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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Carbon Nanoparticles and Graphene Nanosheets as MALDI Matrices in Glycomics: a New Approach to Improve Glycan Profiling in Biological Samples
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Carbon Nanoparticles and Graphene Nanosheets as MALDI Matrices in Glycomics: a New Approach to Improve Glycan Profiling in Biological Samples

机译:碳纳米粒子和石墨烯纳米片作为MALDI基质在族中:一种改善生物样品中甘草谱的新方法

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Glycomics continues to be a highly dynamic and interesting research area due to the need to comprehensively understand the biological attributes of glycosylation in many important biological functions such as the immune response, cell development, cell differentiation/adhesion, and host-pathogen interactions. Although matrix-assisted laser desorption ionization (MALDI) mass spectrometry (MS) has proven to be suitable for glycomic profiling studies, there is a need for improved sensitivity in the detection of native glycans, which ionize inefficiently. In this study, we investigated the efficiencies of graphene nanosheets (GNs) and carbon nanoparticles (CNPs) as MALDI matrices and co-matrices in glycan profiling. Our results indicated an enhancement of signal intensity by several orders of magnitude upon using GNs and CNPs in MALDI analysis of N-glycans derived from a variety of biological samples. Interestingly, increasing the amounts of CNPs and GNs improved not only the signal intensities but also prompted in-source decay (ISD) fragmentations, which produced extensive glycosidic and cross-ring cleavages. Our results indicated that the extent of ISD fragmentation could be modulated by CNP and GN concentrations, to obtain MS2 and pseudo-MS3 spectra. The results for glycan profiling in high salt solutions confirmed high salt-tolerance capacities for both CNPs and GNs. Finally, the results showed that by using CNPs and GNs as co-matrices, DHB crystal formation was more homogeneous which improved shot-to-shot reproducibility and sensitivity.
机译:由于需要全面了解糖基化在许多重要的生物学功能,例如免疫应答,细胞发育,细胞分化/粘附和宿主 - 病原体相互作用的许多重要生物学功能中,糖类仍然是一种高度动态和有趣的研究领域。尽管基质辅助激光解吸电离(MALDI)质谱(MS)已被证明适用于糖型分析研究,但需要改善对天然聚糖的检测中的敏感性,这是效率低下的。在这项研究中,我们研究了石墨烯纳米片(GNS)和碳纳米粒子(CNP)作为MALDI基质的效率和聚糖谱中的共族基质。我们的结果表明,在使用GNS和CNPS在来自各种生物样品的N-聚糖的MALDI分析中,在MALDI分析中提高了信号强度的提高。有趣的是,增加CNP和GNS的量不仅改善了信号强度,而且提示出来的源极衰变(ISD)碎片,其产生了广泛的糖苷和交叉环裂解。我们的结果表明,ISD碎片的程度可以通过CNP和GN浓度调节,获得MS2和假MS3光谱。高盐溶液中聚糖分析的结果证实了CNP和GNS的高耐盐能力。最后,结果表明,通过使用CNP和GNS作为共矩阵,DHB晶体形成更均匀,改善了拍摄到射击再现性和灵敏度。

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