生物发光
赫拉
荧光素
硫醇
半胱氨酸
谷胱甘肽
化学
荧光素酶
氧化应激
生物分子
荧光
生物化学
生物物理学
细胞
生物
酶
转染
基因
物理
量子力学
作者
Mayu Hemmi,Yoshikazu Ikeda,Yutaka Shindo,Takahiro Nakajima,Shigeru Nishiyama,Kotaro Oka,Moritoshi Sato,Yuki Hiruta,Daniel Citterio,Kôji Suzuki
标识
DOI:10.1002/asia.201701774
摘要
Abstract The sensitive detection of thiols including glutathione and cysteine is desirable owing to their roles as indispensable biomolecules in maintaining intracellular biological redox homeostasis. Herein, we report the design and synthesis of SEluc‐1 ( s ulfinate e ster luc iferin), a chemoselective probe exhibiting a ratiometric and turn‐on response towards thiols selectively in fluorescence and bioluminescence, respectively. The probe, which was designed based on the “caged” luciferin strategy, displays excellent selectivity, high signal/noise ratio (>240 in the case of bioluminescence), and a biologically relevant limit of detection (LOD, 80 n m for cysteine), which are all desirable traits for a sensitive bioluminescent sensor. SEluc‐1 was further applied to fluorescence imaging of thiol activity in living human cervical cancer HeLa cell cultures, and was successfully able to detect fluctuations in thiol concentrations induced by oxidative stress in a bioluminescent assay utilizing African green monkey fibroblast COS‐7 cells and human breast adenocarcinoma MCF‐7 cells.
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