Krivánková L, Bocek P
Institute of Analytical Chemistry, Academy of Sciences of the Czech Republic, Brno, Czech Republic.
J Chromatogr B Biomed Sci Appl. 1997 Feb 7;689(1):13-34.
The combination of capillary isotachophoresis and capillary zone electrophoresis may enhance greatly the performance of analytical capillary electrophoresis with respect to both separation power and the concentration sensitivity. The concentrating effects and the separation power of isotachophoresis allow the analysis of diluted samples and the elimination of interferences due to bulk components. The separation process of zone electrophoresis enables one to resolve the stack of trace analytes and detect the resulting individual zones with high sensitivity. The transition of isotachophoresis into zone electrophoresis plays the key role in the overall performance of this hyphenated technique. This article describes the dynamics of the conversion of isotachophoresis into zone electrophoretic mode and shows that the key role is played by the segments of the leading and terminating zones from the isotachophoretic stage. The magnitude of these segments directly effects the detection time as well as the separation width of the peaks of analytes. It is shown that these effects are also important in the analyses by capillary zone electrophoresis where isotachophoresis is induced by the sample itself. Finally, the paper presents a list of recommended, user-friendly, electrolyte systems which enable one to simply predict the performance of the combination isotachophoresis-zone electrophoresis.
毛细管等速电泳和毛细管区带电泳相结合,在分离能力和浓度灵敏度方面,可极大地提升分析毛细管电泳的性能。等速电泳的浓缩效应和分离能力使得稀释样品得以分析,并消除了大量组分带来的干扰。区带电泳的分离过程能够解析微量分析物的叠加,并以高灵敏度检测所得的各个区带。等速电泳向区带电泳的转变在这种联用技术的整体性能中起着关键作用。本文描述了等速电泳转变为区带电泳模式的动力学过程,并表明关键作用由等速电泳阶段的前导区和终止区片段发挥。这些片段的大小直接影响检测时间以及分析物峰的分离宽度。结果表明,这些效应在样品自身引发等速电泳的毛细管区带电泳分析中也很重要。最后,本文列出了一系列推荐的、用户友好型的电解质体系,这些体系能让人们简单地预测等速电泳 - 区带电泳联用的性能。