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采用在线单滴微萃取和激光诱导荧光检测的毛细管电泳法对手性氨基酸进行高灵敏分析。

Highly sensitive chiral analysis of amino acids by in-line single drop microextraction and capillary electrophoresis with laser-induced fluorescence detection.

机构信息

Department of Chemistry, Seoul National University, Seoul 151-747, Republic of Korea.

出版信息

Anal Chim Acta. 2010 Sep 10;677(1):37-42. doi: 10.1016/j.aca.2010.03.050. Epub 2010 Mar 30.

Abstract

A highly sensitive method for chiral analysis of amino acids by in-line single drop microextraction (SDME) and chiral capillary electrophoresis (CE) with laser-induced fluorescence (LIF) detection was developed. In SDME, a drop of a basic aqueous acceptor phase covered with a thin organic layer was formed at the tip of a capillary by simple combination of sample-handling sequences of a CE apparatus. Then fluorescein isothiocyanate (FITC)-derivatized amino acids in an acidic donor solution were enriched into the drop through the organic layer. The enriched enantiomers were then resolved using a dual chiral selector of β-cyclodextrin (β-CD) and sodium taurodeoxycholate (STC). Here, in addition to serving as a labeling reagent providing high fluorescence signal, hydrophobic FITC was primarily used as a modifier aiding the extraction of zwitterionic amino acids by blocking the amino groups and increasing the hydrophobicity, yielding 220 times increase in extraction efficiency. Several hundred-fold enrichments were achieved with 10 min SDME, yielding LODs of 30-60 pM and enabling direct analysis of d-AAs in a 99% enantiomeric excess mixture. In view of no additional modification of the existing commercial CE instrument, this method without stirring can be easily realized using known operations. When a microstirrer was customized to the CE instrument several thousand-fold enrichments could be obtained with LODs in the low picomolar range of 1-3 pM.

摘要

开发了一种通过在线单滴微萃取 (SDME) 和手性毛细管电泳 (CE) 与激光诱导荧光 (LIF) 检测对手性氨基酸进行高灵敏度分析的方法。在 SDME 中,通过简单组合 CE 仪器的样品处理序列,在毛细管的尖端形成一滴碱性水接受相,上面覆盖着一层薄的有机层。然后,通过有机层将酸性供体溶液中的荧光素异硫氰酸酯 (FITC) 衍生的氨基酸富集到液滴中。然后使用β-环糊精 (β-CD) 和牛磺脱氧胆酸钠 (STC) 的双重手性选择剂对富集的对映体进行分离。在这里,疏水性 FITC 除了作为提供高荧光信号的标记试剂外,主要用作修饰剂,通过封闭氨基和增加疏水性来辅助两性离子氨基酸的提取,从而使提取效率提高 220 倍。通过 10 分钟的 SDME 可实现数百倍的富集,LOD 为 30-60 pM,可直接分析 99%对映体过量混合物中的 d-AA。由于没有对现有商业 CE 仪器进行额外修改,因此这种无需搅拌的方法可以使用已知的操作轻松实现。当为 CE 仪器定制微搅拌器时,可获得数千倍的富集,LOD 达到 1-3 pM 的低皮摩尔范围。

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