the hydroxylation of chlorzoxazone and p-nitrophenol is inhibited 50–65% by anti-human CYP2A6, suggesting that these substrates are metabolized almost equally well by CYP2A and CYP2E in pigs. To find an alternative probe to porcine CYP2E, bupropion, another human substrate, was examined. Incubation with bupropion concentrations ranging from 0.05 to 20 mM and with various inhibitors revealed that this substrate is metabolized by both CYP2A and CYP2E. At the high substrate concentration (5 mM), however, the CYP2A6 inhibition decreased compared to inhibition percentages found using the low substrate concentration (0.5 mM). The opposite was found for CYP2E, as inhibition studies with antibodies and diethyldithiocarbamate indicate that it catalysed a negligible part of the reaction at the low substrate concentration and up to 84% at the high concentration. Thus, hydroxylation of bupropion follows the same pattern in pigs as in human beings and the activity measured in pigs is comparable with the human counterpart. Furthermore, bupropion is a more specific substrate for CYP2E than chlorzoxazone and p-nitrophenol although not perfect.


(Received February 14, 2007; Accepted April 9, 2007)

DIGITAL OBJECT IDENTIFIER (DOI)
10.1111/j.1742-7843.2007.00083.x About DOI

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