Guangxi Colleges and Universities Key Laboratory of Food Safety and Detection, Guangxi Key Laboratory of Electrochemical and Magnetochemical Functional Materials, College of Chemistry and Bioengineering, Guilin University of Technology, Guilin, 541004, Guangxi, China.
Anal Bioanal Chem. 2018 Nov;410(28):7457-7464. doi: 10.1007/s00216-018-1352-8. Epub 2018 Sep 24.
A simple Schiff base was prepared by mild condensation reaction between a coumarin fluorescent group and diaminomaleonitrile, and it could serve as an excellent fluorescent probe for fast detection of ClO with high selectivity and sensitivity. Along with addition of ClO, this probe fleetingly showed noteworthy "turn-on" phenomenon accompanied by an increase of fluorescence intensity and the change of emission color from yellow to blue. This change of fluorescence is so significant that it can be observed by the naked-eye under a handheld ultraviolet light of 365 nm. However, other common reactive oxygen species exhibited no or very little fluorescent response under the same conditions. The limit of detection of this probe toward ClO had a sensitivity feature as low as 9.6 nM. On account of these excellent features of short response time, remarkable fluorescence and color signal changes, high sensitivity and selectivity, this probe was effectively used for the fluorescence detection of ClO in water samples. The values of the relative standard deviation were between 1.41% and 2.91%. More importantly, this probe displays excellent imaging capability in cytoplasm as well as very low cell toxicity and was unambiguously applied to image ClO in living cells. Graphical abstract A fluorescent probe based on coumarin for detection of ClO- was successfully developed, which can besuccessfully used for the detection of ClO- in living cells and in water sample because of the excellentfeatures including short response time, remarkable fluorescence and color signal changes, high sensitivityand selectivity.
一种简单的席夫碱通过香豆素荧光团和二氨基马来腈之间的温和缩合反应制备,可作为快速检测 ClO 的优异荧光探针,具有高选择性和灵敏度。随着 ClO 的加入,该探针迅速表现出显著的“开启”现象,伴随着荧光强度的增加和发射颜色从黄色变为蓝色的变化。这种荧光变化非常显著,以至于在 365nm 的手持紫外灯下可以用肉眼观察到。然而,在相同条件下,其他常见的活性氧物种没有或只有很少的荧光响应。该探针对 ClO 的检测限具有低至 9.6nM 的灵敏度特征。由于具有短响应时间、显著的荧光和颜色信号变化、高灵敏度和选择性等优异特性,该探针有效地用于水样中 ClO 的荧光检测。相对标准偏差的值在 1.41%至 2.91%之间。更重要的是,该探针在细胞质中具有出色的成像能力,并且细胞毒性非常低,明确地应用于活细胞中 ClO 的成像。