袁景利Jingli Yuan

研究员

 博士生导师  硕士生导师
学位:博士
性别:男
毕业院校:早稻田大学
所在单位:化学学院
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论文成果

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Development of a Ruthenium(II) Complex-Based Luminescent Probe for Hypochlorous Acid in Living Cells

发布时间:2019-03-09 点击次数:

论文类型:期刊论文
发表刊物:INORGANIC CHEMISTRY
收录刊物:Scopus、PubMed、SCIE
卷号:52
期号:18
页面范围:10325-10331
ISSN号:0020-1669
摘要:A novel Ru(II) complex, [Ru(bpy)(2)(DNPS-bpy)]-(PF6)(2) (bpy: 2,2'-bipyridine, DNPS-bpy: 4-(2,4-dinitrophenylthio)-methylene-4'-methyl-2,2'-bipyridine), has been designed and synthesized as a highly sensitive and selective luminescence probe for the recognition and detection of hypochlorous acid (HOC) in living cells by exploiting a "signaling moiety-recognition linker-quencher" sandwich approach. The complex possesses large stokes shift (170 nm), long emission wavelength (626 nm), and low cytotoxicity. Owing to the effective photoinduced electron transfer (PET) from Ru(II) center to the electron acceptor, 2,4-dinitrophenyl (DNP), the red-emission of bipyridine-Ru(II) complex was completely withheld. In aqueous media, HOCl can trigger an oxidation reaction to cleave the DNP moiety from the Ru(II) complex, which results in the formation of a highly luminescent bipyridine-Ru(II) complex derivative, [Ru(bpy)(2)(COOH-bpy)](PF6)(2) (COOH-bpy: 4'-methyl-2,2'-bipyridyl-4-carboxylic acid), accompanied by a 190-fold luminescence enhancement. Cell imaging experimental results demonstrated that [Ru(bpy)(2)(DNPS-bpy)](PF6)(2) is membrane permeable, and can be applied for capturing and visualizing the exogenous/endogenous HOCl molecules in living cell samples. The development of this Ru(II) complex probe not only provides a useful tool for monitoring HOCl in living systems, but also strengthens the application of transition metal complex-based luminescent probes for bioimaging.