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Development of a Rhodamine-Rhodanine-Based Fluorescent Mercury Sensor and Its Use to Monitor Real-Time Uptake and Distribution of Inorganic Mercury in Live Zebrafish Larvae

机译:基于若丹明-若丹宁的荧光汞传感器的开发及其用于监测活斑马鱼幼虫中无机汞的实时吸收和分布

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We introduce a new rhodamine-rhodanine-based "turn-on" fluorescent sensor (RR1) and describe its application for detection of mercury, including in solution, in live cells, and in a living vertebrate organism. The sensor RR1, which is a one-pot synthesis from rhodamine B, undergoes a rapid and irreversible 1:1 stoichiometric reaction with Hg~(2+) in aqueous medium. Using fluorescence correlation spectroscopy (FCS), RR1 was shown to detect the presence of as low as a 0.5 pM concentration of Hg~(2+). It may also lend itself to tagging with biomolecules and nanoparticles, leading to the possibility of organelle-specific Hg detection. Results of experiments with mammalian cells and zebrafish show that RR1 is cell and organism permeable and that it responds selectively to mercury ions over other metal ions. In addition, real-time monitoring of inorganic mercury ion uptake by cells and live zebrafish using this chemosensor shows that saturation of mercury ion uptake occurs within 20-30 min in cells and organisms. We also demonstrate the acquisition of high-resolution real-time distribution maps of inorganic mercury (Hg~(2+)) in the zebrafish brain by using a simple fluorescence confocal imaging technique.
机译:我们介绍了一种新的基于若丹明-若丹宁的“开启式”荧光传感器(RR1),并描述了其用于检测汞的应用,包括溶液中,活细胞中以及活的脊椎动物中的汞。传感器RR1是罗丹明B的一锅法合成物,在水性介质中与Hg〜(2+)进行了快速且不可逆的1:1化学计量反应。使用荧光相关光谱法(FCS),RR1被证明可检测到低至0.5 pM浓度的Hg〜(2+)。它也可能有助于生物分子和纳米颗粒的标记,从而导致细胞器特异性Hg检测的可能性。哺乳动物细胞和斑马鱼的实验结果表明,RR1具有细胞和生物体可渗透性,并且它对汞离子的反应高于其他金属离子。另外,使用该化学传感器实时监测细胞和活斑马鱼对无机汞离子的吸收,结果表明,细胞和生物体中汞离子的吸收饱和发生在20-30分钟内。我们还演示了通过使用简单的荧光共聚焦成像技术获得的斑马鱼脑中无机汞(Hg〜(2+))的高分辨率实时分布图。

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