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Coumarin Probe for Selective Detection of Fluoride Ions in Aqueous Solution and Its Bioimaging in Live Cells

机译:香豆素探针可选择性检测水溶液中的氟离子及其在活细胞中的生物成像

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摘要

We have synthesized novel coumarin-based fluorescent chemosensors for detection of fluoride ions in aqueous solution. The detection mechanism relied on a fluoride-mediated desilylation triggering fluorogenic reaction and a strong interaction between fluoride and the silicon center. In this work, the hydroxyl-decorated coumarins containing oxysilyl moiety have been synthesized through the aldehyde-functionalized coumarins. The optical responses toward fluoride, as well as aqueous stability studies of both aldehyde and hydroxyl functionalized coumarins, have been investigated. Due to the highest fluorescence enhancement upon the addition of fluoride and good stability in aqueous solution, the hydroxyl-decorated coumarin connected with the bulky tert-butyldiphenyloxysilyl group (-OSitBuPh2) has been selected for further investigation of its potential as a fluoride sensor. This hydroxyl-decorated coumarin can selectively sense fluoride ions in aqueous media (contain 0.8% MeCN) with desirable response times (40 min). The limit of detection of this compound was determined as 0.043 ppm, satisfying the standard fluoride level (0.7 ppm) in drinking water recommended by U.S. Department of Health and Human Services. The application of this silyl-capped coumarin derivative for fluoride analysis in collected water samples displayed satisfactory analytical accuracy (<5% error). Finally, this compound was successfully employed in fluorescence bioimaging of fluoride ions in human liver cancer cells, indicating its excellent cell permeability, ability to retain inside the living cells, and good stability under physiological conditions.
机译:我们已经合成了新颖的基于香豆素的荧光化学传感器,用于检测水溶液中的氟离子。检测机制依赖于氟化物介导的脱甲硅烷基化反应,引发荧光反应以及氟化物与硅中心之间的强相互作用。在这项工作中,已通过醛官能化的香豆素合成了含羟基甲硅烷基的羟基修饰香豆素。已经研究了对氟化物的光学响应以及醛和羟基官能化香豆素的水稳定性研究。由于添加氟化物后荧光增强效果最高,并且在水溶液中具有良好的稳定性,因此选择了与庞大的叔丁基二苯氧基甲硅烷基(-OSitBuPh2)连接的羟基修饰香豆素来进一步研究其作为氟化物传感器的潜力。这种羟基修饰的香豆素可以选择性地感测水性介质(包含0.8%MeCN)中的氟离子,具有理想的响应时间(40分钟)。该化合物的检出限确定为0.043 ppm,满足美国卫生和公共服务部建议的饮用水中标准氟化物含量(0.7 ppm)。该甲硅烷基封端的香豆素衍生物在收集的水样中进行氟化物分析的应用显示出令人满意的分析精度(误差<5%)。最后,该化合物已成功用于人类肝癌细胞中氟离子的荧光生物成像,表明其优异的细胞通透性,保留在活细胞内的能力以及在生理条件下的良好稳定性。

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