首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Capillary electrophoresis of neurotransmitters using in-line solid-phase extraction and preconcentration using a methacrylate-based weak cation-exchange monolithic stationary phase and a pH step gradient
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Capillary electrophoresis of neurotransmitters using in-line solid-phase extraction and preconcentration using a methacrylate-based weak cation-exchange monolithic stationary phase and a pH step gradient

机译:使用在线固相萃取和预浓缩(基于甲基丙烯酸酯的弱阳离子交换整体固定相和pH阶跃梯度)对神经递质进行毛细管电泳

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A novel approach for in-line solid-phase extraction capillary electrophoresis (SPE-CE) for basic analytes was developed. The method is based on the use of a weak cation-exchange monolith synthesised in situ in the front end of the CE capillary via photoinitiated polymerization to form poly(methacrylic acid-co-ethylene glycol dimethacrylate), which was used to create the SPE phase in-line with the CE separation capillary. The monolithic SPE material exhibited a surface area of 23.1 m(2) /g and a capacity of 403 nM for dopamine. Adsorption of the analytes as protonated, cationic species onto the SPE phase was achieved using an electrolyte of 6 mM phosphate and 12 mM sodium ion, buffered at pH 7.0, which is above the pK(a) of the monolith but below the pK(a) of the analytes. Elution of the analytes from the SPE phase was achieved using an electrolyte with a pH below that of the pKa of the monolith, namely 12 mM phosphate and 12 mM sodium ion, buffered at pH 3.0. Due to the discontinuous electrolyte combination, analytes were simultaneously eluted and focused as the electrophoretically mobilised pH step boundary moved through the SPE monolith, after which the analytes were separated by conventional CZE in the remainder of the capillary. Quantitative extraction from a solution of 0.5 mu g/ml dopamine and epinephrine was achieved when flushing up to 15 column volumes of sample through the capillary. The limits of detection (SIN= 3) for dopamine and epinephrine were 3.7 and 4.3 ng/ml, and this method provided a sensitivity enhancement for dopamine of 462 times compared to CZE using hydrodynamic injection. The developed method was used to preconcentrate a test mixture of neurotransmitters comprising dopamine, epinephrine, 5-hydroxytryptamine, metanephrine and also histamine. The applicability of this approach to real life samples was demonstrated by using a urine sample from a healthy person to detect dopamine at sub-ppm levels. (c) 2007 Elsevier B.V. All rights reserved.
机译:开发了一种用于碱性分析物的在线固相萃取毛细管电泳(SPE-CE)的新方法。该方法基于通过光引发聚合在CE毛细管前端原位合成的弱阳离子交换整体材料的使用,以形成聚(甲基丙烯酸-乙二醇二甲基丙烯酸共乙酯),该聚硅氧烷用于生成SPE相与CE分离毛细管一致。整体式SPE材料的表面积为23.1 m(2)/ g,多巴胺的容量为403 nM。使用6 mM磷酸盐和12 mM钠离子的电解质在pH 7.0缓冲下实现了质子化阳离子物质在SPE相上的吸附,该电解质的pH大于整体pK(a),但低于pK(a) )的分析物。使用pH低于整体式pKa的pH的电解质(即12 mM磷酸盐和12 mM钠离子)在pH 3.0的缓冲液中洗脱,从SPE相中洗脱出分析物。由于电解质的不连续结合,当电泳固定的pH阶跃边界移动通过SPE整料时,分析物同时被洗脱和聚焦,然后通过常规CZE在毛细管的其余部分中分离出分析物。通过毛细管冲洗多达15倍柱体积的样品时,可以从0.5μg / ml多巴胺和肾上腺素的溶液中进行定量萃取。多巴胺和肾上腺素的检出限(SIN = 3)为3.7和4.3 ng / ml,与使用流体动力注射的CZE相比,该方法对多巴胺的灵敏度提高了462倍。所开发的方法用于预浓缩包含多巴胺,肾上腺素,5-羟基色胺,间肾上腺素和组胺的神经递质的测试混合物。通过使用健康人的尿液样本检测亚ppm级的多巴胺,证明了该方法对现实生活样本的适用性。 (c)2007 Elsevier B.V.保留所有权利。

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