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首页> 外文期刊>Chemical science >A multi-signal fluorescent probe for simultaneously distinguishing and sequentially sensing cysteine/homocysteine, glutathione, and hydrogen sulfide in living cells
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A multi-signal fluorescent probe for simultaneously distinguishing and sequentially sensing cysteine/homocysteine, glutathione, and hydrogen sulfide in living cells

机译:一种多信号荧光探针,用于同时区分和顺序检测活细胞中的半胱氨酸/高半胱氨酸,谷胱甘肽和硫化氢

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Biothiols, which have a close network of generation and metabolic pathways among them, are essential reactive sulfur species (RSS) in the cells and play vital roles in human physiology. However, biothiols possess highly similar chemical structures and properties, resulting in it being an enormous challenge to simultaneously discriminate them from each other. Herein, we develop a unique fluorescent probe (HMN) for not only simultaneously distinguishing Cys/Hcy, GSH, and H2S from each other, but also sequentially sensing Cys/Hcy/GSH and H2S using a multi-channel fluorescence mode for the first time. When responding to the respective biothiols, the robust probe exhibits multiple sets of fluorescence signals at three distinct emission bands (blue-green-red). The new probe can also sense H2S at different concentration levels with changes of fluorescence at the blue and red emission bands. In addition, the novel probe HMN is able to discriminate and sequentially sense biothiols in biological environments via three-color fluorescence imaging. We expect that the development of the robust probe HMN will provide a powerful strategy to design fluorescent probes for the discrimination and sequential detection of biothiols, and offer a promising tool for exploring the interrelated roles of biothiols in various physiological and pathological conditions.
机译:生物硫醇具有紧密的生成和代谢途径网络,是细胞中必不可少的反应性硫物种(RSS),在人类生理学中起着至关重要的作用。然而,生物硫醇具有高度相似的化学结构和性质,因此同时区分它们是巨大的挑战。本文中,我们开发了一种独特的荧光探针(HMN),不仅可以同时区分Cys / Hcy,GSH和H 2 S,而且还可以顺序检测Cys / Hcy / GSH和H 2 S首次使用多通道荧光模式。当响应相应的生物硫醇时,坚固的探针在三个不同的发射带(蓝绿色红色)上显示出多组荧光信号。新型探针还可以检测不同浓度水平的H 2 S,并且在蓝色和红色发射带的荧光会发生变化。此外,新型探针HMN能够通过三色荧光成像在生物环境中识别并顺序感测生物硫醇。我们希望健壮的探针HMN的开发将为设计用于区分和顺序检测生物硫醇的荧光探针提供强有力的策略,并为探索生物硫醇在各种生理和病理条件下的相互关联作用提供有希望的工具。

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