Departamento de Química Analítica, Facultad de Química, Universidad de Alcalá, Madrid, Spain.
Electrophoresis. 2012 Jun;33(11):1582-8. doi: 10.1002/elps.201100588.
Molecularly imprinted solid-phase extraction (MISPE) combined with MEKC was used for clean-up, preconcentration and determination of digoxin in the presence of its aglycon digoxin (digoxigenin) in human urine samples. In addition, the use of an in-capillary sample concentration electrophoretic technique by sweeping was investigated to enhance the concentration sensitivity in MEKC. The highly selective, fast and effective sample pretreatment by MISPE along with the preconcentration by sweeping could overcome the low sensitivity of the highly efficient capillary electrophoresis separation with UV detection. The optimization of the variables affecting the separation as well as MISPE conditions procedure was carried out to select the best conditions of selectivity and sensitivity to determine digoxin at low concentration levels in urine. To demonstrate the suitability of the developed method several analytical characteristics (selectivity, linearity, accuracy, precision, and LOD) were evaluated. Satisfactory results were obtained in terms of linearity (r > 0.99), recovery (95.4-96.5% with RSD from 1.3% to 2.6%), precision (RSD from 0.3% to 1.7% for migration times and from 2.1% to 7.3% for corrected peak areas), and sensitivity (LODs of 6 μg/L with 5 mL of sample or 1.2 μg/L with 25 mL). The proposed MISPE-MEKC method was satisfactorily applied to the analysis of spiked human urine samples achieving a concentration factor up to 7500-fold.
采用分子印迹固相萃取(MISPE)结合 MEKC 对人尿样中地高辛及其苷元地高辛(地高辛)进行了净化、预浓缩和测定。此外,还研究了在毛细管内通过扫集进行样品浓缩电泳技术,以提高 MEKC 中的浓度灵敏度。MISPE 高度选择性、快速有效的样品预处理与扫集预浓缩相结合,可以克服高效毛细管电泳分离与紫外检测灵敏度低的问题。对影响分离以及 MISPE 条件程序的变量进行了优化,以选择最佳的选择性和灵敏度条件,以在尿液中低浓度水平下测定地高辛。为了证明所开发方法的适用性,评估了几种分析特性(选择性、线性、准确性、精密度和 LOD)。在线性(r >0.99)、回收率(95.4-96.5%,RSD 为 1.3%-2.6%)、精密度(迁移时间的 RSD 为 0.3%-1.7%,校正峰面积的 RSD 为 2.1%-7.3%)和灵敏度(6μg/L 的 LODs,5mL 样品或 1.2μg/L 的 LODs,25mL 样品)方面均获得了满意的结果。所提出的 MISPE-MEKC 方法可满意地应用于加标人尿样的分析,实现浓缩倍数高达 7500 倍。