Institute of Analytical Chemistry of the Academy of Sciences of the Czech Republic, Brno, Czech Republic.
Electrophoresis. 2013 Mar;34(5):777-84. doi: 10.1002/elps.201200533. Epub 2013 Feb 5.
In this contribution we present an innovative way to easy, fast, and highly sensitive analyses by CE with ESI-MS detection. The new method is designed to be applied to ESI-compatible electrolytes (e.g. ammonium acetate) and offers advanced tuning of selectivity conditions within a wide range of analyte mobilities. We use a full capillary ITP format to provide powerful on-line analyte stacking at the ITP boundary all the way to detection and introduce the model of extended ITP where a controlled concentration of the leading ion is added to the terminating zone. Such systems preserve all properties of an ITP system and the velocity of the stacking ITP boundary can be tuned by the composition of both the leading and terminating zone. In this way, the system properties can be controlled flexibly and the mobility window of stacked analytes can be tailored to actual needs. The presented theory and the newly defined concept of zone-related boundary mobility allow easy assessment of system selectivity using simple diagrams. We demonstrate the model and its potential on the example of simple acidic cationic systems composed of only two substances (ammonium and acetate) including the example of thiabendazole analysis with a detection limit of 10(-10) M (20 ng/L) and its determination in orange juice by direct sampling after filtration, selective stacking by a tuned extended ITP system, and ESI-MS detection.
在本研究中,我们提出了一种创新的方法,通过 CE 与 ESI-MS 检测实现简单、快速和高灵敏度的分析。该新方法旨在应用于 ESI 兼容的电解质(例如乙酸铵),并在广泛的分析物迁移率范围内提供选择性条件的高级调谐。我们使用全毛细管 ITP 格式,在 ITP 边界处提供强大的在线分析物浓缩,直至检测,并引入扩展 ITP 模型,其中在终止区添加控制浓度的先导离子。这样的系统保留了 ITP 系统的所有特性,并且浓缩 ITP 边界的速度可以通过先导区和终止区的组成来调节。通过这种方式,可以灵活控制系统特性,并根据实际需要调整浓缩分析物的迁移窗口。所提出的理论和新定义的区域相关边界迁移率概念允许使用简单的图表轻松评估系统的选择性。我们以仅由两种物质(铵和乙酸盐)组成的简单酸性阳离子体系为例,演示了该模型及其潜力,包括噻菌灵分析的实例,检测限为 10(-10) M(20 ng/L),以及在过滤后直接采样、经调谐扩展 ITP 系统选择性浓缩和 ESI-MS 检测后,在橙汁中的测定。