Selective fluorescent probes for live-cell monitoring of sulphide

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作者
Yong Qian
Jason Karpus
Omer Kabil
Shu-Yu Zhang
Hai-Liang Zhu
Ruma Banerjee
Jing Zhao
Chuan He
机构
[1] The University of Chicago,Department of Chemistry and Institute for Biophysical Dynamics
[2] 929 East 57th Street,Department of Biological Chemistry
[3] Chicago,State Key Laboratory of Applied Organic Chemistry and Department of Chemistry
[4] Illinois 60637,undefined
[5] USA.,undefined
[6] State Key Laboratory of Pharmaceutical Biotechnology,undefined
[7] School of Life Sciences,undefined
[8] Nanjing University,undefined
[9] University of Michigan Medical School,undefined
[10] Lanzhou University,undefined
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Aqueous sulphides, including hydrogen sulphide, have important roles in biological signalling and metabolic processes. Here we develop a selective sulphide-trapping strategy involving sulphide addition to an aldehyde; the resulting hemithioacetal undergoes a Michael addition with an adjacent unsaturated acrylate ester to form a thioacetal at neutral pH in aqueous solution. Employing this new strategy, two sulphide-selective fluorescent probes, SFP-1 and SFP-2, were synthesized on the basis of two different fluorophore templates. These probes exhibit an excellent fluorescence increase and an emission maximum shift (SFP-1) in response to Na2S and H2S in a high thiol background as found under physiological conditions. We show the utility of the probes for the selective detection of sulphides, and the capacity of our probes to monitor enzymatic H2S biogenesis and image free sulphide in living cells.
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