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基于荧光共振能量转移的比率荧光探针,用于使用双发射二氧化硅包覆量子点混合物检测Zn(2+)。

Fluorescence resonance energy transfer-based ratiometric fluorescent probe for detection of Zn(2+) using a dual-emission silica-coated quantum dots mixture.

作者信息

Wu Liang, Guo Qing-Sheng, Liu Yu-Qian, Sun Qing-Jiang

出版信息

Anal Chem. 2015 May 19;87(10):5318-23. doi: 10.1021/acs.analchem.5b00514. Epub 2015 May 8.

Abstract

In this work, we report the design and application of a new ratiometric fluorescent probe, which contains different-colored quantum dots (QDs) as dual fluorophores, ultrathin silica shell as spacer, and meso-tetra(4-sulfonatophenyl)porphine dihydrochloride (TSPP) as receptor, for Zn(2+) detection in aqueous solution and living cells. In the architecture of our designed probe, the silica shell plays the key roles in controlling the locations of QDs, TSPP, and Zn(2+), preventing the direct contact between QDs and Zn(2+) but affording fluorescence resonance energy transfer (FRET) from dual-color QDs to TSPP. In the presence of Zn(2+), the analyte-receptor reaction changes the absorption in the range of the Q-band of TSPP and accordingly the efficiencies of two independent FRET processes from the dual-colored QDs to the acceptor, respectively, leading to fluorescence enhancement of green-emission QDs whereas fluorescence quenching of yellow-emission QDs. Benefiting from the well-resolved dual emissions from different-colored QDs and the large range of emission ratios, the probe solution displays continuous color changes from yellow to green, which can be clearly observed by the naked eye. Under physiological conditions, the probe exhibits a stable response for Zn(2+) from 0.3 to 6 μM, with a detection limit of 60 nM in aqueous solutions. With respect to single-emission probes, this ratiometric probe has demonstrated to feature excellent selectivity for Zn(2+) over other physiologically important cations such as Fe(3+) and Cu(2+). It has been preliminarily used for ratiometric imaging of Zn(2+) in living cells with satisfying resolution.

摘要

在本工作中,我们报道了一种新型比率荧光探针的设计与应用,该探针包含不同颜色的量子点(QDs)作为双荧光团、超薄二氧化硅壳作为间隔层以及四(4 - 磺酸苯基)卟啉二盐酸盐(TSPP)作为受体,用于水溶液和活细胞中Zn(2+)的检测。在我们设计的探针结构中,二氧化硅壳在控制量子点、TSPP和Zn(2+)的位置方面起着关键作用,防止量子点与Zn(2+)直接接触,但能实现从双色量子点到TSPP的荧光共振能量转移(FRET)。在Zn(2+)存在的情况下,分析物 - 受体反应改变了TSPP的Q带范围内的吸收,相应地分别改变了从双色量子点到受体的两个独立FRET过程的效率,导致绿色发射量子点的荧光增强,而黄色发射量子点的荧光猝灭。受益于不同颜色量子点的清晰双发射以及较大的发射比率范围,探针溶液呈现出从黄色到绿色的连续颜色变化,肉眼可清晰观察到。在生理条件下,该探针对0.3至6 μM的Zn(2+)表现出稳定的响应,在水溶液中的检测限为60 nM。相对于单发射探针,这种比率探针已证明对Zn(2+)具有优于其他生理重要阳离子(如Fe(3+)和Cu(2+))的优异选择性。它已初步用于活细胞中Zn(2+)的比率成像,分辨率令人满意。

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