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采用 EC-UHPLC/ESI-MS 结合实验设计方法对选定心血管药物的电化学和体内生成的潜在代谢物进行结构表征。

Structural characterization of electrochemically and in vivo generated potential metabolites of selected cardiovascular drugs by EC-UHPLC/ESI-MS using an experimental design approach.

机构信息

Department of Environmental Chemistry and Bioanalytics, Faculty of Chemistry, Nicolaus Copernicus University, Gagarin 7, 87-100 Torun, Poland; Centre for Modern Interdisciplinary Technologies, Nicolaus Copernicus University, Wilenska 4, 87-100 Torun, Poland.

Department of Inorganic, Analytical Chemistry and Electrochemistry, Silesian University of Technology, 7 M. Strzody Str., 44-100 Gliwice, Poland.

出版信息

Talanta. 2018 Jan 1;176:262-276. doi: 10.1016/j.talanta.2017.08.041. Epub 2017 Aug 15.

Abstract

In the last few years, a number of studies were conducted which aimed at understanding the mechanisms of cardiovascular drug, metabolism, and there is still the need to determine the metabolites of cardiac drugs for the purpose of metabolism control. In this study, we employ a direct combination of electrochemical oxidation and mass spectrometric (EC-MS) identification for monitoring the oxidation pathway of ten cardiovascular drugs (metoprolol, propranolol, propafenone, mexiletine, oxprenolol, pirbuterol, pindolol, cicloprolol, acebutolol and atenolol). Oxidation was accomplished in an electrochemical thin-layer cell coupled on-line to electrospray ionization mass spectrometry (EC/ESI-MS). For further characterization of electrochemical products, the approach involving liquid chromatography linked to tandem mass spectrometry was used. Appropriate conditions for oxidation and identification processes with such parameters as the potential value, mobile phase (type and pH) and working electrode were optimized. Optimization was performed with the use of central composite design (CCD). Besides electrochemical oxidation of analytes (phase I of metabolic transformation), addition of glutathione (GSH) for follow-up reactions (phase II conjunction) was also investigated. The electrochemical results were compared to in-vivo experiments by analyzing plasma and urine samples from patients who had been administered selected cardiovascular drugs. These results show that electrochemistry coupled to mass spectrometry turned out to be an analytical tool suitable to procure a feasible analytical base for the envisioned in vivo experiments.

摘要

在过去的几年中,进行了许多研究,旨在了解心血管药物的代谢机制,仍有必要确定心脏药物的代谢物,以进行代谢控制。在这项研究中,我们采用电化学氧化和质谱(EC-MS)直接组合的方法来监测十种心血管药物(美托洛尔、普萘洛尔、普罗帕酮、米索前列醇、氧烯洛尔、比索洛尔、吲哚洛尔、环丙洛尔、醋丁洛尔和阿替洛尔)的氧化途径。氧化在电化学薄层池(直接与电喷雾电离质谱(EC/ESI-MS)在线耦合)中进行。为了进一步表征电化学产物,使用了液相色谱与串联质谱联用的方法。通过使用中心组合设计(CCD)优化了氧化和鉴定过程的适当条件,包括电位值、流动相(类型和 pH 值)和工作电极等参数。除了对分析物进行电化学氧化(代谢转化的第一阶段)之外,还研究了添加谷胱甘肽(GSH)进行后续反应(第二阶段结合)。将电化学结果与对接受选定心血管药物治疗的患者的血浆和尿液样本进行的体内实验进行了比较。这些结果表明,电化学与质谱相结合是一种分析工具,可提供可行的分析基础,用于预期的体内实验。

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