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Multi layer Hydrophilic Poly(phenol-formaldehyde resin)-Coated Magnetic Graphene for Boronic Acid Immobilization as a Novel Matrix for Glycoproteome Analysis

机译:用于硼酸固定的多层亲水聚酚醛树脂涂层磁性石墨烯作为糖蛋白组学分析的新型基质

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摘要

Capturing glycopeptides selectively and efficiently from mixed biological samples has always been critical for comprehensive and in-depth glycoproteomics analysis, but the lack of materials with superior capture capacity and high specificity still makes it a challenge. In this work, we introduce a way first to synthesize a novel boronic-acid-functionalized magnetic graphene@phenolic-formaldehyde resin multilayer composites via a facile process. The as-prepared composites gathered excellent characters of large specific surface area and strong magnetic responsiveness of magnetic graphene, biocompatibility of resin, and enhanced affinity properties of boronic acid. Furthermore, the functional graphene composites were shown to have low detection limit (1 fmol) and good selectivity, even when the background nonglycopeptides has a concentration 100 fold higher. Additionally, enrichment efficiency of the composites was still retained after being used repeatedly (at least three times). Better yet, the practical applicability of this approach was evaluated by the enrichment of human serum with a low sample volume Of 1 mu L. All the results have illustrated that the magG@PF@APB has a great potential in glycoproteome analysis of complex biological samples.
机译:从混合生物样品中选择性和有效地捕获糖肽一直是进行全面,深入的糖蛋白组学分析的关键,但是缺乏具有出色捕获能力和高特异性的材料仍然是一个挑战。在这项工作中,我们首先介绍了一种通过简便的方法合成新型硼酸官能化磁性石墨烯@酚醛树脂多层复合材料的方法。所制备的复合材料具有优异的特性,如大比表面积和磁性石墨烯的强磁响应性,树脂的生物相容性以及增强的硼酸亲和性。此外,即使当背景非糖肽的浓度高出100倍时,功能性石墨烯复合物也显示出低检测限(1 fmol)和良好的选择性。另外,在重复使用(至少三遍)后,复合材料的富集效率仍然得以保持。更好的是,该方法的实际适用性是通过富集1μL的低样品量的人血清来评估的。所有结果表明magG @ PF @ APB在复杂​​生物样品的糖蛋白分析中具有巨大潜力。

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