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Research Article

AN OVERVIEW OF THE MECHANISM, SUBSTRATE SPECIFICITIES, AND STRUCTURE OF FMOs

Pages 503-511 | Published online: 25 Jul 2002

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Read on this site (8)

Victoria Miró, Adrian Lifschitz, Paula Viviani, Carolina Rocha, Carlos Lanusse, Livio Costa$suffix/text()$suffix/text() & Guillermo Virkel. (2020) In vitro inhibition of the hepatic S-oxygenation of the anthelmintic albendazole by the natural monoterpene thymol in sheep. Xenobiotica 50:4, pages 408-414.
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Ian R. Phillips & Elizabeth A. Shephard. (2017) Drug metabolism by flavin-containing monooxygenases of human and mouse. Expert Opinion on Drug Metabolism & Toxicology 13:2, pages 167-181.
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David E. Klick & Ronald N. Hines. (2007) Mechanisms Regulating Human FMO3 Transcription. Drug Metabolism Reviews 39:2-3, pages 419-442.
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R.C.A. Onderwater, A.E. Rettie, J.N.M. Commandeur & N.P.E. Vermeulen. (2006) Bioactivation of N-substituted N′-(4-imidazole-ethyl)thioureas by human FMO1 and FMO3. Xenobiotica 36:7, pages 645-657.
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Ronald N Hines. (2006) Developmental and tissue-specific expression of human flavin-containing monooxygenases 1 and 3. Expert Opinion on Drug Metabolism & Toxicology 2:1, pages 41-49.
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Sharon K. Krueger, Jonathan E. VanDyke, David E. Williams & Ronald N. Hines. (2006) The Role of Flavin-Containing Monooxygenase (FMO) in the Metabolism of Tamoxifen and Other Tertiary Amines. Drug Metabolism Reviews 38:1-2, pages 139-147.
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