首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Affinity monolithic capillary columns for glycomics/proteomics: 1. Polymethacrylate monoliths with immobilized lectins for glycoprotein separation by affinity capillary electrochromatography and affinity nano-liquid chromatography in either a single
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Affinity monolithic capillary columns for glycomics/proteomics: 1. Polymethacrylate monoliths with immobilized lectins for glycoprotein separation by affinity capillary electrochromatography and affinity nano-liquid chromatography in either a single

机译:用于糖组学/蛋白质组学的亲和整体毛细管柱:1.带有固定化凝集素的聚甲基丙烯酸甲酯整体,可通过亲和毛细管电色谱和亲和纳米液相色谱分离糖蛋白

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In this report, microcolumn separation schemes involving monolithic capillary columns with immobilized lectins, and relevant to nanoglycomicsanoproteomics were introduced. Positive and neutral monoliths based on poly(glycidyl methacrylate-co-ethylene dimethacrylate) were designed for achieving lectin affinity chromatography (LAC) by nano-LC and CEC. The positive monoliths (i.e., monoliths with cationic sites) afforded relatively high permeability in nano-LC but lack predictable EOF magnitude and direction, while neutral monoliths provided a good compromise between reasonable permeability in nano-LC and predictable EOF in CEC. Lectin affinity nano-LC permitted the enrichment of classes of different glycoproteins having similar N-glycans recognized by the immobilized lectin, whereas lectin affinity CEC provided the simultaneous capturing and separation of different glycoproteins due to differences in charge-to-mass ratio. Also, this investigation demonstrated for the first time the coupling of lectin capillary columns in series (i.e., tandem columns) for enhanced separation of glycoproteins by LAC using the CEC modality. Furthermore, in the coupled columns format, glycoforms of a given glycoprotein were readily separated.
机译:在此报告中,介绍了涉及带有固定化凝集素的整体毛细管柱的微柱分离方案,该方案与纳米糖组学/纳米生物组学有关。设计了基于聚(甲基丙烯酸缩水甘油酯-共聚二甲基丙烯酸乙烯酯)的正性和中性整料,以通过纳米LC和CEC实现凝集素亲和色谱(LAC)。正性整料(即具有阳离子位点的整料)在nano-LC中提供了相对较高的磁导率,但缺乏可预测的EOF大小和方向,而中性整料则在nano-LC中的合理磁导率与CEC中的可预测EOF之间提供了很好的折衷方案。凝集素亲和性纳米LC可以富集固定化凝集素识别的具有相似N-聚糖的不同糖蛋白类别,而凝集素亲和力CEC由于电荷质量比的差异,可以同时捕获和分离不同的糖蛋白。而且,该研究首次证明了串联使用凝集素毛细管柱(即串联柱)的耦合,以使用CEC模式通过LAC增强糖蛋白的分离。此外,以偶联柱形式,给定糖蛋白的糖型易于分离。

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