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首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Electromigration peak dispersion of isotachophoretic protein zones during capillary zone electrophoresis
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Electromigration peak dispersion of isotachophoretic protein zones during capillary zone electrophoresis

机译:毛细管电泳中等速电泳蛋白区的电迁移峰分散

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摘要

The relationships between electromigration dispersion (EMD) and on-line isotachophoresis-capillary zone electrophoresis (ITP-CZE) are described for several basic model proteins and interleukin-6 (rhIL-6). During CZE separation of the highly concentrated analyte zones which were generated during the initial ITP step EMD evolves from intrinsic differences in conductivity between the focused ITP zones and the leading electrolyte. Nearly triangular peaks with a sharp front and diffuse rear side were observed. An electromigration dispersion factor (F_(EMD)) was introduced to measure peak asymmetry. EMD of individual peaks was shown to increase with the absolute amount of the respective analyte injected and with analyte mobility. Good linearity was observed when F_(EMD) was plotted against protein mobility (r>0.95). The slope of the graphs describing this relationship increased with the amount of analyte injected. The influence of EMD on the separation efficiency of neighboring peaks appeared to be less pronounced than expected. Consecutive release from the ITP-stack during transition from ITP to CZE might be an explanation for this observation.
机译:描述了几种基本模型蛋白和白介素6(rhIL-6)的电迁移分散体(EMD)与等速电泳-毛细管区带电泳(ITP-CZE)之间的关系。在CZE分离过程中,在初始ITP步骤期间生成的高浓度分析物区域,EMD是从聚焦的ITP区域和主要电解质之间的电导率的固有差异演变而来的。观察到接近三角形的峰,具有尖锐的前侧和扩散的后侧。引入电迁移弥散因子(F_(EMD))以测量峰不对称性。各个峰的EMD随所注入的各个分析物的绝对量和分析物迁移率而增加。当绘制F_(EMD)对蛋白质迁移率时,观察到良好的线性(r> 0.95)。描述这种关系的曲线图的斜率随注入的分析物数量而增加。 EMD对相邻峰分离效率的影响似乎没有预期的那么明显。从ITP过渡到CZE期间从ITP堆栈连续释放可能是对此现象的解释。

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