首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Enantiomeric separation of neutral hydrophobic dihydrofuroflavones by cyclodextrin-modified micellar capillary electrophoresis.
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Enantiomeric separation of neutral hydrophobic dihydrofuroflavones by cyclodextrin-modified micellar capillary electrophoresis.

机译:通过环糊精修饰的胶束毛细管电泳对中性疏水二氢呋喃酮的对映体分离。

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摘要

The enantiomeric separations of several very hydrophobic dihydrofuroflavones were performed and optimized using cyclodextrin-modified micellar capillary electrophoresis. Overall, the greatest enantiomeric peak-to-peak separations for the greatest number of flavones were obtained with hydroxypropyl-gamma-cyclodextrin. The effects of cyclodextrin and sodium dodecyl sulfate concentration and pH were examined in order to optimize the separation conditions. The ratio of surfactant-to-cyclodextrin concentration affected the chiral discrimination of the system significantly, with increases in the derivatized cyclodextrin concentration generally enhancing resolution. Higher efficiencies were obtained with lower concentrations of surfactant and cyclodextrin, although enantioseparation optimization often required higher concentrations to be used. A highly acidic pH was necessary to effectively suppress the electroosmotic flow when operating in the reversed polarity mode. Experiments utilizing the normal polaritymode and higher pH produced no separations.
机译:使用环糊精修饰的胶束毛细管电泳进行了几种疏水性很强的二氢呋喃黄酮的对映体分离,并进行了优化。总的来说,用羟丙基-γ-环糊精获得了最大数量的黄酮的最大对映体峰峰分离。检查了环糊精和十二烷基硫酸钠浓度和pH的影响,以优化分离条件。表面活性剂与环糊精浓度的比例显着影响了系统的手性鉴别,衍生化的环糊精浓度的增加通常会提高分离度。尽管对映体分离的优化常常需要使用更高的浓度,但使用较低浓度的表面活性剂和环糊精可获得更高的效率。在反极性模式下运行时,必须使用高酸性pH值才能有效抑制电渗流。使用正常极性模式和较高pH的实验未产生分离。

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