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Biomineralization synthesis of a near-infrared fluorescent nanoprobe for direct glucose sensing in whole blood

机译:生物矿化的合成一个近红外荧光nanoprobe直接葡萄糖传感在全血

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A near-infrared (NIR) fluorescent nanoprobe that enables to circumvent the interference of background absorption and fluorescence in whole blood was developed for the direct sensing of blood glucose. Here, NIR fluorescent protein (iRFP) and glucose oxidase (GOx) were collectively deployed as the templates for the biomineralization of Mn2+ to prepare a NIR fluorescent nanoprobe (iRFP-GOx-MnO2 nanoparticles, iRGMs), in which the fluorescence of iRFP was effectively quenched by MnO(2)via energy transfer. When the iRGMs were mixed with whole blood samples, GOx can convert blood glucose into gluconic acid, as well as H2O2, which will reduce MnO2 and decompose the iRGMs. As a result, the NIR fluorescence of iRFPs was restored, providing a fluorometric assay for the direct detection of blood glucose. Owing to the high efficiency of the cascade reaction and the low background interference of the NIR fluorescence signal, accurate and rapid analysis of the glucose levels in whole blood samples was achieved using the iRGMs. Moreover, an iRGM-based paper device that only requires 5 microliters of samples was also demonstrated in the direct assay of blood glucose without any pretreatment, affording an alternative approach for the accurate monitoring of blood glucose levels.
机译:近红外(NIR)荧光nanoprobe可以规避的干扰背景吸收和荧光血液是发达的直接感知血糖。(iRFP)和葡萄糖氧化酶(气态氧)整体部署的模板生物矿化的Mn2 +准备一个近红外光谱荧光nanoprobe (iRFP-GOx-MnO2纳米粒子,iRGMs),荧光有效地扑灭了iRFP MnO(2)通过能量转移。全血样品,气态氧血液可以转换葡萄糖为葡糖酸,以及过氧化氢,这将减少iRGMs汇总和分解。因此,近红外荧光iRFPs恢复,提供的荧光测定直接检测血糖。和效率高的级联反应近红外光谱的低背景干扰荧光信号,准确、快速分析全血血糖水平的样本通过使用iRGMs。纸装置,只需要5毫升也证明了直接测定样品的血糖没有任何预处理,提供的替代方法准确的监测血糖水平。

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