首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Capillary electrophoresis with capacitively coupled contactless conductivity detection: A universal tool for the determination of supported liquid membrane selectivity in electromembrane extraction of complex samples
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Capillary electrophoresis with capacitively coupled contactless conductivity detection: A universal tool for the determination of supported liquid membrane selectivity in electromembrane extraction of complex samples

机译:电容耦合非接触电导检测的毛细管电泳:通用工具,用于测定复杂样品的电膜萃取中支持的液膜选择性

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Monitoring the selectivity of supported liquid membranes (SLMs) is of paramount importance since the amount and type of compounds that are transferred across a SLM directly influence the transfer efficiency, reproducibility and accuracy. To apply a correct SLM in particular sample pretreatment, rapid determination of the transfer of analytes and matrix compounds across the SLM is necessary, which requires the use of an analytical method with universal detection technique. Capillary electrophoresis with capacitively coupled contactless conductivity detection (CE-C~4D) has proven to be a useful tool for the determination of SLM selectivity. Background electrolyte solution consisting of 1M acetic acid (pH 2.4) was used for simultaneous separation and detection of three basic drugs (nortriptyline, haloperidol and loperamide) and major matrix components (inorganic cations, proteins, amino acids, etc.) after electromembrane extraction (EME) of standard solutions and complex samples. The CE-C~4D method has evidenced for the first time that large proteins, such as human serum albumin, are efficiently retained on all examined SLMs and that transfer of other matrix components and the analytes is strongly SLM dependent. Excellent transfer of the analytes was achieved across SLMs impregnated with 2-nitrophenyl octyl ether (NPOE) or 1-ethyl-2-nitrobenzene, however, an increased co-extraction of interfering matrix components, which disabled quantitative determination of haloperidol with the current CE-C~4D setup, was observed for the latter. After addition of a commonly used ion carrier (bis(2-ethylhexyl)phosphate) to NPOE, a wide range of matrix components were transferred across the SLM with no measurable transfer of the analytes. Best selectivity regarding transfer of the basic drugs and elimination of matrix components was obtained using SLM impregnated with NPOE. An optimized EME-CE-C~4D method was used to determine the basic drugs in various samples and satisfactory analytical parameters were obtained.
机译:监测支持的液膜(SLM)的选择性至关重要,因为跨SLM转移的化合物的数量和类型直接影响转移效率,重现性和准确性。为了在特定的样品预处理中应用正确的SLM,必须快速确定分析物和基质化合物在SLM中的转移,这需要使用具有通用检测技术的分析方法。电容电泳与非接触电导检测(CE-C〜4D)的毛细管电泳已被证明是确定SLM选择性的有用工具。用1M乙酸(pH 2.4)组成的背景电解质溶液用于在膜分离后同时分离和检测三种基本药物(去甲替林,氟哌啶醇和洛哌丁胺)和主要基质成分(无机阳离子,蛋白质,氨基酸等) EME)标准溶液和复杂样品。 CE-C〜4D方法首次证明,大蛋白(例如人血清白蛋白)可以有效保留在所有检查的SLM上,并且其他基质组分和分析物的转移强烈依赖SLM。在通过2-硝基苯基辛基醚(NPOE)或1-乙基-2-硝基苯浸渍的SLM上,分析物的转移非常出色,但是,干扰基质组分的共萃取增加了,这使得目前的CE无法定量测定氟哌啶醇对于后者,观察到-C〜4D设置。在将常用的离子载体(双(2-乙基己基)磷酸酯)添加到NPOE之后,各种各样的基质组分通过SLM转移,而分析物的转移却无法测量。使用浸渍了NPOE的SLM,可以获得关于基本药物转移和基质成分消除的最佳选择性。采用优化的EME-CE-C〜4D方法测定了各种样品中的基本药物,并获得了满意的分析参数。

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