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基于微芯片胶束电动色谱中瞬态捕集的在线样品预富集与分离技术。

On-line sample preconcentration and separation technique based on transient trapping in microchip micellar electrokinetic chromatography.

作者信息

Sueyoshi Kenji, Kitagawa Fumihiko, Otsuka Koji

机构信息

Department of Material Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto, Japan.

出版信息

Anal Chem. 2008 Feb 15;80(4):1255-62. doi: 10.1021/ac702049r. Epub 2008 Jan 18.

Abstract

This paper describes a novel on-line sample preconcentration and separation technique named transient trapping (tr-trapping), which improves the efficiencies of separation and concentration by using a partially injected short micellar plug in microchip electrophoresis. Although a longer separation length often provides a better resolution of complexed or closely migrating analytes, our proposed theoretical model indicated that a trap-and-release mechanism enables a short micellar zone, which was partially injected into the separation channel, to work as an effective concentration and separation field. Application of the tr-trapping technique to microchip micellar electrokinetic chromatography (MCMEKC) was performed on a newly fabricated 5-way-cross microchip by using sodium dodecyl sulfate and rhodamine dyes as test micelle and analytes, respectively. When the injection times of micelle (t(inj),M) and sample solution (t(inj),S) were 1.0 and 2.0 s, respectively, both the preconcentration and separation of the dyes were completely finished within only 3.0 s. At t(inj),S of 8.0 s, a 393-fold improvement of the detectability was achieved in comparison with conventional MCMEKC. The resolution obtained with tr-trapping-MCMEKC was also better than that with conventional MCMEKC in spite of the 160-fold shorter length of the injected micellar zone at t(inj),M of 1.0 s. These results clearly demonstrated that the tr-trapping technique in MCMEKC provides a rapid, high-resolution and detectability analysis even in the short separation channel on the microchips.

摘要

本文描述了一种名为瞬态捕获(tr-捕获)的新型在线样品预浓缩和分离技术,该技术通过在微芯片电泳中使用部分进样的短胶束塞来提高分离和浓缩效率。尽管较长的分离长度通常能更好地分离复合或迁移相近的分析物,但我们提出的理论模型表明,捕获-释放机制能使部分进样到分离通道中的短胶束区起到有效的浓缩和分离作用。将tr-捕获技术应用于微芯片胶束电动色谱(MCMEKC),是在新制作的五路交叉微芯片上进行的,分别使用十二烷基硫酸钠和罗丹明染料作为测试胶束和分析物。当胶束(t(inj),M)和样品溶液(t(inj),S)的进样时间分别为1.0和2.0 s时,染料的预浓缩和分离在仅3.0 s内就完全完成。当t(inj),S为8.0 s时,与传统MCMEKC相比,检测能力提高了393倍。尽管在t(inj),M为1.0 s时进样胶束区的长度缩短了160倍,但tr-捕获-MCMEKC获得的分离度仍优于传统MCMEKC。这些结果清楚地表明,MCMEKC中的tr-捕获技术即使在微芯片上的短分离通道中也能提供快速、高分辨率和高检测能力的分析。

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