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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Designed synthesis of Graphene@titania@mesoporous silica hybrid material as size-exclusive metal oxide affinity chromatography platform for selective enrichment of endogenous phosphopeptides
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Designed synthesis of Graphene@titania@mesoporous silica hybrid material as size-exclusive metal oxide affinity chromatography platform for selective enrichment of endogenous phosphopeptides

机译:设计合成石墨烯@二氧化钛@介孔二氧化硅杂化材料,作为尺寸排他的金属氧化物亲和色谱平台,用于选择性富集内源性磷酸肽

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摘要

In this work, a novel size-exclusive metal oxide affinity chromatography (SE-MOAC) platform was built for phosphoproteome research. The operation for preparing graphene @titania @mesoporous silica nanohybrids (denoted as G@TiO2@mSiO(2)) was facile and easy to conduct by grafting titania nanoparticles on polydopamine (PD)-covered graphene, following a layer of mesoporous silica was coated on the outermost layer. The G@TiO2@mSiO(2) nanohybrids exhibited high sensitivity with a low detection limit of 5 amol/mu L (a total amount of 1 fmol) and high selectivity for phosphopeptides at a mass ratio of phosphopeptides to non-phosphopeptides (1:1000). The size-exclusive capability of the nanohybrids were also demonstrated by enriching the phosphopeptides from the mixture of Bovine Serum Albumin (BSA), alpha-casein, and beta-casein digests with a high mass ratio (beta-casein digests: alpha-casein: BSA, 1:500:500), which was attributed to the large surface area and ordered mesoporous channels. In addition, the G@TiO2@ mSiO(2) nanohybrids were employed to capture the endogenous phosphopeptides from human serum successfully. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,建立了一种新型的尺寸排他性金属氧化物亲和色谱(SE-MOAC)平台,用于磷酸化蛋白质组研究。制备石墨烯@二氧化钛@介孔二氧化硅纳米杂化物(表示为G @ TiO2 @ mSiO(2))的操作很容易,并且易于操作,通过在涂覆了介孔二氧化硅层后将二氧化钛纳米颗粒接枝到聚多巴胺(PD)覆盖的石墨烯上来进行。在最外层。 G @ TiO2 @ mSiO(2)纳米杂化物表现出高灵敏度,检测限低至5 amol /μL(总量为1 fmol),并且在磷肽与非磷肽的质量比下对磷肽具有高选择性(1: 1000)。通过从牛血清白蛋白(BSA),α-酪蛋白和β-酪蛋白消化物的混合物中以高质量比富集磷酸肽,也证明了纳米杂交体的大小排他性(β-酪蛋白消化物:α-酪蛋白: BSA,1:500:500),这归因于较大的表面积和有序的介孔通道。此外,G @ TiO2 @ mSiO(2)纳米杂种被用来成功地从人血清中捕获内源性磷酸肽。 (C)2015 Elsevier B.V.保留所有权利。

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