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Involvement of multiple cytochrome P450 and UDP-glucuronosyltransferase enzymes in the in vitro metabolism of muraglitazar.
Drug Metab Dispos. 2007 Jan; 35(1):139-49.DM

Abstract

Muraglitazar (Pargluva), a dual alpha/gamma peroxisome proliferator-activated receptor activator, has both glucose- and lipid-lowering effects in animal models and in patients with diabetes. The human major primary metabolic pathways of muraglitazar include acylglucuronidation, aliphatic/aryl hydroxylation, and O-demethylation. This study describes the identification of human cytochrome P450 (P450) and UDP-glucuronosyltransferase (UGT) enzymes involved in the in vitro metabolism of muraglitazar. [(14)C]Muraglitazar was metabolized by cDNA-expressed CYP2C8, 2C9, 2C19, 2D6, and 3A4, but to a very minimal extent by CYP1A2, 2A6, 2B6, 2C18, 2E1, and 3A5. Inhibition of the in vitro metabolism of muraglitazar in human liver microsomes, at a clinically efficacious concentration, by chemical inhibitors and monoclonal antibodies further supported involvement of CYP2C8, 2C9, 2C19, 2D6, and 3A4 in its oxidation. A combination of intrinsic clearance (V(max)/K(m)) and relative concentrations of each P450 enzyme in the human liver was used to predict the contribution of CYP2C8, 2C9, 2C19, 2D6, and 3A4 to the formation of each primary oxidative metabolite and to the overall oxidative metabolism of muraglitazar. Glucuronidation of [(14)C]muraglitazar was catalyzed by cDNA-expressed UGT1A1, 1A3, and 1A9, but not by UGT1A6, 1A8, 1A10, 2B4, 2B7, and 2B15. The K(m) values for muraglitazar glucuronidation by the three active UGT enzymes were similar (2-4 muM). In summary, muraglitazar was metabolized by multiple P450 and UGT enzymes to form multiple metabolites. This characteristic predicts a low potential for the alteration of the pharmacokinetic parameters of muraglitazar via polymorphic drug metabolism enzymes responsible for clearance of the compound or by coadministration of drugs that inhibit or induce relevant metabolic enzymes.

Authors+Show Affiliations

Pharmaceutical Candidate Optimization, Bristol-Myers Squibb, P.O. Box 4000, Princeton, NJ 08543, USA. donglu.zhang@bms.comNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article

Language

eng

PubMed ID

17062778

Citation

Zhang, Donglu, et al. "Involvement of Multiple Cytochrome P450 and UDP-glucuronosyltransferase Enzymes in the in Vitro Metabolism of Muraglitazar." Drug Metabolism and Disposition: the Biological Fate of Chemicals, vol. 35, no. 1, 2007, pp. 139-49.
Zhang D, Wang L, Chandrasena G, et al. Involvement of multiple cytochrome P450 and UDP-glucuronosyltransferase enzymes in the in vitro metabolism of muraglitazar. Drug Metab Dispos. 2007;35(1):139-49.
Zhang, D., Wang, L., Chandrasena, G., Ma, L., Zhu, M., Zhang, H., Davis, C. D., & Humphreys, W. G. (2007). Involvement of multiple cytochrome P450 and UDP-glucuronosyltransferase enzymes in the in vitro metabolism of muraglitazar. Drug Metabolism and Disposition: the Biological Fate of Chemicals, 35(1), 139-49.
Zhang D, et al. Involvement of Multiple Cytochrome P450 and UDP-glucuronosyltransferase Enzymes in the in Vitro Metabolism of Muraglitazar. Drug Metab Dispos. 2007;35(1):139-49. PubMed PMID: 17062778.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Involvement of multiple cytochrome P450 and UDP-glucuronosyltransferase enzymes in the in vitro metabolism of muraglitazar. AU - Zhang,Donglu, AU - Wang,Lifei, AU - Chandrasena,Gamini, AU - Ma,Li, AU - Zhu,Mingshe, AU - Zhang,Hongjian, AU - Davis,Carl D, AU - Humphreys,W Griffith, Y1 - 2006/10/24/ PY - 2006/10/26/pubmed PY - 2007/3/14/medline PY - 2006/10/26/entrez SP - 139 EP - 49 JF - Drug metabolism and disposition: the biological fate of chemicals JO - Drug Metab Dispos VL - 35 IS - 1 N2 - Muraglitazar (Pargluva), a dual alpha/gamma peroxisome proliferator-activated receptor activator, has both glucose- and lipid-lowering effects in animal models and in patients with diabetes. The human major primary metabolic pathways of muraglitazar include acylglucuronidation, aliphatic/aryl hydroxylation, and O-demethylation. This study describes the identification of human cytochrome P450 (P450) and UDP-glucuronosyltransferase (UGT) enzymes involved in the in vitro metabolism of muraglitazar. [(14)C]Muraglitazar was metabolized by cDNA-expressed CYP2C8, 2C9, 2C19, 2D6, and 3A4, but to a very minimal extent by CYP1A2, 2A6, 2B6, 2C18, 2E1, and 3A5. Inhibition of the in vitro metabolism of muraglitazar in human liver microsomes, at a clinically efficacious concentration, by chemical inhibitors and monoclonal antibodies further supported involvement of CYP2C8, 2C9, 2C19, 2D6, and 3A4 in its oxidation. A combination of intrinsic clearance (V(max)/K(m)) and relative concentrations of each P450 enzyme in the human liver was used to predict the contribution of CYP2C8, 2C9, 2C19, 2D6, and 3A4 to the formation of each primary oxidative metabolite and to the overall oxidative metabolism of muraglitazar. Glucuronidation of [(14)C]muraglitazar was catalyzed by cDNA-expressed UGT1A1, 1A3, and 1A9, but not by UGT1A6, 1A8, 1A10, 2B4, 2B7, and 2B15. The K(m) values for muraglitazar glucuronidation by the three active UGT enzymes were similar (2-4 muM). In summary, muraglitazar was metabolized by multiple P450 and UGT enzymes to form multiple metabolites. This characteristic predicts a low potential for the alteration of the pharmacokinetic parameters of muraglitazar via polymorphic drug metabolism enzymes responsible for clearance of the compound or by coadministration of drugs that inhibit or induce relevant metabolic enzymes. SN - 0090-9556 UR - https://www.unboundmedicine.com/medline/citation/17062778/Involvement_of_multiple_cytochrome_P450_and_UDP_glucuronosyltransferase_enzymes_in_the_in_vitro_metabolism_of_muraglitazar_ L2 - http://dmd.aspetjournals.org/cgi/pmidlookup?view=long&pmid=17062778 DB - PRIME DP - Unbound Medicine ER -