Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, China.
J Chromatogr A. 2013 Nov 1;1314:63-9. doi: 10.1016/j.chroma.2013.09.002. Epub 2013 Sep 8.
As a naturally hydrophilic peptide, glutathione was facilely immobilized onto silica surface to obtain a novel hydrophilic interaction/cation-exchange mixed-mode chromatographic stationary phase (Click TE-GSH) via copper-free "thiol-ene" click chemistry. The resulting material was characterized by solid state (13)C/CP MAS NMR and elemental analysis. The measurement of ζ-potential indicated the cation-exchange characteristics and adjustable surface charge density of Click TE-GSH material. The influence of acetonitrile content and pH value on the retention of ionic compounds was investigated for understanding the chromatographic behaviors. The results demonstrated that Click TE-GSH column could provide both hydrophilic and cation-exchange interaction. Taking advantage of the good hydrophilicity and inherent cation-exchange characteristics of Click TE-GSH material, the resolution of neutral fructosan with high degree of polymerization (DP), basic chitooligosaccharides and strongly acidic carrageenan oligosaccharides was successfully realized in hydrophilic interaction chromatography (HILIC), hydrophilic interaction/cation-exchange mixed-mode chromatography (HILIC/CEX), cation-exchange chromatography (CEX) and electrostatic repulsion/hydrophilic interaction chromatography (ERLIC). On the other hand, the separation of standard peptides varying in hydrophobicity/hydrophilicity and charge was achieved in both CEX and HILIC/CEX mode with high efficiency and distinct selectivity. To further demonstrate the versatility and applicability of Click TE-GSH stationary phase, the separation of a human serum albumin (HSA) tryptic digest was performed in HILIC/CEX mode. Peptides were adequately resolved and up to 86 HSA peptides were identified with sequence coverage of 85%. The results indicated the good potential of Click TE-GSH material in glycomics and proteomics.
作为一种天然亲水性肽,谷胱甘肽很容易通过无铜“硫醇-烯”点击化学固定在硅胶表面上,得到一种新型的亲水性相互作用/阳离子交换混合模式色谱固定相(Click TE-GSH)。所得材料通过固态(13)C/CP MAS NMR 和元素分析进行了表征。ζ-电位的测量表明了 Click TE-GSH 材料的阳离子交换特性和可调节的表面电荷密度。考察了乙腈含量和 pH 值对离子化合物保留的影响,以了解色谱行为。结果表明,Click TE-GSH 柱可以提供亲水性和阳离子交换相互作用。利用 Click TE-GSH 材料的良好亲水性和固有阳离子交换特性,成功地在亲水相互作用色谱(HILIC)、亲水相互作用/阳离子交换混合模式色谱(HILIC/CEX)、阳离子交换色谱(CEX)和静电排斥/亲水相互作用色谱(ERLIC)中实现了高聚合度(DP)中性果聚糖、碱性壳寡糖和强酸性卡拉胶寡糖的分离。另一方面,在 CEX 和 HILIC/CEX 模式下,通过高效和明显的选择性,实现了疏水性/亲水性和电荷变化的标准肽的分离。为了进一步证明 Click TE-GSH 固定相的多功能性和适用性,在 HILIC/CEX 模式下对人血清白蛋白(HSA)胰蛋白酶消化物进行了分离。肽得到了充分的分离,多达 86 种 HSA 肽被鉴定,序列覆盖率为 85%。结果表明,Click TE-GSH 材料在糖组学和蛋白质组学中有很好的应用潜力。