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Isotachophoresis having interacting anionic and cationic shock waves

机译:具有相互作用的阴离子和阳离子冲击波的等速电泳

摘要

Improved electrophoretic analysis is provided by interaction of anionic and cationic isotachophoresis (ITP) shock waves that propagate toward each other, and analysis of the resulting interaction zones. These shock wave interactions can provide qualitatively different capabilities from conventional ITP methods. Shock wave interaction can enable a single assay to identify analyte and quantify its concentration via isotachophoretic focusing followed by separation of the concentrated analytes via electrophoresis, without any mid-assay alteration of the externally imposed experimental conditions (i.e., no switching, valve operation, etc. during the measurement). As another example, shock wave interaction can enable a single assay to provide coupled ITP processes with different electrolyte concentrations (as in cascade-ITP) in a single simple system (again, without any mid-assay alteration of the externally imposed experimental conditions).
机译:通过相互传播的阴离子和阳离子等速电泳(ITP)冲击波的相互作用以及对所得相互作用区域的分析,可以提供改进的电泳分析。这些冲击波相互作用可以提供与传统ITP方法本质上不同的功能。冲击波相互作用可以使单个测定法通过等速电泳聚焦,然后通过电泳分离浓缩的分析物,从而鉴定分析物并定量其浓度,而无需对外部施加的实验条件进行任何测定中改变(即,无需切换,阀门操作等)在测量过程中。作为另一个示例,冲击波相互作用可以使单个测定能够在单个简单系统中提供具有不同电解质浓度的耦合ITP过程(如级联ITP)(同样,无需对外部施加的实验条件进行任何中间测定改变)。

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