Wu Haixia, Krishnakumar Saarangan, Yu Jie, Liang Dong, Qi Hongyi, Lee Zheng-Wei, Deng Lih-Wen, Huang Dejian
Food Science and Technology Programme, Department of Chemistry, National University of Singapore, Science Drive 3, 117543 (Singapore).
Chem Asian J. 2014 Dec;9(12):3604-11. doi: 10.1002/asia.201402860. Epub 2014 Sep 26.
Herein, we report the development of two fluorescent probes for the highly selective and sensitive detection of H2S. The probes take advantage of a Cu(II)-cyclen complex, which acts as a reaction center for H2S and as a quencher of BODIPY (boron-dipyrromethene)-based fluorophores with emissions at 765 and 680 nm, respectively. These non-fluorescent probes could only be turned on by the addition of H2 S, and not by other potentially interfering biomolecules, including reactive oxygen species, cysteine, and glutathione. In a chemical system, both probes detected H2S with a detection limit of 80 nM. The probes were successfully used for the endogenous detection of H2S in HEK 293 cells, for measuring the H2S-release activity of dietary organosulfides in MCF-7 cells, and for the in vivo imaging of H2S in mice.
在此,我们报道了两种用于高选择性和灵敏检测硫化氢(H₂S)的荧光探针的研制。这些探针利用了一种铜(II)-环烯配合物,其作为H₂S的反应中心,并作为分别在765 nm和680 nm处发射的基于BODIPY(硼二吡咯亚甲基)的荧光团的猝灭剂。这些非荧光探针仅通过添加H₂S才能开启,而不会被其他潜在干扰生物分子开启,包括活性氧、半胱氨酸和谷胱甘肽。在化学体系中,两种探针检测H₂S的检测限均为80 nM。这些探针成功用于HEK 293细胞中H₂S的内源性检测、测量MCF-7细胞中膳食有机硫化物的H₂S释放活性以及小鼠体内H₂S的成像。