Australian Centre for Research on Separation Science, School of Chemistry, University of Tasmania, Private Bag 75, Hobart, Tasmania 7001, Australia.
J Chromatogr A. 2010 Jan 15;1217(3):386-93. doi: 10.1016/j.chroma.2009.11.043. Epub 2009 Nov 18.
Three strategies were investigated for the simultaneous separation and on-line preconcentration of charged and neutral hypolipidaemic drugs in micellar electrokinetic chromatography (MEKC). A background electrolyte (BGE) consisting of 20 mM ammonium bicarbonate buffer (pH 8.50) and 50 mM sodium dodecyl sulfate (SDS) was used for the separation and on-line preconcentration of the drugs. The efficiencies of sweeping, analyte focusing by micelle collapse (AFMC), and simultaneous field-amplified sample stacking (FASS) and sweeping, were compared for the preconcentration of eight hypolipidaemic drugs in different conductivity sample matrices. When compared with a hydrodynamic injection (5 s at 50 mbar, 0.51% of capillary volume to detection window) of drug mixture prepared in the separation BGE, improvements of detection sensitivity of 60-, 83-, and 80-fold were obtained with sweeping, AFMC and simultaneous FASS and sweeping, respectively, giving limits of detection (LODs) of 50, 36, and 38 microg/L, respectively. The studied techniques showed suitability for focusing different types of analytes having different values of retention factor (k). This is the first report for the separation of different types of hypolipidaemic drugs by capillary electrophoresis (CE). The three methods were validated then applied for the analysis of target analytes in wastewater samples from Hobart city.
三种策略被用于胶束电动色谱(MEKC)中同时分离和在线预浓缩带电荷和中性的降脂药物。一种由 20mM 碳酸氢铵缓冲液(pH8.50)和 50mM 十二烷基硫酸钠(SDS)组成的背景电解质(BGE)被用于药物的分离和在线预浓缩。在不同电导率的样品基质中,比较了扫集、胶束塌陷的分析物聚焦(AFMC)和同时场放大样品堆积(FASS)和扫集的预浓缩效率。与在分离 BGE 中制备的药物混合物的水力进样(5s,50mbar,0.51%的毛细管体积到检测窗口)相比,分别使用扫集、AFMC 和同时 FASS 和扫集,可将检测灵敏度提高 60、83 和 80 倍,得到的检出限(LOD)分别为 50、36 和 38μg/L。所研究的技术适用于聚焦具有不同保留因子(k)值的不同类型的分析物。这是首次通过毛细管电泳(CE)分离不同类型的降脂药物的报道。然后对三种方法进行了验证,并应用于分析霍巴特市废水样品中的目标分析物。