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在活细胞中对 Cd(II) 离子具有高效且非常选择性的双重模式化学传感器。

Efficient and very selective dual mode chemosensor for Cd(II) ions in live cells.

机构信息

Department of Food Science and Technology, Jiangsu Agri-animal Husbandry Vocational College, Taizhou City 225300, China.

Department of Food Science and Technology, Jiangsu Agri-animal Husbandry Vocational College, Taizhou City 225300, China.

出版信息

J Photochem Photobiol B. 2020 Jan;202:111717. doi: 10.1016/j.jphotobiol.2019.111717. Epub 2019 Nov 21.

Abstract

A sensitive dual mode chemosensor NS-1 comprising Nitrobenzoxadiazole and salicylhydrazide conjugate has been synthesized via single step reaction. The probe NS-1 is characterized by analytical techniques such as multi nuclear NMR techniques and Mass spectrometry. The probe is showing a strong change in color from yellow to red on treatment of Cd(II) ions, interestingly its shows bright "Switch-ON" fluorescence state upon binding of Cd ions in buffer solution whereas other cations did not showed any color change as well as fluorescent change. Interestingly the probe NS-1 did not results in the any color and fluorescence change with the adding together of Zn(II) ions, hence the probe is able to differentiate between Cd(II) ions from Zn(II). Further the color change and turn-on fluorescence can be rationalized by the interruption of internal charge transfer upon binding of Cd(II) ions with NS-1. The Internal charge transfer disturbance led to fluorescence change of the receptor NS-1 upon addition of Cd has been further supported by TD-DFT calculations. The limit of detection was found to be 6.31 nano molar. The association constant was found to be 7.97*10 M using Benesi-Hildebrand plot method. MTT assay suggesting that the probe NS-1 is least toxic to cells and it will be widely applicable to image Cd(II) ions in living cells via fluorescence imaging.

摘要

一种灵敏的双模式化学传感器 NS-1,由硝基苯并恶二唑和水杨醛缩肼通过一步反应合成。探针 NS-1 通过多核 NMR 技术和质谱等分析技术进行了表征。探针在处理 Cd(II)离子时,颜色从黄色强烈变为红色,有趣的是,它在缓冲溶液中与 Cd 离子结合时表现出明亮的“开启”荧光状态,而其他阳离子则没有任何颜色和荧光变化。有趣的是,探针 NS-1 与 Zn(II)离子一起加入时不会导致任何颜色和荧光变化,因此探针能够区分 Cd(II)离子和 Zn(II)离子。进一步的研究表明,颜色变化和荧光开启可以通过内部电荷转移的中断来解释。内电荷转移干扰导致受体 NS-1 在加入 Cd 后发生荧光变化,这一现象进一步得到了 TD-DFT 计算的支持。通过 Benesi-Hildebrand 图法,检测限为 6.31 纳摩尔。通过 Benesi-Hildebrand 图法,发现络合常数为 7.97*10^5 M。MTT 测定表明,探针 NS-1 对细胞的毒性最小,它将广泛适用于通过荧光成像对活细胞中的 Cd(II)离子进行成像。

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