Multi-modal applicability of a reversed-phase/weak-anion exchange material in reversed-phase, anion-exchange, ion-exclusion, hydrophilic interaction and hydrophobic interaction chromatography modes

被引:0
作者
Michael Lämmerhofer
Raquel Nogueira
Wolfgang Lindner
机构
[1] University of Vienna,Department of Analytical Chemistry, Faculty of Chemistry
来源
Analytical and Bioanalytical Chemistry | 2011年 / 400卷
关键词
Mixed-mode stationary phase; Reversed-phase/weak anion-exchange material; Hydrophilic interaction chromatography (HILIC); Hydrophobic interaction chromatography (HIC); Ion-exclusion chromatography;
D O I
暂无
中图分类号
学科分类号
摘要
We recently introduced a mixed-mode reversed-phase/weak anion-exchange type separation material based on silica particles which consisted of a hydrophobic alkyl strand with polar embedded groups (thioether and amide functionalities) and a terminal weak anion-exchange-type quinuclidine moiety. This stationary phase was designed to separate molecules by lipophilicity and charge differences and was mainly devised for peptide separations with hydroorganic reversed-phase type elution conditions. Herein, we demonstrate the extraordinary flexibility of this RP/WAX phase, in particular for peptide separations, by illustrating its applicability in various chromatographic modes. The column packed with this material can, depending on the solute character and employed elution conditions, exploit attractive or repulsive electrostatic interactions, and/or hydrophobic or hydrophilic interactions as retention and selectivity increments. As a consequence, the column can be operated in a reversed-phase mode (neutral compounds), anion-exchange mode (acidic compounds), ion-exclusion chromatography mode (cationic solutes), hydrophilic interaction chromatography mode (polar compounds), and hydrophobic interaction chromatography mode (e.g., hydrophobic peptides). Mixed-modes of these chromatographic retention principles may be materialized as well. This allows an exceptionally flexible adjustment of retention and selectivity by tuning experimental conditions. The distinct separation mechanisms will be outlined by selected examples of peptide separations in the different modes.
引用
收藏
页码:2517 / 2530
页数:13
相关论文
共 217 条
[1]  
Majors RE(2010)New chromatography columns and accessories at Pittcon 2010: part I LCGC North Am 28 192-210
[2]  
Hemstroem P(2006)Hydrophilic interaction chromatography J Sep Sci 29 1784-1821
[3]  
Irgum K(1985)Internal surface reversed-phase silica supports for liquid chromatography Anal Chem 57 1757-1763
[4]  
Hagestam IH(1995)Evaluation and routine application of the novel restricted-access precolumn packing material alkyl-diol silica: coupled-column high-performance liquid chromatographic analysis of the photoreactive drug 8-methoxypsoralen in plasma J Chromatogr B 666 315-322
[5]  
Pinkerton TC(2003)Fully automated LC method for the determination of sotalol in human plasma using restricted access material with cation exchange properties for sample clean-up J Pharm Biomed Anal 32 829-838
[6]  
Vielhauer S(2008)New hydrophilic interaction/reversed-phase mixed-mode stationary phase and its application for analysis of nonionic ethoxylated surfactants J Chromatogr A 1191 83-89
[7]  
Rudolphi A(2010)Polymethacrylate monolithic and hybrid particle-monolithic columns for reversed-phase and hydrophilic interaction capillary liquid chromatography J Chromatogr A 1217 22-33
[8]  
Boos K-S(2009)Preparation and characterization of polymethacrylate monolithic capillary columns with dual hydrophilic interaction reversed-phase retention mechanism for polar compounds J Sep Sci 32 2530-2543
[9]  
Seidel D(1979)Bonded reverse phase ion exchange columns for the liquid chromatographic separations of neutral and ionic organic compounds J Chromatogr Sci 17 237-244
[10]  
Rbeida O(1983)Chemically synthesized hydrophobic anion-exchange high-performance liquid chromatography supports used for oligonucleotide resolution by mixed mode chromatography J Chromatogr 270 117-126