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通过在线进样阀与毛细管电泳联用的色谱预浓缩法。

Chromatographic preconcentration coupled to capillary electrophoresis via an in-line injection valve.

作者信息

Tempels F W Alexander, Underberg Willy J M, Somsen Govert W, de Jong Gerhardus J

机构信息

Department of Biomedical Analysis, Faculty of Pharmaceutical Sciences, Utrecht University, Sorbonnelaan 16, NL-3584 CA Utrecht, The Netherlands.

出版信息

Anal Chem. 2004 Aug 1;76(15):4432-6. doi: 10.1021/ac0499221.

Abstract

A preconcentration-capillary electrophoresis (CE) system using a small precolumn in combination with an in-line injection valve is presented. The advantage of the present design is the ability to perform the sample preconcentration fully independently from the CE separation and to prevent sample matrix and washing solvents from entering the CE capillary. With a micro injection valve, sample could be effectively introduced into the CE system in an in-line fashion without seriously affecting the CE separation efficiency. Breakthrough volume, desorption efficiency, and elution volume for the C18 microcolumn (5 x 0.5 mm i.d.) were established, yielding values of 750 microL, 70%, and 0.9-1.1 microL, respectively, using enkephalin peptides. The time between the start of the desorption of the analytes from the precolumn and the injection into the CE system was also studied in order to achieve optimal sensitivity and separation efficiency. The performance of the complete system was demonstrated by the preconcentration and separation of an enkephalin mixture. Using a sample volume of 250 microL and a CE injection voltage of -15 kV for 12 s, linearity was observed over 2 orders of magnitude, and detection limits (S/N = 3) were in the 5-10 ng/mL range. A 1000-fold sensitivity enhancement is obtained using this setup, as compared to a regular CE setup. For 100 ng/mL samples, repeatabilities (RSDs) of migration time and peak area were 1.2 and 11%, respectively.

摘要

本文介绍了一种采用小型预柱与在线进样阀相结合的预浓缩-毛细管电泳(CE)系统。本设计的优点是能够完全独立于CE分离进行样品预浓缩,并防止样品基质和洗涤溶剂进入CE毛细管。使用微型进样阀,可以以在线方式将样品有效地引入CE系统,而不会严重影响CE分离效率。使用脑啡肽肽确定了C18微柱(内径5×0.5 mm)的穿透体积、解吸效率和洗脱体积,其值分别为750 μL、70%和0.9 - 1.1 μL。还研究了分析物从预柱解吸开始到注入CE系统之间的时间,以实现最佳灵敏度和分离效率。通过对脑啡肽混合物的预浓缩和分离证明了整个系统的性能。使用250 μL的样品体积和-15 kV的CE进样电压12 s,在2个数量级上观察到线性,检测限(S/N = 3)在5 - 10 ng/mL范围内。与常规CE设置相比,使用此设置可获得1000倍的灵敏度增强。对于100 ng/mL的样品,迁移时间和峰面积的重复性(RSD)分别为1.2%和11%。

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