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Microemulsion electrokinetic chromatographic analysis of some polar compounds

机译:某些极性化合物的微乳液电动色谱分析

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This study presents the optimization of a microemulsion electrokinetic chromatographic (MEEKC) electrolyte solution by using UV detection and with the method, simultaneous separations of chemically, biochemically and pharamceutically related anionic and cationic compounds. Representatives of the compound groups were fro isoflavonoids, benzodiazepines, metanephrines, diuretics and peptide hormones. The MEEKC separations under basic conditions were first optimized using a two-component isoflavonoid mixture as the sample and an electrolyte containing 10 mM tetraborate as the main buffer (pH 9.5). The stable microemulsion phase was adjusted with various amounts of octane, 1-butanol and sodium dodecyl sulfate (SDS). An only acidified electrolyte solution used in the study was made of phosphoric acid (pH 1.8) containing octane, SDS and ethyl acetate. The analyses with isoflavonoids showed that electrophoretic mobilities of the investigated compounds were highly related to the concentrations of SDS and 1-butanol with linear and parabolic correlation, respectively. However, addition of octane gave linear correlation only at low concentrations. In most cases four to six structurally related compounds and even 13 diuretics with various polar properties were separated from each other in basic microemulsion medium. The acidified MEEKC electrolyte gave good resolution for anionic metanephrines.
机译:这项研究提出了一种优化的微乳液电动色谱(MEEKC)电解质溶液,方法是使用UV检测并结合该方法,同时分离化学,生化和药物相关的阴离子和阳离子化合物。化合物组的代表是异黄酮类,苯二氮卓类,间肾上腺素,利尿剂和肽激素。首先使用两组分异黄酮混合物作为样品,并使用含有10 mM四硼酸盐作为主要缓冲液(pH 9.5)的电解质对碱性条件下的MEEKC分离进行优化。用各种量的辛烷,1-丁醇和十二烷基硫酸钠(SDS)调节稳定的微乳液相。研究中使用的唯一一种酸化的电解质溶液是由含有辛烷,SDS和乙酸乙酯的磷酸(pH 1.8)制成的。用异黄酮类化合物进行的分析表明,所研究化合物的电泳迁移率与SDS和1-丁醇的浓度分别与线性和抛物线相关性高度相关。然而,添加辛烷仅在低浓度下才具有线性相关性。在大多数情况下,在基本的微乳化介质中会分离出4至6种与结构相关的化合物,甚至13种具有不同极性的利尿剂。酸化的MEEKC电解质可很好地分离阴离子间肾上腺素。

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