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Plasmonic nanodisc arrays on calcinated titania for multimodal analysis of phosphorylated peptides

机译:煅烧二氧化钛上的等离子纳米圆盘阵列,用于磷酸化肽段的多峰分析

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A hybrid material of gold nanodiscs on a calcinated titania nanofilm that allows for selective quantitative and qualitative characterization of surface-enriched phosphopeptides has been designed and reported. Fabrication was realized through a combination of layer-by-layer deposition and high temperature calcination for the titania, and hole-mask colloidal lithography for the plasmonic nanostructures. The morphology of the resulting titania material was rigorously characterized, exhibiting substantially decreased surface roughness, which allows for lithographic fabrication of plasmonic nanostructures. Moreover, high specificity in adsorption and enrichment of phosphopeptides was exhibited, which was verified by LSPR shifts and matching peaks under mass spectrometric analysis. The construction of these biochips should inform other combinatorial nanofabrication techniques, in addition to allowing future phosphoproteomic analyses to be performed in a time and resource-efficient manner.
机译:已经设计并报道了煅烧二氧化钛纳米膜上金纳米盘的杂化材料,该材料可以选择性地对表面富集的磷酸肽进行定量和定性表征。通过二氧化钛的逐层沉积和高温煅烧以及等离激元纳米结构的孔掩膜胶体光刻技术的结合来实现制造。严格表征了所得二氧化钛材料的形态,表现出明显降低的表面粗糙度,这允许对等离激元纳米结构进行光刻制造。而且,在磷酸肽的吸附和富集方面表现出高特异性,这在质谱分析下通过LSPR位移和匹配峰得到了验证。除了允许以时间和资源高效的方式进行未来的磷酸化蛋白质组学分析外,这些生物芯片的构建还应为其他组合纳米制造技术提供参考。

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