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Beilstein Journal of Organic Chemistry|July 23, 2015
Azobenzene-based inhibitors of human carbonic anhydrase IILeander Simon Runtsch, David Michael Barber, Peter Mayer, et al.Chemical Science|April 29, 2017
Optical control of AMPA receptors using a photoswitchable quinoxaline-2,3-dione antagonistDavid M Barber, Shu-An Liu, Kevin Gottschling, et al.Langmuir : the ACS Journal of Surfaces and Colloids|September 21, 2022
Postsynthetic Photocontrol of Giant Liposomes via Fusion-Based Photolipid DopingStefanie D Pritzl, Johannes Morstein, Sophia Kahler, et al.Bioconjugate Chemistry|August 27, 2021
Optical Control of Adenosine-Mediated Pain ModulationKatharina Hüll, Víctor Fernández-Dueñas, Matthias Schönberger, et al.Nature Communications|May 23, 2015
Photoswitchable fatty acids enable optical control of TRPV1James Allen Frank, Mirko Moroni, Rabih Moshourab, et al.Angewandte Chemie (International Ed. in English)|December 22, 2017
Optical Control of a Biological Reaction-Diffusion SystemPhilipp Glock, Johannes Broichhagen, Simon Kretschmer, et al.Journal of the American Chemical Society|October 16, 2003
Protein surface recognition by rational design: nanomolar ligands for potassium channelsStefan N Gradl, John P Felix, Ehud Y Isacoff, et al.Nature Structural & Molecular Biology|November 2, 2010
Structural basis of open channel block in a prokaryotic pentameric ligand-gated ion channelRicarda J C Hilf, Carlo Bertozzi, Iwan Zimmermann, et al.Journal of the American Chemical Society|November 1, 2013
A red-shifted, fast-relaxing azobenzene photoswitch for visible light control of an ionotropic glutamate receptorMichael A Kienzler, Andreas Reiner, Eric Trautman, et al.Nature Chemical Biology|January 13, 2006
Allosteric control of an ionotropic glutamate receptor with an optical switchMatthew Volgraf, Pau Gorostiza, Rika Numano, et al.Pageof 31