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抗焦虑药和催眠药的代谢:苯二氮䓬类、丁螺环酮、佐匹克隆和唑吡坦。

Metabolism of anxiolytics and hypnotics: benzodiazepines, buspirone, zoplicone, and zolpidem.

作者信息

Chouinard G, Lefko-Singh K, Teboul E

机构信息

Louis-H. Lafontaine Hospital, Department of Psychiatry, University of Montreal, Quebec, Canada.

出版信息

Cell Mol Neurobiol. 1999 Aug;19(4):533-52. doi: 10.1023/a:1006943009192.

Abstract
  1. The benzodiazepines are among the most frequently prescribed of all drugs and have been used for their anxiolytic, anticonvulsant, and sedative/hypnotic properties. Since absorption rates, volumes of distribution, and elimination rates differ greatly among the benzodiazepine derivatives, each benzodiazepine has a unique plasma concentration curve. Although the time to peak plasma levels provides a rough guide, it is not equivalent to the time to clinical onset of effect. The importance of alpha and beta half-lives in the actions of benzodiazepines is discussed. 2. The role of cytochrome P450 isozymes in the metabolism of benzodiazepines and in potential pharmacokinetic interactions between the benzodiazepines and other coadministered drugs is discussed. 3. Buspirone, an anxiolytic with minimal sedative effects, undergoes extensive metabolism, with hydroxylation and dealkylation being the major pathways. Pharmacokinetic interactions of buspirone with other coadministered drugs seem to be minimal. 4. Zopiclone and zolpidem are used primarily as hypnotics. Both are extensively metabolized; N-demethylation, N-oxidation, and decarboxylation of zopiclone occur, and zolpidem undergoes oxidation of methyl groups and hydroxylation of a position on the imidazolepyridine ring system. Zopiclone has a chiral centre, and demonstrates stereoselective pharmacokinetics. Metabolic drug-drug interactions have been reported with zopiclone and erythromycin, trimipramine, and carbamazepine. Reports to date indicate minimal interactions of zolpidem with coadministered drugs; however, it has been reported to affect the Cmax and clearance of chlorpromazepine and to decrease metabolism of the antiviral agent ritonavin. Since CYP3A4 has been reported to play an important role in metabolism of zolpidem, possible interactions with drugs which are substrates and/or inhibitors of that CYP isozyme should be considered.
摘要
  1. 苯二氮䓬类药物是所有药物中处方量最频繁的药物之一,因其抗焦虑、抗惊厥及镇静/催眠特性而被使用。由于苯二氮䓬类衍生物的吸收速率、分布容积和消除速率差异很大,每种苯二氮䓬都有独特的血浆浓度曲线。虽然达到血浆峰值水平的时间提供了一个大致的参考,但它并不等同于临床起效时间。文中讨论了α和β半衰期在苯二氮䓬类药物作用中的重要性。2. 文中讨论了细胞色素P450同工酶在苯二氮䓬类药物代谢以及苯二氮䓬类药物与其他合用药物之间潜在药代动力学相互作用中的作用。3. 丁螺环酮是一种镇静作用极小的抗焦虑药,会经历广泛的代谢,羟基化和脱烷基化是主要途径。丁螺环酮与其他合用药物的药代动力学相互作用似乎极小。4. 佐匹克隆和唑吡坦主要用作催眠药。两者都被广泛代谢;佐匹克隆会发生N-去甲基化、N-氧化和脱羧反应,唑吡坦会发生甲基氧化以及咪唑吡啶环系统上一个位置的羟基化。佐匹克隆有一个手性中心,并表现出立体选择性药代动力学。已报道佐匹克隆与红霉素、曲米帕明和卡马西平存在代谢性药物相互作用。迄今为止的报告表明唑吡坦与合用药物的相互作用极小;然而,据报道它会影响氯丙嗪的Cmax和清除率,并降低抗病毒药物利托那韦的代谢。由于据报道CYP3A4在唑吡坦的代谢中起重要作用,应考虑其与该CYP同工酶底物和/或抑制剂药物的可能相互作用。

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