Gwarda Radosław Ł, Dzido Tadeusz H
Department of Physical Chemistry, Chair of Chemistry, Faculty of Pharmacy with Medical Analytics Division, Medical University of Lublin, 4a Chodźki St., 20-093 Lublin, Poland.
Department of Physical Chemistry, Chair of Chemistry, Faculty of Pharmacy with Medical Analytics Division, Medical University of Lublin, 4a Chodźki St., 20-093 Lublin, Poland.
J Chromatogr A. 2018 Jan 26;1534:179-187. doi: 10.1016/j.chroma.2017.12.063. Epub 2017 Dec 26.
In our paper we investigate the influence of pH of the mobile phase buffer, on retention of peptides in both: normal phase (NP) and reversed phase (RP) high-performance thin-layer chromatography systems (HPTLC), using C18 silica-based adsorbent. We also compare the influence of pH on retention and/or migration distance of peptides in separation systems of HPTLC and PPEC (pressurized planar electrochromatography) techniques. Our results show, that the change of pH of the mobile phase buffer can be used for two-dimensional HPTLC separation of peptides, but much stronger change of separation selectivity can be obtained by overall inversion of separation system type (NP/RP), as we have described before (Gwarda et al., 2016). In PPEC influence of the mobile phase pH on selectivity of peptide separation is very clear and strictly different than that in HPTLC (including overall inversion of direction of solutes migration), what results from the significant share of electrophoretic effect in overall mechanism of separation. Migration of peptides in two opposite directions results in better selectivity of separation by PPEC. In separation systems of both HPTLC and PPEC techniques, the change of pH clearly affects the efficiency of the separation system, so it can be used for optimization of separation conditions. Our results also show, that some modifications of PPEC equipment and materials could be useful for application of this technique in the field of peptide analysis.
在我们的论文中,我们研究了流动相缓冲液的pH值对肽在正相(NP)和反相(RP)高效薄层色谱系统(HPTLC)中保留的影响,使用的是基于C18硅胶的吸附剂。我们还比较了pH值对肽在HPTLC和加压平面电色谱(PPEC)技术分离系统中保留和/或迁移距离的影响。我们的结果表明,流动相缓冲液pH值的变化可用于肽的二维HPTLC分离,但如我们之前所描述的(Gwarda等人,2016年),通过整体反转分离系统类型(NP/RP)可获得更强的分离选择性变化。在PPEC中,流动相pH值对肽分离选择性的影响非常明显,且与HPTLC中的情况严格不同(包括溶质迁移方向的整体反转),这是由于电泳效应在整体分离机制中占很大比例所致。肽在两个相反方向上的迁移导致PPEC分离具有更好的选择性。在HPTLC和PPEC技术的分离系统中,pH值的变化明显影响分离系统的效率,因此可用于优化分离条件。我们的结果还表明,对PPEC设备和材料进行一些改进可能有助于该技术在肽分析领域的应用。