Coumarin-Derived Cu 2+ -Selective Fluorescence Sensor: Synthesis, Mechanisms, and Applications in Living Cells
Флуоресцентный сенсор на основе кумарина, селективный к Cu2+: синтез, механизмы действия и применение в живых клетках
2009-01-21
SCID: 54.1/f7h93x2f
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Cu2+-selective fluorescence sensorab initio calculationscoumarin-based fluorogenic probefemtosecond time-resolved fluorescenceintracellular copper imaging
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Abstract (AI)
A novel coumarin-based fluorogenic probe bearing the 2-picolyl unit (1) was developed as a fluorescent chemosensor with high selectivity and suitable affinity in biological systems toward Cu(2+) over other cations tested. The fluorescence on-off mechanism was studied by femtosecond time-resolved fluorescence (TRF) upconversion technique and ab initio calculations. The receptor can be applied to the monitoring of Cu(2+) ion in aqueous solution with a pH span 4-10. To confirm the suitability of 1 for biological applications, we also employed it for the fluorescence detection of the changes of intracellular Cu(2+) in cultured cells. The results indicate that 1 should be useful for the fluorescence microscopic imaging and the study on the biological functions of Cu(2+).
Key Findings
1
A novel coumarin-based fluorogenic probe bearing a 2-picolyl unit was developed for selective Cu2+ fluorescence detection.
2
Femtosecond time-resolved fluorescence upconversion and ab initio calculations elucidated the probe’s fluorescence on-off mechanism.
3
The probe detected intracellular Cu2+ changes in cultured cells, supporting fluorescence microscopy and biological studies of copper functions.
4
The probe exhibits high selectivity and suitable biological affinity for Cu2+ over the other tested cations.
5
The sensor enables Cu2+ monitoring in aqueous solutions across a broad pH range of 4–10.
Research Object
Coumarin-based fluorogenic probe bearing a 2-picolyl unit for detecting Cu(2+) in aqueous solution and cultured cells
Research Subject
Selective fluorescence response, on–off mechanism, affinity, and intracellular monitoring of Cu(2+)
Publication Details
Publication Date
2009-01-21
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