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半姜黄素类化合物的硼二氟配合物作为用于生物成像的仿生推拉染料。

Borondifluoride complexes of hemicurcuminoids as bio-inspired push-pull dyes for bioimaging.

作者信息

Kim Eunsun, Felouat Abdellah, Zaborova Elena, Ribierre Jean-Charles, Wu Jeong Weon, Senatore Sébastien, Matthews Cédric, Lenne Pierre-François, Baffert Carole, Karapetyan Artak, Giorgi Michel, Jacquemin Denis, Ponce-Vargas Miguel, Le Guennic Boris, Fages Frédéric, D'Aléo Anthony

机构信息

Department of Physics, CNRS-Ewha International Research Center, Ewha Womans University, Seoul, South Korea.

出版信息

Org Biomol Chem. 2016 Jan 28;14(4):1311-24. doi: 10.1039/c5ob02295a. Epub 2015 Dec 10.

Abstract

Hemicurcuminoids are based on half of the π-conjugated backbone of curcuminoids. The synthesis of a series of such systems and their borondifluoride complexes is described. The electrochemical and photophysical properties of difluorodioxaborine species were investigated as a function of the nature of electron donor and acceptor groups appended at either terminal positions of the molecular backbone. The emissive character of these dipolar dyes was attributed to an intraligand charge transfer process, leading to fluorescence emission that is strongly dependent on solvent polarity. Quasi-quantitative quenching of fluorescence in high polarity solvents was attributed to photoinduced electron transfer. These dyes were shown to behave as versatile fluorophores. Indeed, they display efficient two-photon excited fluorescence emission leading to high two-photon brightness values. Furthermore, they form nanoparticles in water whose fluorescence emission quantum yield is less than that of the dye in solution, owing to aggregation-induced fluorescence quenching. When cos7 living cells were exposed to these weakly-emitting nanoparticles, one- and two-photon excited fluorescence spectra showed a strong emission within the cytoplasm that originated from the individual molecules. Dye uptake thus involved a disaggregation mechanism at the cell membrane which restored fluorescence emission. This off-on fluorescence switching allows a selective optical monitoring of those molecules that do enter the cell, which offers improved sensitivity and selectivity of detection for bioimaging purposes.

摘要

半姜黄素类化合物基于姜黄素类化合物π共轭主链的一半。本文描述了一系列此类体系及其二氟化硼配合物的合成。研究了二氟二氧硼物种的电化学和光物理性质与分子主链两端所连接的电子供体和受体基团性质的关系。这些偶极染料的发光特性归因于配体内电荷转移过程,导致荧光发射强烈依赖于溶剂极性。在高极性溶剂中荧光的准定量猝灭归因于光诱导电子转移。这些染料表现为通用荧光团。实际上,它们显示出高效的双光子激发荧光发射,导致高双光子亮度值。此外,它们在水中形成纳米颗粒,由于聚集诱导的荧光猝灭,其荧光发射量子产率低于溶液中的染料。当将cos7活细胞暴露于这些弱发射纳米颗粒时,单光子和双光子激发荧光光谱显示细胞质内有强烈发射,其源于单个分子。因此,染料摄取涉及细胞膜处的解聚机制,从而恢复荧光发射。这种开-关荧光切换允许对那些确实进入细胞的分子进行选择性光学监测,这为生物成像目的提供了更高的检测灵敏度和选择性。

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