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Sensitive SERS glucose sensing in biological media using alkyne functionalized boronic acid on planar substrates

机译:在平面基质上使用炔烃官能化的硼酸在生物介质中进行灵敏的SERS葡萄糖感测

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摘要

In this work, we propose a novel glucose binding mechanism on a highly sensitive SERS substrate,in order to overcome challenges in specific glucose detection in bio-fluids. We make use of phenylboronic acid as a receptor for saccharide capture onto the substrate and the ability of the captured glucose molecule to undergo secondary binding with an alkyne-functionalized boronic acid to form a glucose-allcyne-boronic acid complex. The formation of this complex shows high selectivity for glucose, over other saccharides. In addition, the alkyne group of the alkyne-functionalized boronic acid exhibits a distinct Raman peak at 1996 cm~(-1) in a biological silent region (1800-2800 cm~(-1)) where most endogenous molecules, including glucose, show no Raman scattering, thus offering a high sensitivity over other SERS glucose sensing. The substrate offers long-term stability, as well as high SERS enhancement to the glucose-alkyne boronic acid complex on substrate. In addition, the reversibility of SERS signals at various incubation stages also shows reusability capabilities, whereas positive results in clinical urine samples demonstrate clinical feasibility. All these strongly suggest that this newly developed SERS-based assay offers great potential in glucose sensing.
机译:在这项工作中,我们提出了一种在高度敏感的SERS底物上的新型葡萄糖结合机制,以克服生物流体中特定葡萄糖检测的挑战。我们利用苯基硼酸作为糖捕获到基质上的受体,以及捕获的葡萄糖分子与炔基官能化的硼酸进行二次结合以形成葡萄糖-炔烃-硼酸复合物的能力。与其他糖类相比,该复合物的形成显示出对葡萄糖的高选择性。此外,炔烃官能化硼酸的炔烃基团在一个生物沉默区(1800-2800 cm〜(-1))的1996 cm〜(-1)处表现出明显的拉曼峰,在该区域中,大多数内源性分子(包括葡萄糖,显示没有拉曼散射,因此比其他SERS葡萄糖感测具有更高的灵敏度。底物提供了长期稳定性,以及底物上的葡萄糖-炔烃硼酸复合物的高SERS增强。此外,SERS信号在不同孵育阶段的可逆性也显示出可重复使用的能力,而临床尿液样本中的阳性结果证明了其临床可行性。所有这些强烈表明,这种新开发的基于SERS的测定法在葡萄糖感测方面具有巨大潜力。

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