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通过电喷雾电离质谱实时监测药物代谢的片上电膜萃取。

On-chip electromembrane extraction for monitoring drug metabolism in real time by electrospray ionization mass spectrometry.

机构信息

School of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, DK-2100 Copenhagen, Denmark.

出版信息

Analyst. 2012 Jul 21;137(14):3321-7. doi: 10.1039/c2an35264h. Epub 2012 Jun 8.

Abstract

A temperature controlled (37 °C) metabolic reaction chamber with a volume of 1 mL was coupled directly to electrospray ionization mass spectrometry (ESI-MS) by the use of a 50 μm deep counter flow micro-chip electromembrane extraction (EME) system. The EME/ESI-MS system was used to study the in vitro metabolism of amitriptyline in real time. There was no need to stop the metabolisms by protein precipitation as in conventional metabolic studies, since the EME selectively extracted the drug and metabolites from the reaction solution comprised of rat liver microsomes in buffer. Compositional changes in the reaction chamber were continuously detected 9 seconds later in the MS. Most of this time delay was due to transport of the purified extract towards the ESI source. The EME step effectively removed the enzymatic material, buffer and salts from the reaction mixture, and prevented these species from being introduced into the ESI-MS system. The on-chip EME/ESI-MS system provided repeatability for the amitriptyline signal intensity within 3.1% relative standard deviation (RSD) (n = 6), gave a linear response for amitriptyline in the tested concentration range of 0.25 to 15 μM, and was found not to be prone to ion-suppression from major metabolites introduced simultaneously into the EME/ESI-MS system. The setup allowed the study of fast reactions kinetics. The half-life, t(1/2), for the metabolism of 10 μM amitriptyline was 1.4 minutes with a 12.6% RSD (n = 6).

摘要

一个温度控制(37°C)的代谢反应室,体积为 1 毫升,通过使用 50 µm 深的逆流微流控电膜萃取(EME)系统,直接与电喷雾电离质谱(ESI-MS)相连。EME/ESI-MS 系统用于实时研究阿米替林的体外代谢。由于 EME 选择性地从缓冲液中的大鼠肝微粒体组成的反应溶液中提取药物和代谢物,因此无需像传统代谢研究那样通过蛋白质沉淀停止代谢。9 秒后,MS 中连续检测到反应室中组成的变化。大部分延迟时间是由于将纯化的提取物输送到 ESI 源。EME 步骤有效地从反应混合物中去除了酶材料、缓冲液和盐,并防止这些物质被引入 ESI-MS 系统。芯片上的 EME/ESI-MS 系统为阿米替林信号强度提供了 3.1%相对标准偏差(RSD)(n = 6)内的重复性,在测试浓度范围为 0.25 至 15 μM 内对阿米替林具有线性响应,并且不易受到同时引入 EME/ESI-MS 系统的主要代谢物的离子抑制。该设置允许研究快速反应动力学。在 10 μM 阿米替林的代谢半衰期 t(1/2)为 1.4 分钟,RSD 为 12.6%(n = 6)。

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