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Updated: Mar 31, 2026

Two-Photon-Based Photoactivation in Live Zebrafish Embryos
Published on: December 24, 2010
Photoactivatable, biologically-relevant phenols with sensitivity toward 2-photon excitation
Duncan E McLain1, Adam C Rea2, Magnus B Widegren3
1New York University Abu Dhabi, PO Box 129188, Abu Dhabi, United Arab Emirates. timothy.dore@nyu.edu and Department of Chemistry, University of Georgia, Athens, Georgia30602, USA.
Abstract:
Spatio-temporal release of biologically relevant small molecules provides exquisite control over the activation of receptors and signaling pathways. This can be accomplished via a photochemical reaction that releases the desired small molecule in response to irradiation with light. A series of biologically-relevant signaling molecules (serotonin, octopamine, capsaicin, N-vanillyl-nonanoylamide, estradiol, and tyrosine) that contain a phenol moiety were conjugated to the 8-bromo-7-hydroxyquinolinyl (BHQ) or 8-cyano-7-hydroxyquinolinyl (CyHQ) photoremovable protecting groups (PPGs). The CyHQ caged compounds proved sensitive toward 1PE and 2PE processes with quantum efficiencies of 0.2-0.4 upon irradiation at 365 nm and two-photon action cross sections of 0.15-0.31 GM when irradiated at 740 nm. All but one BHQ caged compound, BHQ-estradiol, were found to be sensitive to photolysis through 1PE and 2PE with quantum efficiencies of 0.30-0.40 and two photon cross sections of 0.40-0.60 GM. Instead of releasing estradiol, BHQ-estradiol underwent debromination.
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