Department of Physical Chemistry, Medical University of Lublin, Staszica 6, 20-081 Lublin, Poland.
J Chromatogr A. 2010 Jul 16;1217(29):4868-72. doi: 10.1016/j.chroma.2010.05.022. Epub 2010 May 20.
Kinetic performance, measured by plate height, of High-Performance Thin-Layer Chromatography (HPTLC), High-Performance Liquid Chromatography (HPLC) and Pressurized Planar Electrochromatography (PPEC) was compared for the systems with adsorbent of the HPTLC RP18W plate from Merck as the stationary phase and the mobile phase composed of acetonitrile and buffer solution. The HPLC column was packed with the adsorbent, which was scrapped from the chromatographic plate mentioned. An additional HPLC column was also packed with adsorbent of 5 microm particle diameter, C18 type silica based (LiChrosorb RP-18 from Merck). The dependence of plate height of both HPLC and PPEC separating systems on flow velocity of the mobile phase and on migration distance of the mobile phase in TLC system was presented applying test solute (prednisolone succinate). The highest performance, amongst systems investigated, was obtained for the PPEC system. The separation efficiency of the systems investigated in the paper was additionally confirmed by the separation of test component mixture composed of six hormones.
将高效薄层色谱(HPTLC)、高效液相色谱(HPLC)和加压平面电色谱(PPEC)的动力学性能(以板高表示)进行了比较,所用的固定相为 Merck 的 HPTLC RP18W 板上的吸附剂,流动相由乙腈和缓冲溶液组成。HPLC 柱填充的是从上述色谱板上刮下的吸附剂,另一个 HPLC 柱则填充了 5 微米粒径、C18 型硅胶基(Merck 的 LiChrosorb RP-18)的吸附剂。通过测试溶质(琥珀酸泼尼松),给出了两种 HPLC 和 PPEC 分离系统的板高随流动相流速和 TLC 系统中流动相迁移距离的变化关系。在所研究的系统中,PPEC 系统的性能最高。通过分离由六种激素组成的测试组分混合物,进一步证实了所研究系统的分离效率。