首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Two-phase agarose gel-electromembrane extraction: Effect of organic solvent as an acceptor phase in electroendosmosis flow phenomenon
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Two-phase agarose gel-electromembrane extraction: Effect of organic solvent as an acceptor phase in electroendosmosis flow phenomenon

机译:两相琼脂糖凝胶 - 电磁膜萃取:有机溶剂作为电静脉流动现象中受体相的影响

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In this study, a new mode of gel electromembrane extraction (G-EME) namely as Two-phase G-EME; is suggested for the sensitive quantification of five basic drugs (desipramine, clomipramine, trimipramine, citalopram and clozapine) in biological samples. Compared to classical G-EME which is based on aqueousgel-aqueous layout, herein, the aqueous acceptor phase (AP) was replaced with organic solvent. Briefly, negative electrode was immersed into the organic AP (with low conductivity) and positive electrode into the aqueous donor phase (DP). Based on our results, this simple adjustment significantly reduced electroendosmosis (EEO) flow phenomenon which is considered as the main issue in G-EME. In the workflow, target analytes were extracted from the 7.0 mL sample, across the fabricated agarose gel membrane, to the 100 mu L of the AP under the optimized extraction conditions (organic solvent type: acetonitrile; pH of gel membrane: 5.0, pH of sample solution: 4.0, voltage: 45V and extraction time: 22 min). Then, the organic AP with analytes was analyzed by gas chromatography (GC) instrument with flame-ionization detector (FID). The methodology offered limits of detection (LODs) and recoveries in the range of 1.0-1.5 ng mL(-1) and 48.5-89.0 %, respectively. Finally, we note that two-phase G-EME assembly was able to extract analytes-of-interest in the convenient and safe manner from the hazardous and difficult-to-process biological specimens such as human serum and urine. (C) 2020 Elsevier B.V. All rights reserved.
机译:本研究提出了一种新的凝胶电膜萃取(G-EME)模式,即两相G-EME;建议用于生物样品中五种基本药物(地昔帕明、氯丙咪嗪、曲米帕明、西酞普兰和氯氮平)的灵敏定量。与经典的G-EME相比,经典的G-EME基于水溶液布局,本文用有机溶剂取代了水受体相(AP)。简单地说,将负极浸入有机AP(电导率较低)中,将正极浸入给体水相(DP)。根据我们的结果,这种简单的调整显著减少了被认为是G-EME中主要问题的电内渗(EEO)流动现象。在该工作流程中,在优化的提取条件下(有机溶剂类型:乙腈;凝胶膜pH值:5.0,样品溶液pH值:4.0,电压:45V,提取时间:22分钟),通过制造的琼脂糖凝胶膜,从7.0 mL样品中提取目标分析物至100μL AP。然后,使用带有火焰离子化检测器(FID)的气相色谱(GC)仪器对含有分析物的有机AP进行分析。该方法的检测限(LOD)和回收率分别在1.0-1.5 ng mL(-1)和48.5-89.0%之间。最后,我们注意到,两相G-EME组装能够以方便和安全的方式从危险且难以处理的生物样本(如人血清和尿液)中提取感兴趣的分析物。(C) 2020爱思唯尔B.V.版权所有。

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