Department of Chemistry, Fudan University, Shanghai, 200433, China.
First People's Hospital of Fuzhou, Jiangxi, 344000, China.
Talanta. 2021 Nov 1;234:122713. doi: 10.1016/j.talanta.2021.122713. Epub 2021 Jul 12.
Glycopeptidome represents reliable predictors of physiological and pathological status. Obstructions mainly including low abundance of endogenous glycopeptides and varied interference necessitate glycopeptide enrichment prior to MS analysis. Inspired by the prevalence of hydrophilic interaction chromatography for glycopeptide enrichment, a novel magnetic mesoporous silica nanomaterial (FeO@mSiO-TSG) with strongly hydrophilic property was developed through a one-pot method. In this work, the gluconamide-containing organosilane is innovatively proposed to directly serve as the strongly hydrophilic silica source for fabrication of hydrophilic mesoporous silica nanomaterial for glycopeptidomics research. Apart from excellent hydrophilicity, FeO@mSiO-TSG also was equipped with large specific surface area, ordered mesopore channels and great magnetic responsiveness. With all the advantages, FeO@mSiO-TSG displayed remarkable size-exclusion effect and considerable reusability. Moreover, combined with nano-LC-MS/MS, the glycopeptidome of serum from breast cancer patients was analyzed comprehensively, which showed noteworthy difference from healthy serum through gene ontology analysis, indicating great potential of the approach for glycopeptidomics research.
糖肽组学代表了生理和病理状态的可靠预测因子。主要的障碍包括内源性糖肽的丰度低和各种干扰,这就需要在 MS 分析之前进行糖肽富集。受亲水相互作用色谱法用于糖肽富集的普遍性启发,通过一锅法开发了一种新型磁性介孔硅纳米材料(FeO@mSiO-TSG),具有很强的亲水性。在这项工作中,创新性地提出了含有葡糖酰胺的有机硅烷,直接作为亲水性硅源,用于制备用于糖肽组学研究的亲水性介孔硅纳米材料。除了出色的亲水性外,FeO@mSiO-TSG 还具有大的比表面积、有序的介孔通道和出色的磁响应性。凭借所有这些优势,FeO@mSiO-TSG 表现出显著的排阻效应和相当高的可重复使用性。此外,通过与纳升 LC-MS/MS 结合,全面分析了乳腺癌患者血清中的糖肽组,通过基因本体分析显示与健康血清有明显差异,表明该方法在糖肽组学研究中具有巨大潜力。