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Capillary coating as an important factor in optimization of the off-line and on-line MEKC assays of the highly hydrophobic enzyme chlorophyllase

机译:毛细管涂层是优化高疏水性酶叶绿素酶的离线和在线MEKC测定的重要因素

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摘要

The choice between bare and coated capillaries is a key decision in the development and use of any methods based on capillary electrophoresis. In this work several permanently and dynamically coated capillaries were successfully implemented in a previously developed micellar electrokinetic chromatography (MEKC) assay of the plant membrane enzyme chlorophyllase. The results obtained demonstrate the rationale behind the use of capillary coating, which is crucial for successful optimization of both the off-line mode and the on-line/electrophoretically mediated microanalysis assay mode. The application of an amine permanently coated capillary (eCAP) is a simple way to significantly increase the repeatability of migration times and peak areas, and to ensure a strong electroosmotic flow that considerably decreases the overall analysis time. A dynamic coating (CEofix) allows one to apply an on-line incubation to control the reaction progress inside the capillary, and to increase the signal-to-noise ratio and peak efficiency. The dynamic coating is possible with use of both the normally applied uncoated silica capillary and the precoated amine capillary, which ensures more repeatable migration times. The strong points of the uncoated silica capillary are its attractive price and wide range of pH that can be applied. The characteristics presented may simplify the choice of capillary modification, especially in the case of hydrophobic analytes, MEKC-based separations, and other enzymatic assays.Electronic supplementary materialThe online version of this article (doi:10.1007/s00216-016-0097-5) contains supplementary material, which is available to authorized users.
机译:在裸毛细管和涂层毛细管之间的选择是开发和使用任何基于毛细管电泳的方法的关键决定。在这项工作中,在以前开发的植物膜酶叶绿素酶的胶束电动色谱(MEKC)分析中成功地实现了几个永久性和动态包被的毛细管。获得的结果证明了使用毛细管涂层的基本原理,这对于成功优化离线模式和在线/电泳介导的微量分析测定模式都至关重要。胺类永久涂层毛细管(eCAP)的应用是一种显着提高迁移时间和峰面积的可重复性,并确保强电渗流的方法,该方法可大大减少总体分析时间。动态涂层(CEofix)允许在线进行孵育,以控制毛细管内的反应进程,并提高信噪比和峰效率。通过同时使用通常未涂覆的硅胶毛细管和预涂覆的胺毛细管,可以进行动态涂覆,从而确保了更长的可重复迁移时间。未涂覆的硅胶毛细管的优点是其价格诱人,可应用的pH范围宽。呈现的特征可以简化毛细管修饰的选择,尤其是在疏水性分析物,基于MEKC的分离和其他酶促测定的情况下。电子补充材料本文的在线版本(doi:10.1007 / s00216-016-0097-5)包含补充材料,授权用户可以使用。

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