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Preparation and chromatographic evaluation of a cysteine-bonded zwitterionic hydrophilic interaction liquid chromatography stationary phase

机译:preparation and chromatographic evaluation of a cysteine-bonded zwitterionic hydrophilic interaction liquid chromatography stationary phase

摘要

A cysteine-bonded zwitterionic hydrophilic interaction chromatography (HILIC) stationary phase (Click TE-Cys) was prepared based on the "thiol-ene" click chemistry. The Click TE-Cys material was characterized by solid state C-13 cross polarization/magic-angle spinning (CP/MAS) NMR and elemental analysis. The dynamic evaluation for cytosine, cytidine and orotic acid was performed using Van Deemter plots. The plate height values were no more than 24 mu m for the flow rate between 0.5 and 5.4 mm s(-1) (0.3-3.5 mL min(-1)), which proved the excellent separation efficiency of Click TE-Cys stationary phase. The influences of the content of water, concentration of salt and pH of the buffer solution on the retention of model compounds were investigated. The results demonstrated that the separation of polar analytes was dominated by the partitioning mechanism, while the contribution of electrostatic interaction was minor. The thermodynamic characteristic of Click TE-Cys stationary phase was also studied according to van't Hoff plot. An exothermic process for transferring analytes from the mobile phase to the stationary phase was observed and a linear relationship for Ink and 1/T was achieved, indicating no change of retention mechanism within the measured temperature range. Besides, the zwitterionic stationary phase exhibited good stability. Considering the high hydrophilicity of Click TE-Cys stationary phase, the application in the separation of protein tryptic digests was carried out using hydrophilic interaction chromatography-electrospray ionization mass spectrometry (HILIC-ESI-MS). More peaks were adequately resolved on the Click TE-Cys column comparing with that on the TSK Amide-80 column. In addition, the orthogonality between HILIC and RPLC system was investigated utilizing geometric approach. The XTerra MS C-18 and Click TE-Cys column displayed great difference in separation selectivity, with the orthogonality reaching 88.0%. On the other hand, the orthogonality between Click TE-Cys and TSK Amide-80 system was 21.4%, i.e. the selectivity was similar but slightly different from each other. The successful separation of protein digests indicated the great potential of Click TE-Cys stationary phase in the separation of complex samples and applicability in two-dimensional liquid chromatography (2D-LC). (C) 2011 Elsevier B.V. All rights reserved.
机译:基于“硫醇-烯”点击化学,制备了半胱氨酸键合的两性离子亲水相互作用色谱(HILIC)固定相(Click TE-Cys)。 Click TE-Cys材料通过固态C-13交叉极化/魔角旋转(CP / MAS)NMR和元素分析进行​​表征。使用范德姆特图对胞嘧啶,胞苷和乳清酸进行动态评估。在0.5至5.4 mm s(-1)(0.3-3.5 mL min(-1))之间的流速下,板高值不超过24μm,这证明了Click TE-Cys固定相的出色分离效率。研究了水含量,盐浓度和缓冲溶液的pH对模型化合物保留的影响。结果表明,极性分析物的分离主要受分配机制的影响,而静电相互作用的贡献则很小。还根据van't Hoff图研究了Click TE-Cys固定相的热力学特性。观察到将分析物从流动相转移到固定相的放热过程,并且Ink和T / T呈线性关系,表明在所测温度范围内保留机理没有变化。此外,两性离子固定相具有良好的稳定性。考虑到Click TE-Cys固定相的高亲水性,使用亲水相互作用色谱-电喷雾电离质谱(HILIC-ESI-MS)进行蛋白质胰蛋白酶消化物的分离。与TSK Amide-80色谱柱相比,在Click TE-Cys色谱柱上可以解析出更多的峰。另外,利用几何方法研究了HILIC和RPLC系统之间的正交性。 XTerra MS C-18和Click TE-Cys色谱柱在分离选择性上显示出很大差异,正交性达到88.0%。另一方面,Click TE-Cys与TSK Amide-80系统之间的正交率为21.4%,即选择性相似但彼此略有不同。蛋白质消化物的成功分离表明Click TE-Cys固定相在复杂样品分离中的巨大潜力以及在二维液相色谱(2D-LC)中的适用性。 (C)2011 Elsevier B.V.保留所有权利。

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