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离子液体改性微乳液的微观结构及其在微乳液电动色谱中的应用,以及七种皮质甾类化合物的分析。

Microstructure of microemulsion modified with ionic liquids in microemulsion electrokinetic chromatography and analysis of seven corticosteroids.

机构信息

School of Chemical and Material Engineering, Jiangnan University, Wuxi, P. R. China.

出版信息

Electrophoresis. 2013 Sep;34(17):2568-76. doi: 10.1002/elps.201300168.

Abstract

In this work, the influences of ionic liquid (IL) as a modifier on microemulsion microstructure and separation performance in MEEKC were investigated. Experimental results showed that synergetic effect between IL 1-butyl-3-methylimidazolium tetrafluoro-borate (BmimBF4 ) and surfactant SDS gave a decreased CMC. With increment of IL in microemulsion, negative ζ potential of the microdroplets reduced gradually. The influence of IL on the dimensions of microdroplet was complicated. At BmimBF4 less than 8 mM, IL made microemulsion droplet smaller in size. While at BmimBF4 more than 10 mM, the size increased and reached to a maximum value at 12 mM, where the microdroplets were larger than that without IL. After that, the micreodroplet size decreased again. Relative fluorescence intensity of the first vibration band of pyrene to the third one (I1 /I3 ) enhanced as IL was added to microemulsion, which indicated that this addition increased environmental polarity in the inner core of microdroplets. Prednisone, hydrocortisone, prednisolone, hydrocortisone acetate, cortisone acetate, prednisolone acetate, and triamcinolone acetonide were analyzed with MEEKC modified with IL to evaluate the separation performance. Cortisone acetate and prednisolone acetate could not be separated at all in typical microemulsion. The seven analytes could be separated by the addition of 10 mM BmimBF4 into the microemulsion system. The method has been used for analysis of corticosteroids in cosmetic samples with simple extraction; the recoveries for seven analytes were between 86 and 114%. This method provides accuracy, reproducibility, pretreatment simplicity, and could be applied to the quality control of cosmetics.

摘要

在这项工作中,研究了离子液体(IL)作为修饰剂对微乳液的微结构和 MEEKC 分离性能的影响。实验结果表明,IL 1-丁基-3-甲基咪唑四氟硼酸盐(BmimBF4)和表面活性剂 SDS 之间的协同效应降低了 CMC。随着 IL 在微乳液中浓度的增加,微液滴的负 ζ 电位逐渐降低。IL 对微液滴尺寸的影响较为复杂。在 BmimBF4 低于 8mM 时,IL 使微乳液液滴变小。而在 BmimBF4 高于 10mM 时,尺寸增加,并在 12mM 时达到最大值,此时液滴大于无 IL 时的液滴。之后,液滴尺寸再次减小。芘的第一振动带与第三振动带的相对荧光强度(I1 / I3)随着 IL 的加入而增强,这表明这种加入增加了微液滴内核的环境极性。用添加 IL 的 MEEKC 分析泼尼松、氢化可的松、强的松龙、氢化可的松醋酸酯、醋酸考的松、醋酸泼尼松龙和曲安奈德,以评估分离性能。在典型的微乳液中,醋酸考的松和醋酸泼尼松龙完全无法分离。通过在微乳液体系中加入 10mM 的 BmimBF4,可以分离出这七种分析物。该方法已用于化妆品样品中皮质激素的分析,具有简单的提取;七种分析物的回收率在 86%至 114%之间。该方法具有准确性、重现性、预处理简单性,可应用于化妆品的质量控制。

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