首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A novel double-component MOAC honeycomb composite with pollen grains as a template for phosphoproteomics research
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A novel double-component MOAC honeycomb composite with pollen grains as a template for phosphoproteomics research

机译:花粉粒为模板的新型双组份MOAC蜂窝复合材料,用于磷酸化蛋白质组学研究

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摘要

The enrichment and separation of phosphopeptides from mixed biological samples is a technologically very significance, but highly challenging work. Current designed materials are mainly based on the broad and effective adsorptive character of metal oxide affinity chromatography (MOAC). Though significant progress has been made in the enrichment of phosphopeptides with MOAC material, there are chances for further development. In this study, a novel pollen-based MOAC honeycomb material was firstly explored in which the suitable hydrophilic channels preferentially enrich much more endogenous phosphopeptides than nonphosphopeptides or proteins while doping binary metal oxides at the atomic level and the ultra-high specific surface area have further allowed it to possess more effective active sites. Based on these unique features, the pollen-based material exhibited high selectivity for beta-casein (mass ratio of beta-casein/BSA, 1:1500), ultra-low detection limit (0.1 fmol), desirable reusability. Moreover, the bionics MOAC composites were investigated in the enrichment of phosphopeptides from nonfat milk, human serum (male and female at the same age) and mice liver, results of which indicate the great potential of the composite for the phosphoproteome analysis of complex biological samples through the cheap and environmentally friendly process. (c) 2016 Elsevier B.V. All rights reserved.
机译:从混合的生物样品中富集和分离磷酸肽是一项技术上非常重要的工作,但具有很高的挑战性。当前设计的材料主要基于金属氧化物亲和色谱(MOAC)的广泛有效的吸附特性。尽管在用MOAC物质富集磷酸肽方面已取得重大进展,但仍有进一步发展的机会。在这项研究中,首先探索了一种新型的基于花粉的MOAC蜂窝材料,其中合适的亲水性通道比非磷酸肽或蛋白质优先富集更多的内源性磷酸肽,同时在原子水平上掺杂二元金属氧化物,并且超高比表面积进一步增大。使其拥有更有效的活动站点。基于这些独特的特征,基于花粉的材料对β-酪蛋白具有高选择性(β-酪蛋白/ BSA的质量比为1:1500),超低检测限(0.1 fmol),理想的可重复使用性。此外,对仿生MOAC复合材料进行了富脂牛奶,人血清(同一年龄的雄性和雌性)和小鼠肝脏中磷酸肽富集的研究,结果表明该复合材料在复杂生物样品的磷酸化蛋白质组分析中具有巨大的潜力。通过廉价和环保的过程。 (c)2016 Elsevier B.V.保留所有权利。

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