Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, Prague, Czech Republic.
J Sep Sci. 2021 Nov;44(21):4048-4057. doi: 10.1002/jssc.202100501. Epub 2021 Sep 16.
The coupling of columns in sub/supercritical fluid chromatography presents a great opportunity for influencing the separation efficiency and extending the selectivity of the separation system. Combinations of different types of chiral stationary phases could positively affect the enantioresolution if single ones are complementary to each other. In this work, two superficially porous particle (2.7 μm) macrocyclic glycopeptide-based columns, namely TeicoShell and NicoShell, were serially coupled and tested in sub/supercritical fluid chromatography for the first time. The influence of the column arrangement on the enantioseparation of structurally diverse biologically active compounds was examined. The obtained results showed how the column order crucially affected the enantioresolution of compounds tested, but the retention was negligibly affected in most cases. We also demonstrated that single TeicoShell and NicoShell columns are very promising towards the development of highly efficient and fast/ultrafast sub/supercritical fluid chromatography methods for structurally different chiral compounds. The optimized methods for sub-minute enantioselective separation of certain biologically important compounds were proposed.
柱的偶联在亚/超临界流体色谱中为影响分离效率和扩展分离系统选择性提供了巨大的机会。如果单一的手性固定相是互补的,那么不同类型的手性固定相的组合可以积极影响对映体分辨率。在这项工作中,首次将两种表面多孔颗粒(2.7 μm)大环糖肽基柱,即 TeicoShell 和 NicoShell,串联偶联并在亚/超临界流体色谱中进行测试。考察了柱排列对结构多样的生物活性化合物的对映体分离的影响。结果表明,柱顺序对所测试化合物的对映体分辨率有决定性的影响,但在大多数情况下,保留时间几乎不受影响。我们还证明,单个 TeicoShell 和 NicoShell 柱在手性化合物结构不同的高效和快速/超快速亚/超临界流体色谱方法的开发方面非常有前景。提出了针对某些具有生物学重要性的化合物进行亚分钟对映选择性分离的优化方法。