首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Engineering a double-rotor-based fluorescent molecule to sensitively track mitochondrial viscosity in living cells and zebrafish with high signal-to-background ratio (S/B)
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Engineering a double-rotor-based fluorescent molecule to sensitively track mitochondrial viscosity in living cells and zebrafish with high signal-to-background ratio (S/B)

机译:工程双转子的荧光分子,以敏感地跟踪活细胞和斑马鱼的线粒体粘度,具有高信号 - 背景比(S / B)

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摘要

An innovative design strategy has been proposed to construct viscosity-sensitive fluorescent probes with superior sensitivity and high signal-to-background ratio (S/B) based on double-rotor molecular platform. As a proof-of-concept, a double-rotor-based fluorescent molecule (DRVP) containing two rotors, quinolinium and carbazole moieties, was developed to track viscosity using a strong ICT platform. The cationic probe DRVP is able to visualize the mitochondrial viscosity variations in living cells and zebrafish.
机译:已经提出了一种基于双转子分子平台构建具有优异敏感性和高信号到背景比(S / B)的粘度敏感的荧光探针构建粘度敏感的荧光探针。 作为概念验证,开发了含有两个转子,喹啉和咔唑部分的双转子的荧光分子(DRVP),以跟踪使用强ICT平台的粘度。 阳离子探针DRVP能够可视化活细胞和斑马鱼的线粒体粘度变化。

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