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奎尼丁、氟伏沙明和酮康唑对大鼠西酞普兰对映体选择性药代动力学的影响。

Influence of quinidine, fluvoxamine, and ketoconazole on the enantioselective pharmacokinetics of citalopram in rats.

作者信息

Rocha Adriana, Coelho Eduardo B, Lanchote Vera L

机构信息

Department of Clinical, Toxicologic and Bromatologic Analyses, Faculty of Pharmaceutical Sciences of Ribeirao Preto, University of Sao Paulo, Ribeirao Preto, SP, Brazil.

出版信息

Can J Physiol Pharmacol. 2008 Nov;86(11):770-6. doi: 10.1139/Y08-088.

Abstract

Citalopram (CITA) is available as a racemic mixture or as (+)-(S)-CITA. In humans, CITA is metabolized to demethylcitalopram (DCITA) by CYP2C19, CYP2D6, and CYP3A and to didemethylcitalopram by CYP2D6. There are no data regarding the enzymes involved in CITA and DCITA metabolism in rats. The present study investigated the influence of CYP inhibitors on the enantioselective metabolism of CITA in rats. Male Wistar rats (n = 6) received a single dose of 20 mg x kg-1 CITA after pretreatment with 80 mg x kg-1 quinidine, 10 mg x kg-1 fluvoxamine, 50 mg x kg-1 ketoconazole, or vehicle (control). Blood samples were collected up to 20 h after CITA administration. The CITA and DCITA enantiomers were analyzed by LC-MS/MS using a Chiralcel OD-R column. The kinetic disposition of CITA was enantioselective in rats (AUCS/R ratio = 0.4). Coadministration with quinidine resulted in non-enantioselective inhibition of the metabolism of CITA. Coadministration with fluvoxamine or ketoconazole, however, inhibited only the metabolism of (+)-(S)-CITA, but not of (-)-(R)-CITA when the racemic drug was administered to rats.

摘要

西酞普兰(CITA)有消旋混合物形式或(+)-(S)-CITA形式。在人体内,CITA通过CYP2C19、CYP2D6和CYP3A代谢为去甲基西酞普兰(DCITA),并通过CYP2D6代谢为双去甲基西酞普兰。关于大鼠体内参与CITA和DCITA代谢的酶,尚无相关数据。本研究调查了CYP抑制剂对大鼠体内CITA对映体选择性代谢的影响。雄性Wistar大鼠(n = 6)在分别用80 mg·kg-1奎尼丁、10 mg·kg-1氟伏沙明、50 mg·kg-1酮康唑预处理或使用赋形剂(对照)后,接受20 mg·kg-1 CITA的单次给药。在给予CITA后长达20小时采集血样。使用Chiralcel OD-R柱通过LC-MS/MS分析CITA和DCITA对映体。CITA在大鼠体内的动力学处置具有对映体选择性(AUCS/R比值 = 0.4)。与奎尼丁共同给药导致CITA代谢的非对映体选择性抑制。然而,当向大鼠给予消旋药物时,与氟伏沙明或酮康唑共同给药仅抑制(+)-(S)-CITA的代谢,而不抑制(-)-(R)-CITA的代谢。

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