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采用电渗流泵的大体积样品堆积技术的毛细管电泳中高灵敏度手性分析。

Highly sensitive chiral analysis in capillary electrophoresis with large-volume sample stacking with an electroosmotic flow pump.

机构信息

Department of Material Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.

出版信息

J Chromatogr A. 2012 Jul 13;1246:28-34. doi: 10.1016/j.chroma.2012.02.001. Epub 2012 Feb 8.

DOI:10.1016/j.chroma.2012.02.001
PMID:22386259
Abstract

To improve the sensitivity in chiral analysis by capillary electrophoresis without loss of optical resolution, application of large-volume sample stacking with an electroosmotic flow pump (LVSEP) was investigated. Effects of the addition of cyclodextrin (CD) into a running solution on the LVSEP preconcentration was theoretically studied, where the preconcentration efficiency and effective separation length would be slightly increased if the effective electrophoretic velocity (v(ep,eff,BGS)) of the analytes was decreased by interacting with CD. In LVSEP-CD-modified capillary zone electrophoresis (CDCZE) and LVSEP-CD electrokinetic chromatography with reduced v(ep,eff,BGS), up to 1000-fold sensitivity increases were achieved with almost no loss of resolution. In LVSEP-CD-modified micellar electrokinetic chromatography of amino acids with increased v(ep,eff,BGS), a 1300-fold sensitivity increase was achieved without much loss of resolution, indicating the versatile applicability of LVSEP to many separation modes. An enantio-excess (EE) assay was also carried out in LVSEP-CDCZE, resulting in successful analyses of up to 99.6% EE. Finally, we analyzed ibuprofen in urine by desalting with a C₁₈ solid-phase extraction column. As a typical result, 250ppb ibuprofen was well concentrated and optically resolved with 84.0-86.6% recovery in LVSEP-CDCZE, indicating the applicability of LVSEP to real samples containing a large amount of unnecessary background salts.

摘要

为了在不损失光学分辨率的情况下提高手性分析的灵敏度,研究了应用电渗流泵(LVSEP)进行大体积样品堆积的方法。从理论上研究了在运行溶液中添加环糊精(CD)对 LVSEP 预浓缩的影响,如果分析物的有效电泳速度(v(ep,eff,BGS))通过与 CD 相互作用而降低,则预浓缩效率和有效分离长度将略有增加。在 LVSEP-CD 修饰的毛细管区带电泳(CDCZE)和 LVSEP-CD 电动色谱中,当 v(ep,eff,BGS)降低时,可获得高达 1000 倍的灵敏度提高,几乎没有分辨率损失。在 LVSEP-CD 修饰的增加 v(ep,eff,BGS)的氨基酸胶束电动色谱中,可获得 1300 倍的灵敏度提高,而分辨率损失不大,表明 LVSEP 可广泛应用于许多分离模式。还在 LVSEP-CDCZE 中进行了对映体过量(EE)测定,成功地分析了高达 99.6%的 EE。最后,我们通过 C₁₈固相萃取柱对尿液中的布洛芬进行了脱盐处理。作为一个典型的结果,250ppb 的布洛芬在 LVSEP-CDCZE 中得到了很好的浓缩和光学分离,回收率为 84.0-86.6%,表明 LVSEP 适用于含有大量不必要背景盐的实际样品。

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