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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Enantiomeric resolution study by capillary electrophoresis Selection of the appropriate chiral selector
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Enantiomeric resolution study by capillary electrophoresis Selection of the appropriate chiral selector

机译:通过毛细管电泳对映体拆分研究选择合适的手性选择剂

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The enantiomeric separation of several arylpropionic acids, namely carprofen, cicloprofen, flurbiprofen, ibuprofen, indoprofen, ketoprofen, naproxen and suprofen has been studied by capillary zone electrophoresis using different chiral selectors addedto the background electrolyte with the aim to find the optimum experimental conditions for both qualitative and quantitative purposes. The chiral selectors used included two β-cyclodextrin derivatives and a glycosidic antibiotic, namely 2,3,6-tri-O-methyl-β-CD, heptamethylamino-p-CD and vancomycin. When the CDs were used the chiral selector was present in both capillary and electrode compartments while for vancomycin the partial filling method was used (the chiral selector was not present at the detector window in order to improve the sensitivity; vancomycin is strongly absorbing at low wavelengths). Enantiomeric resolution was recorded for all the compounds studied except for ibuprofen when heptamethylamino-β-CD was used; resolution generally increased by increasing the chiral selector concentration. Good sensitivity and'good precision for both migration times and corrected peak areas (A_(sample)/migration time) were achieved using the three chiral selectors. Among the three chiral additives employed vancomycin proved to be the most effective for the enantiomeric separation of the studied arylpropionic acids. The optimized method achieved analysis with the shortest time (<6 min), and the highest efficiency (270 000 plates X meters).
机译:通过毛细管区带电泳研究了几种芳基丙酸的对映异构体分离,即卡洛芬,环氯芬,氟比洛芬,布洛芬,吲哚洛芬,酮洛芬,萘普生和Suprofen定性和定量的目的。所用的手性选择剂包括两种β-环糊精衍生物和一种糖苷类抗生素,即2,3,6-三-O-甲基-β-CD,七甲基氨基-p-CD和万古霉素。当使用CD时,毛细管和电极室中都存在手性选择剂,而万古霉素则使用部分填充方法(为了提高灵敏度,手感选择器不出现在检测器窗口中;万古霉素在低波长下会强烈吸收)。当使用七甲基氨基-β-CD时,除布洛芬外,记录了所有研究化合物的对映体拆分。通常通过增加手性选择剂的浓度来提高分离度。使用三个手性选择器,对于迁移时间和校正的峰面积(A_(样品)/迁移时间)都具有良好的灵敏度和良好的精度。在所用的三种手性添加剂中,万古霉素被证明对所研究的芳基丙酸的对映体分离最有效。优化的方法以最短的时间(<6分钟)和最高的效率(270 000板X米)实现了分析。

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