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氟伏沙明及其他抗抑郁药对褪黑素生物转化的不同作用。

Differential effects of fluvoxamine and other antidepressants on the biotransformation of melatonin.

作者信息

Härtter S, Wang X, Weigmann H, Friedberg T, Arand M, Oesch F, Hiemke C

机构信息

Department of Psychiatry, University of Mainz, Germany.

出版信息

J Clin Psychopharmacol. 2001 Apr;21(2):167-74. doi: 10.1097/00004714-200104000-00008.

Abstract

Melatonin, the predominant product of the pineal gland, is involved in the maintenance of diurnal rhythms. Nocturnal blood concentrations of melatonin have been shown to be enhanced by fluvoxamine, but not by other serotonin reuptake inhibitors. Because fluvoxamine is an inhibitor of several cytochrome P450 (CYP) enzymes, the authors studied the biotransformation of melatonin and the effects of fluvoxamine on the metabolism of melatonin in vitro using human liver microsomes and recombinant human CYP isoenzymes. Melatonin was found to be almost exclusively metabolized by CYP1A2 to 6-hydroxymelatonin and N-acetylserotonin with a minimal contribution of CYP2C19. Both reactions were potently inhibited by fluvoxamine, with a Ki of 0.02 microM for the formation of 6-hydroxymelatonin and 0.05 microM for the formation of N-acetylserotonin. Other than fluvoxamine, fluoxetine, paroxetine, citalopram, imipramine, and desipramine were also tested at 2 and 20 microM. Among the other antidepressants, only paroxetine was able to affect the metabolism of melatonin at supratherapeutic concentrations of 20 microM, which did not reach by far the magnitude of the inhibitory potency of fluvoxamine. The authors concluded that fluvoxamine is a potent inhibitor of melatonin degradation. Because this inhibitory action is also found in vivo, fluvoxamine might be used as an enhancer of melatonin, which might offer new therapeutic possibilities of fluvoxamine.

摘要

褪黑素是松果体的主要产物,参与昼夜节律的维持。已表明氟伏沙明可提高夜间褪黑素的血药浓度,而其他5-羟色胺再摄取抑制剂则无此作用。由于氟伏沙明是几种细胞色素P450(CYP)酶的抑制剂,作者利用人肝微粒体和重组人CYP同工酶,在体外研究了褪黑素的生物转化以及氟伏沙明对褪黑素代谢的影响。发现褪黑素几乎完全由CYP1A2代谢为6-羟基褪黑素和N-乙酰5-羟色胺,CYP2C19的作用极小。这两种反应均被氟伏沙明强烈抑制,生成6-羟基褪黑素的Ki为0.02微摩尔,生成N-乙酰5-羟色胺的Ki为0.05微摩尔。除氟伏沙明外,还在2微摩尔和20微摩尔浓度下测试了氟西汀、帕罗西汀、西酞普兰、丙咪嗪和地昔帕明。在其他抗抑郁药中,只有帕罗西汀在20微摩尔的超治疗浓度下能够影响褪黑素代谢,但其抑制效力远不及氟伏沙明。作者得出结论,氟伏沙明是褪黑素降解的有效抑制剂。由于这种抑制作用在体内也能观察到,氟伏沙明可能用作褪黑素增强剂,这可能为氟伏沙明提供新的治疗可能性。

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