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首页> 外文期刊>Chromatographia >Dual Retention Mechanism in Two-Dimensional LC Separations of Barbiturates, Sulfonamides, Nucleic Bases and Nucleosides on Polymethacrylate Zwitterionic Monolithic Micro-Columns
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Dual Retention Mechanism in Two-Dimensional LC Separations of Barbiturates, Sulfonamides, Nucleic Bases and Nucleosides on Polymethacrylate Zwitterionic Monolithic Micro-Columns

机译:聚甲基丙烯酸酯两性离子整体微柱上巴比妥酸酯,磺酰胺,核碱和核苷的二维液相色谱分离中的双重保留机理

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摘要

In-house prepared zwitterionic polymethacrylate micro-columns using in situ polymerization of N,N-dimethyl-N-metacryloxyethyl-N-(3-sulfopropyl) ammonium betaine (MEDSA) functional monomer with bisphenol A glycerolate dimethacrylate (BIGDMA) cross-linker provided excellent stability and reproducibility of preparation and separation efficiency of 60,000-70,000 theoretical plates m(-1) for small molecules under isocratic conditions. The column showed a dual retention mechanism, reversed-phase (RP) in highly aqueous mobile phases and aqueous normal-phase (HILIC) in acetonitrile-rich mobile phases. This property can be used to obtain complementary separation and combined information on the sample from repeated injections of a sample on a single column, in different mobile phases characteristic for the HILIC and for the RP modes, which is in fact a form of offline two-dimensional chromatography on a single column. The dual retention mechanism has been observed with a variety of columns, however, often with impractically narrow retention range in one of the two modes. To take full advantage from the combined single-column RP-HILIC experiments, the column should provide a sufficiently broad mobile phase interval both in the RP and in the HILIC mode. The BIGDMA-MEDSA micro-columns proved suitable earlier for the combined RP-HILIC separations of some phenolic compounds and flavonoids. In the present work, we investigated the effects of the mobile phase composition on the retention of a variety of polar compounds over full retention range of buffered aqueous acetonitrile mobile phases, to find potentially useful HILIC and RP retention ranges for barbiturates, sulfonamides, nucleosides and nucleic bases. In the HILIC mode, proton donor-acceptor interactions show a major effect on retention and selectivity of separation, whereas the size of the non-polar hydrocarbon part of the sample molecule is the most important factor in the water-rich mobile phases. The sample structure strongly affects the composition of aqueous-organic mobile phases at which the transition between the two retention modes occurs. Of the investigated sample types, barbiturates show better separation under reversed-phase conditions, whereas nucleosides and nucleic bases in the HILIC mode. Aromatic carboxylic acids and sulfonamides can be separated either in the reversed phase or under HILIC conditions, the two separation modes showing complementary selectivity of separation.
机译:使用N,N-二甲基-N-甲基丙烯酰氧基乙基-N-(3-磺丙基)甜菜碱(MEDSA)功能性单体与双酚A甘油二甲基丙烯酸酯(BIGDMA)交联剂进行原位聚合的内部制备的两性离子聚甲基丙烯酸甲酯微柱在等度条件下,小分子的制备和分离效率为60,000-70,000理论板m(-1)极佳的稳定性和可重复性。该色谱柱显示出双重保留机理,即在高水相流动相中的反相(RP)和在富乙腈流动相中的水正相(HILIC)。该特性可用于在HILIC和RP模式的不同流动相特性下,通过将样品重复注入同一根色谱柱上的单个色谱柱来获得样品的互补分离和合并信息,实际上这是离线两相色谱的一种形式,在单个柱上进行三维色谱。在多种色谱柱上都观察到了双重保留机理,但是在两种模式之一中,保留范围通常不切实际地狭窄。为了从组合的单柱RP-HILIC实验中充分利用,该色谱柱在RP和HILIC模式下均应提供足够宽的流动相间隔。事实证明,BIGDMA-MEDSA微柱较早地适用于某些酚类化合物和类黄酮的RP-HILIC组合分离。在目前的工作中,我们研究了在缓冲乙腈水溶液流动相的整个保留范围内,流动相组成对多种极性化合物保留的影响,以发现对巴比妥酸盐,磺酰胺,核苷和吡咯烷酮可能有用的HILIC和RP保留范围。核酸碱基。在HILIC模式下,质子供体与受体的相互作用对保留和分离选择性显示出主要影响,而样品分子中非极性烃部分的大小是富水流动相中最重要的因素。样品结构强烈影响两个保留模式之间发生过渡的水性有机流动相的组成。在研究的样品类型中,巴比妥类药物在反相条件下显示出更好的分离效果,而核苷和核酸碱基处于HILIC模式。芳香羧酸和磺酰胺可以在反相条件下或在HILIC条件下进行分离,两种分离模式显示出互补的分离选择性。

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