Klampfl Christian W, Leitner Tanja, Hilder Emily F
Department of Analytical Chemistry, Johannes Kepler-University Linz, Linz, Austria.
Electrophoresis. 2002 Aug;23(15):2424-9. doi: 10.1002/1522-2683(200208)23:15<2424::AID-ELPS2424>3.0.CO;2-U.
Microemulsion electrokinetic chromatography (MEEKC) has been applied to the separation of some UV filters (Eusolex 4360, Eusolex 6300, Eusolex OCR, Eusolex 2292, Eusolex 6007, Eusolex 9020, Eusolex HMS, Eusolex OS, and Eusolex 232) commonly found in suntan lotions. The composition of the microemulsion employed was optimized with respect to the best possible separation of the selected analytes using artificial neural networks (ANNs). Two parameters namely the composition of the mixed surfactant system comprising the anionic sodium dodecyl sulfate (SDS) and neutral Brij 35 and the amount of organic modifier (2-propanol) present in the aqueous phase of the microemulsion were modeled. Using an optimized MEEKC buffer consisting of 2.25 g SDS, 0.75 g Brij 35, 6.6 g 1-butanol, 0.8 g n-octane, 17.5 g 2-propanol, and 72.1 g of 10 mM borate buffer (pH 9.2), eight target analytes could be separated in under 25 min employing a diode-array detector to segregate the overlapping signals obtained for Eusolex 9020 and Eusolex HMS. Detection limits from 0.8 to 6.0 nug/mL were obtained and the calibration plots were linear over at least one order of magnitude. The optimized method could be applied to the determination of Eusolex 6300 and Eusolex 9020 in a commercial suntan lotion.
微乳液电动色谱法(MEEKC)已用于分离防晒乳液中常见的一些紫外线过滤剂(依索佳4360、依索佳6300、依索佳OCR、依索佳2292、依索佳6007、依索佳9020、依索佳HMS、依索佳OS和依索佳232)。使用人工神经网络(ANN)对所采用的微乳液组成进行了优化,以实现所选分析物的最佳分离。对两个参数进行了建模,即由阴离子十二烷基硫酸钠(SDS)和中性Brij 35组成的混合表面活性剂体系的组成以及微乳液水相中有机改性剂(2-丙醇)的含量。使用由2.25 g SDS、0.75 g Brij 35、6.6 g 1-丁醇、0.8 g正辛烷、17.5 g 2-丙醇和72.1 g 10 mM硼酸盐缓冲液(pH 9.2)组成的优化MEEKC缓冲液,采用二极管阵列检测器分离依索佳9020和依索佳HMS获得的重叠信号,在25分钟内可分离出8种目标分析物。检测限为0.8至6.0μg/mL,校准曲线在至少一个数量级内呈线性。该优化方法可用于测定市售防晒乳液中的依索佳6300和依索佳9020。