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基于钒酸盐的比率型荧光探针的设计与合成用于顺序识别 Cu 离子和生物硫醇。

Design and synthesis of a vanadate-based ratiometric fluorescent probe for sequential recognition of Cu ions and biothiols.

机构信息

Jiangxi Key Laboratory of Industrial Ceramics, Pingxiang University, Pingxiang 337055, China.

出版信息

Analyst. 2019 Dec 2;144(24):7368-7377. doi: 10.1039/c9an01518c.

DOI:10.1039/c9an01518c
PMID:31663528
Abstract

A novel YVO4:Eu3+@CDs core-shell nanomaterial with two main emission peaks at 405 and 617 nm was synthesized through a simple mixing method, in which the carbon quantum dots (CDs) self-assembled with the YVO4:Eu3+ nanoparticle, due to the high affinity of oxygen-containing groups such as -COOH or -OH of CDs to the metal ions on the surface of YVO4:Eu3+. The red fluorescence of YVO4:Eu3+@CDs located at 617 nm can be quenched by Cu2+ ions efficiently, while the blue emission remains invariable; based on this, we construct a ratio fluorescent probe YVO4:Eu3+@CDs for Cu2+ ion detection, in which the blue emission of CDs is selected as the reference signal, and the red emission of YVO4:Eu3+ acts as an output signal. Furthermore, the addition of biothiol recovers the quenched red fluorescence quickly, which can be completed in 18 minutes. Thus, YVO4:Eu3+@CDs can also be used as a 'turn on' ratio fluorescent probe for biothiol rapid detection. Taking l-cysteine (l-Cys) as the model, the fluorescence intensity of the 617 nm peak increases with increasing Cys, and the ratio of F617/F405 is linear to the concentration of Cys in the range of 0.1 μM to 10 μM with a detection limit of 41 nM. Compared with these single wavelength emission biothiol fluorescent probes, an obvious change in the fluorescence color from blue to pink can be conveniently observed by the naked eye under a UV lamp. Meanwhile, this ratiometric probe has also been demonstrated to be used for the visual identification of biothiols in real blood serum samples.

摘要

一种新型的 YVO4:Eu3+@CDs 核壳纳米材料,通过简单的混合方法合成,在该方法中,由于 CDs 中的含氧基团(如-COOH 或-OH)与 YVO4:Eu3+ 纳米粒子表面的金属离子具有高亲和力,因此 CDs 自组装在 YVO4:Eu3+ 纳米粒子上。YVO4:Eu3+@CDs 的红色荧光(位于 617nm)可以被 Cu2+离子有效猝灭,而蓝色发射保持不变;基于此,我们构建了一种比率荧光探针 YVO4:Eu3+@CDs 用于 Cu2+离子检测,其中选择 CDs 的蓝色发射作为参考信号,而 YVO4:Eu3+的红色发射作为输出信号。此外,添加生物硫醇可以快速恢复猝灭的红色荧光,这可以在 18 分钟内完成。因此,YVO4:Eu3+@CDs 也可以用作生物硫醇快速检测的“开启”比率荧光探针。以 l-半胱氨酸(l-Cys)为模型,617nm 峰的荧光强度随 Cys 的增加而增加,并且 F617/F405 的比值与 Cys 的浓度在 0.1 μM 至 10 μM 的范围内呈线性关系,检测限为 41 nM。与这些单波长发射生物硫醇荧光探针相比,通过肉眼在紫外灯下可以方便地观察到荧光颜色从蓝色到粉红色的明显变化。同时,该比率探针还已被证明可用于实际血清样本中生物硫醇的可视化识别。

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