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Use of electrospray ionization liquid chromatography-mass spectrometry to study the role of CYP2D^ in the in vitro metabolism of 5-hydroxytryptamine receptor antagonists
Institution:1. Harran University, Faculty of Sciences and Arts, Physics Department, Osmanbey, 63100 Sanl?urfa, Turkey;2. Akdeniz University, Faculty of Education, Mathematics and Sciences Education Department, Dumlup?nar Bulv., 07070 Antalya, Turkey;1. Discovery Sciences, Janssen R&D, Beerse, Belgium;2. Department of Pharmaceutical and Pharmacological Sciences, KU Leuven, Leuven, Belgium;1. Departament and Graduate Program of Animal Science, Universidade do Estado de Santa Catarina (UDESC). Rua Beloni Trombeta Zanini n. 680E, Bairro Santo Antônio, CEP: 89815-630, Chapecó, SC, Brazil;2. Department of Exact and Environmental Sciences, Universidade Comunitária Da Região De Chapecó (UNOCHAPECÓ). Servidão Anjo da Guarda, 295-D - Efapi, Chapecó - SC, 89809-900, Chapecó, SC, Brazil;1. Arkansas Department of Health, Arkansas Public Health Laboratory, 4815 W Markham St, Little Rock, AR, 72205, USA;2. Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, 4301 W Markham St, Little Rock, AR, 72205, USA;3. Department of Pharmacology and Toxicology, College of Medicine, University of Arkansas for Medical Sciences, 4301 W Markham St, Little Rock, AR, 72205, USA;4. Department of Pediatrics, College of Medicine, University of Arkansas for Medical Sciences, 4301 W Markham St #550, Little Rock, AR, 72205, USA
Abstract:An electrospray ionization liquid chromatographic-mass spectrometric (ESI-LC-MS) method has been developed to study the involvement of the cytochrome P450 isoenzyme CYP2D6 in the in vitro metabolism of the indole containing 5-hydroxytryptamine (5-HT3) receptor antagonists tropisetron, ondansetron and dolasetron in human liver microsomes. Compounds were eluted using linear gradients of acetonitrile-20 mM ammonium acetate, solvent A, (10:90, v/v) (ph 6.0) and solvent B, (60:40, v/v) (pH 6.0) and a Nucleosil C4 column. Microsomal incubations were analysed using selected ion monitoring of the molecular ion of parent drug and the molecular ion of hydroxylated metabolites. The involvement of CYP2D6 in drug metabolism was assessed by inhibition studies using quinidine (5 μM), a specific inhibitor of human CYP2D6, as well as by incubating compounds with microsomes prepared from celss transfected with cDNA encoding human CYP2D6. Results showed that the oxidation of all three compounds involved CYP2D6, but only that of tropisetron was inhibited by over 90% in the presence of quinidine. The present method can be applied to pre-clinical compounds, at an early stage of drug discovery, to assess the involvement of CYP2D6 in their metabolism and to screen for those compounds where CYP2D6 is the only isoenzyme implicated in the formation of major metabolites.
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