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基于罗丹明类染料平台的 Hg2+ 的近红外和比率荧光探针的构建。

Construction of NIR and ratiometric fluorescent probe for Hg2+ based on a rhodamine-inspired dye platform.

机构信息

School of Chemistry and Chemical Engineering, Shanxi University, 92 Wucheng Road, Taiyuan 030006, China.

出版信息

Analyst. 2013 May 7;138(9):2654-60. doi: 10.1039/c3an00061c.

Abstract

A rhodamine-inspired fluorescence dye (2) bearing 7-diethylaminocoumarin fluorophore was designed as a platform for the construction of an NIR and ratiometric fluorescent probe. The ring-open form of 2 shows NIR absorption and emission; however, its ring-closed form displays the visible absorption and emission because an intact 7-diethylaminocoumarin fluorophore was involved in the structure, providing the basis for an NIR and ratiometric fluorescent platform based on the spirocyclization-induced fluorescence switching mechanism. With the platform, we developed a novel NIR and ratiometric fluorescent probe R1, a thiolactone of 2, for sensing Hg2+, an environmentally and biologically concerned species. R1 displays an emission peak with the maximum at 480 nm, which is the typical emission of 7-diethylaminocoumarin moiety; however, upon addition of Hg2+ ions, the emission intensity at 480 nm gradually decreased with the simultaneous appearance of a new NIR emission band centred at 695 nm. Thus, the Hg2+-promoted ratiometric fluorescence response can be realized. The high selectivity towards Hg2+ over various cations and the high stability in a wide pH range of 1–12 indicate its potential for applications in biological systems. The subsequent cell imaging experiment revealed that R1 is cell permeable, and could be employed for ratiometric fluorescence imaging of Hg2+ in living cells.

摘要

一种基于罗丹明的荧光染料(2),带有 7-二乙氨基香豆素荧光团,被设计为构建近红外和比率荧光探针的平台。2 的开环形式显示近红外吸收和发射;然而,其闭环形式显示可见吸收和发射,因为完整的 7-二乙氨基香豆素荧光团参与了结构,为基于螺环化诱导荧光开关机制的近红外和比率荧光平台提供了基础。基于该平台,我们开发了一种新型的近红外和比率荧光探针 R1,它是 2 的硫内酯,用于检测 Hg2+,这是一种环境和生物关注的物种。R1 显示出最大发射峰在 480nm 的发射峰,这是 7-二乙氨基香豆素部分的典型发射;然而,加入 Hg2+离子后,480nm 处的发射强度逐渐降低,同时出现新的近红外发射带,中心位于 695nm。因此,可以实现 Hg2+促进的比率荧光响应。R1 对 Hg2+具有高选择性,对各种阳离子具有高选择性,在 1-12 的宽 pH 范围内具有高稳定性,表明其在生物系统中的应用潜力。随后的细胞成像实验表明,R1 具有细胞通透性,可用于活细胞中 Hg2+的比率荧光成像。

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