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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Evaluation of stationary phases packed with superficially porous particles for the analysis of pharmaceutical compounds using supercritical fluid chromatography
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Evaluation of stationary phases packed with superficially porous particles for the analysis of pharmaceutical compounds using supercritical fluid chromatography

机译:使用超临界流体色谱法评估填充有表面多孔颗粒的固定相以分析药物化合物

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摘要

Superficially porous particles (SPP), or core shell particles, which consist of a non-porous silica core surrounded by a thin shell of porous silica, have gained popularity as a solid support for chromatography over the last decade. In the present study, five unbonded silica, one diol, and two ethylpyridine (2-ethyl and 4-ethyl) SPP columns were evaluated under SFC conditions using two mixtures, one with 17 drug-like compounds and the other one with 7 drug-like basic compounds. Three of the SPP phases, SunShell? 2-ethylpyridine (2-EP), Poroshell? HILIC, and Ascentis? Express HILIC, exhibited superior performances relative to the others (reduced theoretical plate height (hmin) values of 1.9-2.5 for neutral compounds). When accounting for both achievable plate count and permeability of the support using kinetic plot evaluation, the Cortecs? HILIC 1.6 μm and Ascentis? Express HILIC 2.7 μm phases were found to be the best choices among tested SPPs to reach efficiencies up to 30,000 plates in the minimum amount of time. For desired efficiencies ranging from 30,000 to 60,000 plates, the SunShell? 2-EP 2.6 μm column clearly outperformed all other SPPs. With the addition of a mobile phase additive such as 10 mM ammonium formate, which was required to elute the basic components with sharp peaks, the Poroshell? HILIC, SunShell? Diol and SunShell? 2-EP phases represent the most orthogonal SPP columns with the highest peak capacities. This study demonstrates the obvious benefits of using columns packed with SPP on current SFC instrumentation.
机译:在过去的十年中,由多孔二氧化硅薄壳包围的无孔二氧化硅核组成的表面多孔颗粒(SPP)或核壳颗粒作为色谱的固体载体而受到欢迎。在本研究中,使用两种混合物在SFC条件下评估了五个未键合的硅胶,一个二醇和两个乙基吡啶(2-乙基和4-乙基)SPP色谱柱,其中一种包含17种类药物,另一种具有7种像碱性化合物一样。 SunShell是SPP的三个阶段? 2-乙基吡啶(2-EP),Poroshell吗? HILIC和Ascentis? Express HILIC相对于其他化合物表现出优越的性能(中性化合物的理论塔板高度(hmin)降低至1.9-2.5)。当使用动力学图评估法考虑可达到的板数和载体的渗透率时,Cortecs? HILIC 1.6μm和Ascentis?发现快速HILIC 2.7μm固定相是经过测试的SPP的最佳选择,可以在最短的时间内达到30,000板的效率。为了获得从30,000到60,000板数的所需效率,SunShell? 2-EP 2.6μm色谱柱明显优于所有其他SPP。通过添加流动相添加剂(例如10 mM甲酸铵)来洗脱具有尖峰的基本组分,Poroshell? HILIC,SunShell? Diol和SunShell? 2-EP相代表具有最高峰容量的最正交的SPP色谱柱。这项研究证明了在当前的SFC仪器上使用装有SPP的色谱柱的明显好处。

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