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Nitric Oxide : Biology and Chemistry|January 4, 2011
Photocontrollable nitric oxide (NO) and nitroxyl (HNO) donors and their release mechanismsHidehiko NakagawaJournal of Clinical Biochemistry and Nutrition|January 23, 2016
Photocontrollable NO-releasing compounds and their biological applicationsHidehiko NakagawaYakugaku Zasshi : Journal of the Pharmaceutical Society of Japan|January 5, 2016
[Caged Gaseous Mediators and Their Control of Cellular Functions]Hidehiko NakagawaChemical Record (New York, N.Y.)|July 25, 2018
Photo-Controlled Release of Small Signaling Molecules to Induce Biological ResponsesHidehiko NakagawaChemical & Pharmaceutical Bulletin|September 2, 2016
Photocontrol of NO, H2S, and HNO Release in Biological Systems by Using Specific Caged CompoundsHidehiko NakagawaJournal of Inorganic Biochemistry|November 13, 2012
Controlled release of HNO from chemical donors for biological applicationsHidehiko NakagawaMethods in Enzymology|June 21, 2020
Synthesis, evaluation, and biological applications of visible-light-controllable nitric oxide releasersNaoya Ieda, Hidehiko NakagawaMethods in Molecular Biology (Clifton, N.J.)|December 17, 2008
2,2,6,6-tetramethylpiperidin-1-oxyl probes for evaluating oxidative stress on the cell membrane and mitochondriaHidehiko Nakagawa, Naoki MiyataMethods in Molecular Biology (Clifton, N.J.)|May 29, 2021
Live-Cell Imaging of Sirtuin Activity Using a One-Step Fluorescence ProbeMitsuyasu Kawaguchi, Hidehiko NakagawaJournal of Medicinal Chemistry|May 24, 2019
Development of Peptide-Based Sirtuin Defatty-Acylase Inhibitors Identified by the Fluorescence Probe, SFP3, That Can Efficiently Measure Defatty-Acylase Activity of SirtuinMitsuyasu Kawaguchi, Naoya Ieda, Hidehiko NakagawaPageof 13