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Fluorographene nanosheets: a new carbon-based matrix for the detection of small molecules by MALDI-TOF MS

机译:荧光素纳米片:通过MALDI-TOF MS检测小分子的新碳基矩阵

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摘要

Fluorographene nanosheets (FG) were synthesized via one-pot chloroform-mediated sonochemical exfoliation under ambient conditions. For the first time, this material served as a novel matrix for the detection of small molecules by negative ion MALDI-TOF MS. The structural characterization and ionization mechanism of FG were illustrated. The unique properties of FG endow it with properties such as low background, excellent chemical compatibility and homogeneity over conventional carbon based matrices. Most significantly, application of FG as matrix resolved the contamination problem of conventional carbon based matrices to ion source. With the association of FG, a variety of small molecules containing amino acids, peptides, small metabolites, drugs and organonitrogen compounds were analyzed. The developed method was found to have excellent feasibility with biosystems. Based on this, qualitative analysis of sialic acid in human saliva, melatonin in human urine and in situ analysis of MCF-7 cells were done, besides, quantification of anti-cancer drug in human serum and uric acid in human urine were displayed. This work extends the application fields of FG and provides a good candidate of matrix for MALDI-TOF MS detection of small molecules.
机译:在环境条件下通过一锅氯仿介导的有多种子化学剥离合成荧光蛋白纳米片(FG)。本质首次,该材料用作通过负离子MALDI-TOF MS检测小分子的新型基质。图示了FG的结构表征和电离机理。 FG的独特性质赋予其特性,如低背景,优异的化学兼容性和均匀性在常规碳基矩阵上。最显着地,将FG作为矩阵的应用解决了常规碳基矩阵的污染问题到离子源。随着FG的缔合,分析了含有氨基酸,肽,小代谢物,药物和有机核化合物的各种含有氨基酸的小分子。发现开发方法具有与生物系统的优异可行性。基于这一,对人类唾液中唾液酸的定性分析,进行了人类尿液中的褪黑激素和MCF-7细胞的原位分析,展开了人类血清中抗癌药物的定量和人类尿液中的定量。这项工作扩展了FG的应用领域,并为MALDI-TOF MS检测的小分子提供了良好的候选者。

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