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首页> 外文期刊>New Journal of Chemistry >A pyrene based Schiff base probe for selective fluorescence turn-on detection of Hg2+ ions with live cell application
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A pyrene based Schiff base probe for selective fluorescence turn-on detection of Hg2+ ions with live cell application

机译:基于live的席夫碱探针,用于活细胞应用选择性荧光开启检测Hg2 +离子

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摘要

A novel pyrene based free thiol containing a Schiff base derivative PT1 was synthesized via a one-pot reaction and utilized as a fluorescence turn-on probe for Hg2+ ion detection along with live cell imaging. PT1 in DMSO/H2O (v/v = 7/3; pH 7.0) showed fluorescence turn-on response to Hg2+ ions, via chelation enhanced fluorescence (CHEF) through excimer PT1-PT1* formation. The 2:1 stoichiometry of the sensor complex PT1 + Hg2+ was calculated from the Job plot based on UV-Vis absorption titrations. In addition, the binding sites of the sensor complex PT1 + Hg2+ were well established from the H-1 NMR titrations and were supported by the ESI-mass analysis and fluorescence reversibility of PT1 + Hg2+ via the consequent addition of Hg2+ ions and EDTA. The detection limit (LOD) and the association constant (K-a) values of the PT1 + Hg2+ complex were calculated by standard deviation and linear fittings and from the Benesi-Hildebrand plot, respectively. Moreover, the quantum yield (Phi), time resolved photoluminescence (TRPL) decay constant (tau) changes, pH effect and density functional theory (DFT) studies were investigated for the PT1 + Hg2+ sensor system. More importantly, confocal fluorescence microscopy imaging in Hela cells showed that PT1 could be used as an effective fluorescent probe for detecting Hg2+ in living cells.
机译:通过一锅反应合成了含有席夫碱衍生物PT1的新型based基游离硫醇,并将其用作荧光灯开启探针,用于Hg2 +离子检测以及活细胞成像。 DMSO / H2O(v / v = 7/3; pH 7.0)中的PT1通过受激准分子PT1-PT1 *的螯合增强荧光(CHEF)表现出对Hg2 +离子的荧光开启响应。传感器复合物PT1 + Hg2 +的化学计量比为2:1,是根据基于UV-Vis吸收滴定的Job曲线计算得出的。此外,通过H-1 NMR滴定可以很好地确定传感器复合物PT1 + Hg2 +的结合位点,并通过随后加入Hg2 +离子和EDTA的ESI质量分析和PT1 + Hg2 +的荧光可逆性来支持。 PT1 + Hg2 +配合物的检出限(LOD)和缔合常数(K-a)值分别通过标准差和线性拟合并从Benesi-Hildebrand图计算得出。此外,对PT1 + Hg2 +传感器系统的量子产率(Phi),时间分辨光致发光(TRPL)衰减常数(tau)变化,pH效应和密度泛函理论(DFT)进行了研究。更重要的是,Hela细胞的共聚焦荧光显微镜成像显示PT1可以用作检测活细胞中Hg2 +的有效荧光探针。

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