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Improved CZE capabilities with new dynamic coatings

机译:新型动态涂料改善了CZE功能

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Electroosmotic flow (EOF) is one of the fundamental processes affecting both resolution and separation times in capillary zone electrophoresis (CZE). EOF is a function of pH and buffer composition (zeta potential) in bare-silica capillaries at any pH above 3 and runs in the cathodal direction, decreasing the effective separation length for cationic species. On the other hand, the absence of EOF at low pH can significantly increase separation times, particularly for low pl zwitterionic species. This interdependence of pH and EOF limits the ability to design effective separations by capillary zone electrophoresis. The EOTrol™ family of dynamic coatings (Target Discovery, Inc., Palo Alto, CA, U.S.A.) allows both the magnitude and direction of EOF to be adjusted independently of the buffer composition and pH. Here we report the use of EOTrol in two challenging CZE separations: 1) inorganic cations with small mobility differences, and 2) the rapid separation of organic zwitterions that are only resolvable at low pH.
机译:电渗流(EOF)是影响毛细管区带电泳(CZE)的分离度和分离时间的基本过程之一。 EOF是裸露的毛细管中pH和缓冲液成分(ζ电位)的函数,在任何高于3的pH值下,EOF都沿阴极方向运行,从而减小了阳离子物质的有效分离长度。另一方面,在低pH下不存在EOF会显着增加分离时间,尤其是对于低pl两性离子物质而言。 pH和EOF的这种相互依赖性限制了通过毛细管区带电泳设计有效分离的能力。 EOTrol™系列动态涂料(美国加利福尼亚州帕洛阿尔托的Target Discovery公司)可以独立于缓冲液成分和pH值来调节EOF的大小和方向。在这里,我们报告了EOTrol在两个具有挑战性的CZE分离中的使用:1)迁移率差异小的无机阳离子,和2)快速分离仅在低pH下可分辨的有机两性离子。

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