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Journal of the American Chemical Society|August 26, 2015
An Aza-Cope Reactivity-Based Fluorescent Probe for Imaging Formaldehyde in Living CellsThomas F Brewer, Christopher J ChangCurrent Opinion in Chemical Biology|May 22, 2017
Fluorescent probes for imaging formaldehyde in biological systemsKevin J Bruemmer, Thomas F Brewer, Christopher J ChangChemical Science|May 31, 2024
A mitochondrial-targeted activity-based sensing probe for ratiometric imaging of formaldehyde reveals key regulators of the mitochondrial one-carbon poolLogan Tenney, Vanha N Pham, Thomas F Brewer, et al.Chemical Science|June 6, 2017
A 2-aza-Cope reactivity-based platform for ratiometric fluorescence imaging of formaldehyde in living cellsThomas F Brewer, Guillermo Burgos-Barragan, Niek Wit, et al.Annual Review of Biochemistry|June 3, 2015
Chemical approaches to discovery and study of sources and targets of hydrogen peroxide redox signaling through NADPH oxidase proteinsThomas F Brewer, Francisco J Garcia, Carl S Onak, et al.Proceedings of the National Academy of Sciences of the United States of America|May 14, 2014
In vivo modulation of hypoxia-inducible signaling by topographical helix mimeticsBrooke Bullock Lao, Ivan Grishagin, Hanah Mesallati, et al.Chemical Communications (Cambridge, England)|August 25, 2017
A modular trigger for the development of selective superoxide probesZuo Hang Yu, Clive Yik-Sham Chung, Fung Kit Tang, et al.Chemical Science|July 24, 2018
A reactivity-based [18F]FDG probe for in vivo formaldehyde imaging using positron emission tomographyWei Liu, Charles Truillet, Robert R Flavell, et al.Journal of the American Chemical Society|June 28, 2014
Rational design of topographical helix mimics as potent inhibitors of protein-protein interactionsBrooke Bullock Lao, Kevin Drew, Danielle A Guarracino, et al.Nature|August 3, 2018
Direct arylation of strong aliphatic C-H bondsIan B Perry, Thomas F Brewer, Patrick J Sarver, et al.Pageof 2