Department of Analytical Chemistry, University of Vienna, Vienna, Austria.
J Sep Sci. 2011 Apr;34(7):761-72. doi: 10.1002/jssc.201000793. Epub 2011 Mar 7.
Several methods for the separation of vitamins on HPLC columns were already validated in the last 20 years. However, most of the techniques focus on separating either fat- or water-soluble vitamins and only few methods are intended to separate lipophilic and hydrophilic vitamins simultaneously. A mixed-mode reversed-phase weak anion exchange (RP-WAX) stationary phase was developed in our laboratory in order to address such mixture of analytes with different chemical characteristics, which are difficult to separate on standard columns. The high versatility in usage of the RP-WAX chromatographic material allowed a baseline separation of ten vitamins within a single run, seven water-soluble and three fat-soluble, using three different chromatographic modes: some positively charged vitamins are eluted in ion exclusion and ion repulsion modes whereas the negatively charged molecules are eluted in the ion exchange mechanism. The non-charged molecules are eluted in a classical reversed-phase mode, regarding their polarities. The method was validated for the vitamin analysis in tablets, evaluating selectivity, robustness, linearity, accuracy, and precision. The validated method was finally employed for the analysis of the vitamin content of some commercially available supplement tablets.
过去 20 年来,已经有几种用于 HPLC 柱上维生素分离的方法得到了验证。然而,大多数技术都侧重于分离脂溶性或水溶性维生素,只有少数方法旨在同时分离亲脂性和亲水性维生素。为了解决具有不同化学特性的分析物的这种混合物,我们实验室开发了一种混合模式反相弱阴离子交换(RP-WAX)固定相,这些分析物很难用标准柱分离。RP-WAX 色谱材料的多功能性允许在单个运行中实现十种维生素的基线分离,其中七种是水溶性的,三种是脂溶性的,使用三种不同的色谱模式:一些带正电荷的维生素在离子排斥和离子排斥模式下洗脱,而带负电荷的分子在离子交换机制下洗脱。非带电分子根据其极性在经典的反相模式下洗脱。该方法已通过评估选择性、稳健性、线性、准确性和精密度,对片剂中的维生素分析进行了验证。最后,该验证方法用于分析一些市售补充剂片剂中的维生素含量。