Phosphorescent Sensor for Biological Mobile Zinc

被引:216
作者
You, Youngmin [1 ,2 ]
Lee, Sumin [2 ]
Kim, Taehee [3 ]
Ohkubo, Kei [4 ]
Chae, Weon-Sik [5 ]
Fukuzumi, Shunichi [2 ,4 ]
Jhon, Gil-Ja [3 ]
Nam, Wonwoo [2 ]
Lippard, Stephen J. [1 ]
机构
[1] MIT, Dept Chem, Cambridge, MA 02139 USA
[2] Ewha Womans Univ, Dept Bioinspired Sci, Seoul 120750, South Korea
[3] Ewha Womans Univ, Dept Chem & Nano Sci, Seoul 120750, South Korea
[4] Osaka Univ, Grad Sch Engn, ALCA, Japan Sci & Technol Agcy,Dept Mat & Life Sci, Suita, Osaka 5650871, Japan
[5] Gangneung Ctr, Korea Basic Sci Inst, Kangnung 210702, Gangwondo, South Korea
关键词
HETEROLEPTIC IRIDIUM(III) COMPLEXES; RATIOMETRIC FLUORESCENCE PROBE; INTRAMOLECULAR PROTON-TRANSFER; HISTOCHEMICALLY-REACTIVE ZINC; INTERLIGAND ENERGY-TRANSFER; PANCREATIC BETA-CELLS; MLCT EXCITED-STATE; SELECTIVE RECOGNITION; LUMINESCENT SENSOR; VISIBLE-LIGHT;
D O I
10.1021/ja207163r
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A new phosphorescent zinc sensor (ZIrF) was constructed, based on an Ir(III) complex bearing two 2-(2,4-difluorophenyl)pyridine (dfppy) cyclometalating ligands and a neutral 1,10-phenanthroline (phen) ligand. A zinc-specific di-(2-picolyl)amine (DPA) receptor was introduced at the 4-position of the phen ligand via a methylene linker. The cationic Ir(III) complex exhibited dual phosphorescence bands in CH3CN solutions originating from blue and yellow emission of the dfppy and phen ligands, respectively. Zinc coordination selectively enhanced the latter, affording a phosphorescence ratiometric response. Electrochemical techniques, quantum chemical calculations, and steady-state and femtosecond spectroscopy were employed to establish a photophysical mechanism for this phosphorescence response. The studies revealed that zinc coordination perturbs nonemissive processes of photoinduced electron transfer and intraligand charge-transfer transition occurring between DPA and phen. ZIrF can detect zinc ions in a reversible and selective manner in buffered solution (pH 7.0, 25 mM PIPES) with K-d = 11 nM and pK(a) = 4.16. Enhanced signal-to-noise ratios were achieved by time-gated acquisition of long-lived phosphorescence signals. The sensor was applied to image biological free zinc ions in live A549 cells by confocal laser scanning microscopy. A fluorescence lifetime imaging microscope detected an increase in photoluminescence lifetime for zinc-treated A549 cells as compared to controls. ZIrF is the first successful phosphorescent sensor that detects zinc ions in biological samples.
引用
收藏
页码:18328 / 18342
页数:15
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