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一种独特的基于吡咯的花菁荧光团,在不同pH区域具有开启和比率荧光信号,用于检测酶和活细胞中的pH值。

A unique type of pyrrole-based cyanine fluorophores with turn-on and ratiometric fluorescence signals at different pH regions for sensing pH in enzymes and living cells.

作者信息

He Longwei, Lin Weiying, Xu Qiuyan, Wei Haipeng

机构信息

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

出版信息

ACS Appl Mater Interfaces. 2014 Dec 24;6(24):22326-33. doi: 10.1021/am506322h. Epub 2014 Dec 10.

Abstract

The development of new functional fluorescent dyes has attracted great attention. Herein we have described a novel strategy to design a unique type of cyanine dyes by attaching two indolium moieties at the α-positions of the pyrrole core. The new type of cyanine dyes is named as PyCy fluorophores. Importantly, PyCy dyes can exhibit an exceptional feature, fluorescence turn-on response at pH varying from acidic to near-neutral conditions, and a ratiometric fluorescence response at pH varying from near-neutral to basic conditions. By taking advantage of the fluorescence turn-on response of PyCy2 at pH varying from acidic to near-neutral conditions and emission properties of PyCy2, we have demonstrated that a small-molecule fluorescent probe can image pH variations in living cells. Furthermore, we have demonstrated that PyCy2 can sense real-time pH changes under alkaline conditions induced by enzymes based on the ratiometric fluorescence response of PyCy2 at pH varying from near-neutral to basic conditions. We expect that the new design strategy for PyCy fluorophores may prompt the development of a wide variety of cyanine derivatives with desirable properties.

摘要

新型功能性荧光染料的开发引起了广泛关注。在此,我们描述了一种通过在吡咯核心的α位连接两个吲哚鎓部分来设计独特类型花青染料的新策略。这种新型花青染料被命名为PyCy荧光团。重要的是,PyCy染料可以表现出一个特殊的特性,即在从酸性到近中性条件变化的pH值下具有荧光开启响应,以及在从近中性到碱性条件变化的pH值下具有比率荧光响应。利用PyCy2在从酸性到近中性条件变化的pH值下的荧光开启响应和PyCy2的发射特性,我们证明了一种小分子荧光探针可以对活细胞中的pH变化进行成像。此外,基于PyCy2在从近中性到碱性条件变化的pH值下的比率荧光响应,我们证明了PyCy2可以在酶诱导的碱性条件下实时感知pH变化。我们期望PyCy荧光团的新设计策略可能会推动各种具有理想性质的花青衍生物的开发。

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