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Suppression of Apparent Fluid Flow in Capillary Isotachophoresis without Recourse to Capillary Coating

机译:无需毛细管涂层即可抑制毛细管等速电泳中的表观流体流量

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This manuscript describes a new analytical methodology that allows one to stop the apparent fluid flow in uncoated fused silica capillaries. This method, which requires neither capillary coating nor buffer additive, is based on the use of a 22% polyethylene oxide gel which is placed at the anodic end of the capillary. Its high viscosity precludes its penetration into the capillary and the apparent electro-osmotic pumping effect is stopped. To avoid sample depletion in the gel, the concentration of the background electrolyte in the gel has to be at least 10-fold higher than that of the background electrolyte. This method was applied to isotachophoretic experiments performed in unmodified silica capillaries and at high alkaline pHs. The sharpness of the zone boundaries was perfectly conserved. The separation voltages recorded during the isotachophoretic processes demonstrate a very good stability of the system preventing fluctuations of the analyte migration times between runs. This approach can be virtually applied at any pH value of the background electrolyte, in the presence of organic solvents or surfactants. Using this methodology, it has been possible to detect underivatized Amyloid-β peptide 1-40, one of the potential Alzheimer's disease biomarkers, at lower concentrations than ever previously achieved using UV detection.
机译:该手稿描述了一种新的分析方法,该方法可以阻止未涂覆的熔融石英毛细管中的表观流体流动。该方法不需要毛细管涂层也不需要缓冲添加剂,是基于使用放置在毛细管阳极端的22%聚环氧乙烷凝胶。它的高粘度阻止了它渗透到毛细管中,并且明显的电渗泵浦作用停止了。为了避免样品在凝胶中耗尽,凝胶中本底电解质的浓度必须比本底电解质的浓度高至少10倍。该方法用于在未改性的硅胶毛细管中和高碱性pH下进行的等速电泳实验。区域边界的清晰度完全得到保留。在等速电泳过程中记录的分离电压证明了系统非常好的稳定性,可防止运行之间分析物迁移时间的波动。在有机溶剂或表面活性剂存在的情况下,该方法实际上可应用于背景电解质的任何pH值。使用这种方法,有可能以比以前使用紫外线检测更低的浓度检测未衍生的淀粉样β-肽1-40(一种潜在的阿尔茨海默氏病生物标记物)。

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