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Eur J Med Chem ; 62: 214-21, 2013 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-23353740

RESUMO

Using a combination of docking and molecular dynamics simulations, we predicted that p-hydroxylation by CYP1A2 would be the main metabolic pathway for the 1-[1-(4-chlorophenyl)-1H-4pyrazolylmethyl] phenylhexahydropiperazine, LASSBio-579 (3). As the result of a screening process with strains of filamentous fungi, Cunninghamella echinulata ATCC 9244 was chosen to scale up the preparation of the p-hydroxylated metabolite (4). About 30 min after i.p. administration of (3) to rats was identified as the p-hydroxylated metabolite, confirming our in silico previsions. Chemical synthesis of the metabolite was performed and allowed its pharmacological evaluation in binding assays revealing its high affinity for D2 and D4 receptors, indicating that this metabolite should participate to the antipsychotic effect of (3) in vivo. Furthermore, we report here that both (3) and its p-hydroxylated metabolite (4) have a much lower affinity than clozapine for two receptors involved in adverse reactions. Voltammetric assays were useful to understand the redox profile of (3).


Assuntos
Antipsicóticos/farmacologia , Chumbo/química , Compostos Organometálicos/farmacologia , Piperazinas/química , Animais , Antipsicóticos/química , Antipsicóticos/metabolismo , Antagonistas dos Receptores de Dopamina D2 , Relação Dose-Resposta a Droga , Masculino , Modelos Moleculares , Simulação de Dinâmica Molecular , Estrutura Molecular , Compostos Organometálicos/química , Compostos Organometálicos/metabolismo , Piperazinas/metabolismo , Ratos , Ratos Wistar , Receptores de Dopamina D4/antagonistas & inibidores , Relação Estrutura-Atividade
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