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氧化多态性对人体内阿米替林及其代谢产物血药浓度和尿药浓度的作用。

Role of oxidation polymorphism on blood and urine concentrations of amitriptyline and its metabolites in man.

作者信息

Balant-Gorgia A E, Schulz P, Dayer P, Balant L, Kubli A, Gertsch C, Garrone G

出版信息

Arch Psychiatr Nervenkr (1970). 1982;232(3):215-22. doi: 10.1007/BF02141782.

Abstract

We have measured the metabolites (demethylated and hydroxylated) of amitriptyline in a group of seven normal volunteers. They were phenotyped as extensive or poor metabolizers using debrisoquine and bufuralol. The results demonstrate that the oxidative metabolism (aliphatic hydroxylation) of amitriptyline is under the same genetic control as that of debrisoquine and bufuralol. However, phenotypic polymorphism cannot be used to predict amitriptyline blood concentration after a single oral dose, since the principal metabolic pathway of amitriptyline is demethylation and not aliphatic hydroxylation.

摘要

我们在一组7名正常志愿者中测量了阿米替林的代谢产物(去甲基化和羟基化产物)。使用异喹胍和布呋洛尔将他们表型鉴定为快代谢型或慢代谢型。结果表明,阿米替林的氧化代谢(脂肪族羟基化)与异喹胍和布呋洛尔受相同的遗传控制。然而,表型多态性不能用于预测单次口服剂量后阿米替林的血药浓度,因为阿米替林的主要代谢途径是去甲基化而非脂肪族羟基化。

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