首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Flutamide metabolism in four different species in vitro and identification of flutamide metabolites in human patient urine by high performance liquid chromatography/tandem mass spectrometry.
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Flutamide metabolism in four different species in vitro and identification of flutamide metabolites in human patient urine by high performance liquid chromatography/tandem mass spectrometry.

机译:氟他胺在四种不同物种中的体外代谢以及高效液相色谱/串联质谱法鉴定人患者尿液中的氟他胺代谢物。

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摘要

A new metabolic scheme of flutamide is proposed in this article. Some patients treated with flutamide, a nonsteroidal antiandrogen, have developed severe hepatic dysfunction. Toxic metabolites have been proposed to be responsible for these negative effects. In this study, the qualitative aspects of the in vitro metabolism of flutamide in liver microsomes from human, dog, pig, and rat were evaluated. A direct comparison of the flutamide metabolism in liver and prostate microsomes from pig was made, and the in vivo metabolism of flutamide was investigated in urine from orally treated prostate cancer patients. Liquid chromatography/tandem mass spectrometry was used for analysis. The mass spectrometer was equipped with an electrospray interface and operated in the negative ion mode. In liver microsomes from pig, dog, and rat, extensive hydroxylation of flutamide occurred. One, two, or three hydroxy groups were attached, and isomeric forms were detected for both monohydroxylated and trihydroxylated drug. Inpig liver microsomes, isomers of a third metabolite, hydroxylated 4-nitro-3-(trifluoromethyl)-aniline, were also found after incubation with either flutamide or 2-hydroxyflutamide. In human liver microsomes, the pharmacologically active 2-hydroxyflutamide was the only metabolite detected. Several phase I metabolites as well as four intact phase II metabolites could be recovered from the urine samples. For the first time in humans, glucuronic acid conjugates of hydroxylated 4-nitro-3-(trifluoromethyl)-aniline, and mono- and dihydroxylated flutamide were identified, together with hydroxylated 4-nitro-3-(trifluoromethyl)-aniline conjugated with sulfate. In addition, one mercapturic acid conjugate of hydroxylated flutamide, probably formed from flutamide via a reactive intermediate, was detected.
机译:本文提出了一种新的氟他胺代谢方案。一些接受氟他胺(一种非甾体类抗雄激素药物)治疗的患者已经出现严重的肝功能障碍。已经提出有毒代谢物是造成这些负面影响的原因。在这项研究中,评估了人,狗,猪和大鼠肝脏微粒体中氟他胺的体外代谢的定性方面。直接比较了猪肝脏和前列腺微粒体中氟他胺的代谢,并研究了口服治疗的前列腺癌患者尿液中氟他胺的体内代谢。使用液相色谱/串联质谱法进行分析。质谱仪配备有电喷雾接口,并以负离子模式运行。在猪,狗和大鼠的肝微粒体中,发生了氟他胺的广泛羟基化。连接一个,两个或三个羟基,并检测到单羟基化和三羟基化药物的异构形式。与氟他胺或2-羟基氟他胺一起孵育后,还发现了猪肝脏微粒体,它是第三种代谢产物的异构体,羟基化的4-硝基-3-(三氟甲基)-苯胺。在人肝微粒体中,唯一检测到的药理活性2-羟基氟他胺。可以从尿液样本中回收几种I期代谢物和4种完整的II期代谢物。在人类中,首次鉴定了羟基化的4-硝基-3-(三氟甲基)-苯胺的葡萄糖醛酸结合物,以及单羟基化和二羟基化的氟他胺,以及与硫酸盐结合的羟基化的4-硝基-3-(三氟甲基)-苯胺。 。另外,检测到一种可能由氟他胺经由反应性中间体形成的羟基化氟他酰胺的巯基酸缀合物。

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