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基于荧光共振能量转移的比率型荧光细胞成像探针用于锌离子,以罗丹明螺环酰胺作为荧光团开关。

Efficient fluorescence resonance energy transfer-based ratiometric fluorescent cellular imaging probe for Zn(2+) using a rhodamine spirolactam as a trigger.

机构信息

State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry & Chemical Engineering, Hunan University, Changsha, 410082, PR China.

出版信息

Anal Chem. 2010 Apr 15;82(8):3108-13. doi: 10.1021/ac100376a.

Abstract

This letter described the design and synthesis of a novel fluorescein-appended rhodamine spirolactam derivative and its preliminary application as a ratiometric fluorescent cellular imaging probe for Zn(2+). The ratiometric fluorescent signal change of the probe is based on an intramolecular fluorescence resonance energy transfer (FRET) mechanism modulated by a specific metal ion induced ring-opening process of the rhodamine spirolactam (acting as a trigger). In the new developed sensing system, the emission peaks of the two fluorophores are well-resolved, which can avoid the emission spectra overlap problem generally met by spectra-shift type probes and benefits for observation of fluorescence signal change at two different emission wavelengths with high resolution. It also benefits for a large range of emission ratios, thereby a high sensitivity for Zn(2+)detection. Under optimized experimental conditions, the probe exhibits a stable response for Zn(2+) over a concentration range from 2.0 x 10(-7) to 2.0 x 10(-5) M, with a detection limit of 4.0 x 10(-8) M. Most importantly, the novel probe has well solved the problem of serious interferences from other transition metal ions generally met by previously reported typical fluorescent probes for Zn(2+) with the di(2-picolyl)amine moiety as the receptor (in this case, the fluorescence response induced by Cd(2+)is even comparable to that of Zn(2+)) and shows a reversible and fast response toward Zn(2+). All these unique features make it particularly favorable for ratiometric cellular imaging investigations. It has been preliminarily used for ratiometric imaging of Zn(2+) in living cells with satisfying resolution.

摘要

这封信描述了一种新型荧光素标记的罗丹明螺环酰胺衍生物的设计和合成及其初步应用作为锌(2+)的比率荧光细胞成像探针。该探针的比率荧光信号变化基于基于特定金属离子诱导的罗丹明螺环酰胺开环过程的分子内荧光共振能量转移(FRET)机制(作为触发器)。在新开发的传感系统中,两个荧光团的发射峰得到很好的分辨,可以避免光谱移位型探针通常遇到的发射光谱重叠问题,有利于在两个不同的发射波长下观察荧光信号变化,具有高分辨率。它还有利于发射比的大范围,从而提高了对锌(2+)检测的灵敏度。在优化的实验条件下,该探针在 2.0 x 10(-7)至 2.0 x 10(-5) M 的浓度范围内对锌(2+)表现出稳定的响应,检测限为 4.0 x 10(-8) M。最重要的是,该新型探针很好地解决了以前报道的以二(2-吡啶基)胺部分作为受体的典型荧光探针通常遇到的严重来自其他过渡金属离子干扰的问题(在这种情况下,Cd(2+) 诱导的荧光响应甚至可与 Zn(2+) 相媲美),并且对 Zn(2+)具有可逆和快速的响应。所有这些独特的特性使其特别有利于比率细胞成像研究。它已初步用于活细胞中锌(2+)的比率成像,具有令人满意的分辨率。

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