首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A new FRET-based ratiometric fluorescence probe for hypochlorous acid and its imaging in living cells
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A new FRET-based ratiometric fluorescence probe for hypochlorous acid and its imaging in living cells

机译:一种用于次氯酸的新型FRET基比例荧光探针及其活细胞成像

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摘要

A novel ratiometric fluorescence probe for hypochlorous acid was constructed by coumarin and pyridinium fluorophore based on the Forster resonance energy transfer (FRET) and intramolecular charge transfer (ICT) platform, In this ICT/FRET system, the energy transfer efficiency is high to 94.3%. Moreover, the probe could respond to hypochlorous acid with high selectivity and sensitivity, and exhibited a large Stokes shift. It was interesting to find that the probe could recognize hypochlorous acid via a new mechanism, in which the alpha-position of carbonyl group was oxidized to form a diketone derivative. More importantly, the probe was successfully applied to the ratiometric imaging of both exogenous and endogenous hypochlorous acid in living RAW 264.7 cells, with low toxicity and high photo-stability.
机译:基于FORSTER共振能量转移(FRET)和分子内电荷转移(ICT)平台的COUMARIN和吡啶荧光团构建了用于次氯酸的新型比例荧光探针,在该ICT / FRET系统中,能量转移效率高达94.3% 。 此外,探针可以响应具有高选择性和敏感性的次氯酸,并且表现出大的斯托克斯偏移。 有趣的是,探针可以通过新机制识别次氯酸,其中羰基的α-氧化物氧化以形成Diketone衍生物。 更重要的是,探针成功地应用于生物原料264.7细胞中外源性和内源性次氯酸的比例成像,具有低毒性和高光稳定性。

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