Janas Petr, Bocian Szymon, Jandera Pavel, Kowalkowski Tomasz, Buszewski Bogusław
Department of Analytical Chemistry, University of Pardubice, Studentská 573, CZ-532 10 Pardubice, Czech Republic.
Chair of Environmental Chemistry and Bioanalytics, Faculty of Chemistry, Nicolaus Copernicus University, 7 Gagarin St., PL- 87-100 Toruń, Poland.
J Chromatogr A. 2016 Jan 15;1429:198-206. doi: 10.1016/j.chroma.2015.12.024. Epub 2015 Dec 11.
Four phenyl-bonded stationary phases, differing in polar embedded group between spacer and phenyl ring, were used for the separation of flavonoids in reversed-phase conditions. In addition, the work was focused on the comparison of these stationary phases in terms of retention and nature of interactions between flavonoid solutes and both, mobile and stationary phases. The differences and similarities between the columns and between individual flavonoids were evaluated by a statistical analysis. The retention over the wider range of mobile phase composition was described using well known model suggested for partition chromatographic systems. Due to differences in polarity of flavonoids, gradient elution had to be applied to achieve appropriate conditions for the successful separation. A chromatographic optimization software was employed for establish the appropriate profiles of gradient separations using UV detection at 275 nm. The most appropriate conditions for the separation of flavonoids were apparent on the phenyl and phenoxy columns.
四种苯基键合固定相,间隔基和苯环之间的极性嵌入基团不同,用于在反相条件下分离黄酮类化合物。此外,该工作重点在于比较这些固定相在黄酮类溶质与流动相和固定相之间的保留情况及相互作用性质。通过统计分析评估了各色谱柱之间以及各个黄酮类化合物之间的差异和相似性。使用针对分配色谱系统提出的著名模型描述了在更宽流动相组成范围内的保留情况。由于黄酮类化合物极性不同,必须采用梯度洗脱以实现成功分离的合适条件。使用色谱优化软件建立了在275 nm处进行紫外检测的梯度分离合适图谱。在苯基柱和苯氧基柱上,分离黄酮类化合物的最合适条件最为明显。