Development and applications of a coumarin-based “turn-on” fluorescent probe for effectively discriminating reduced glutathione from homocysteine and cysteine in living cells and organisms

谷胱甘肽 半胱氨酸 荧光团 荧光 化学 香豆素 量子产额 同型半胱氨酸 检出限 生物化学 光化学 生物物理学 有机化学 色谱法 生物 物理 量子力学
作者
Xiaoyi Qi,Lichao Shang,Sicheng Liang,Hao Li,Jing Chen,Xin Chen,Jing Zhao,Mingming Deng,Qingying Wang,Qing He,Muhan Lv,A. Teíchmann,Zhongqiong Wang,Youzhe Yang
出处
期刊:Dyes and Pigments [Elsevier BV]
卷期号:194: 109625-109625 被引量:8
标识
DOI:10.1016/j.dyepig.2021.109625
摘要

Biothiols, including homocysteine (Hcy), cysteine (Cys) and reduced glutathione (GSH), play various roles in physiological and pathological processes. Because these biothiols possess similar in structures, it is difficult to discriminate Hcy, Cys and GSH from one another. In this work, a novel fluorescent probe, 4-BrCP, based on coumarin as a fluorophore to discriminate GSH from Hcy and Cys was rationally designed and synthesized in three steps with good total yield. The benzothiazol ring played the role of a fluorescent emission wavelength adjuster, while the ester part served as a fluorescent quencher and reactive sites with Hcy, Cys and GSH. The results of responsive experiment indicated that the probe could discriminate GSH from Hcy and Cys distinctly and exhibited a relatively high fluorescence quantum yield (0.84) and low detection limit (9.8 nM). In addition, the probe 4-BrCP also showed good stability and low toxicity. The reaction mechanism of 4-BrCP with GSH was speculated on according to the LC-MS data. Most importantly, because of the length of the skeletons of Hcy, Cys and GSH, different dynamic fluorescent phenomena were observed. Furthermore, imaging experiments suggested that the probe could be used to monitor GSH in living cells and organisms.

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