Lev M. Weiner, Ph.D.
Affiliations: | 1980-1986 | Neurobiology | Novosibirsk State University |
Area:
Biophysics, NeurobiologyWebsite:
http://www.weizmann.ac.il/lifesci/idcards/LevWeiner8504.htmlGoogle:
"Lev Weiner"Mean distance: 24.32
Cross-listing: Chemistry Tree
Children
Sign in to add traineeValery V. Khramtsov | grad student | 1980-1986 | Novosibirsk State University (Chemistry Tree) |
BETA: Related publications
See more...
Publications
You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect. |
Schmallegger M, Barbon A, Bortolus M, et al. (2020) Systematic Quantification of Electron Transfer in a Bare Phospholipid Membrane Using Nitroxide-Labeled Stearic Acids: Distance Dependence, Kinetics, and Activation Parameters. Langmuir. 36: 10429-10437 |
Dror I, Fink L, Weiner L, et al. (2020) Elucidating the catalytic degradation of enrofloxacin by copper oxide nanoparticles through the identification of the reactive oxygen species. Chemosphere. 258: 127266 |
Bilkis I, Silman I, Weiner L. (2018) Generation of Reactive Oxygen Species by Photosensitizers and their Modes of Action on Proteins. Current Medicinal Chemistry |
Polyakov N, Leshina T, Fedenok L, et al. (2018) Redox-Active Quinone Chelators: Properties, Mechanisms of Action, Cell Delivery, and Cell Toxicity. Antioxidants & Redox Signaling. 28: 1394-1403 |
Barbon A, Bortolus M, Isse AA, et al. (2016) Electron transfer in pH-sensitive nitroxide radicals Chemical Physics Letters. 665: 137-140 |
Barats-Damatov D, Shimon LJ, Weiner L, et al. (2014) Dicobalt-μ-oxo polyoxometalate compound, [(α(2)-P2W17O61Co)2O](14-): a potent species for water oxidation, C-H bond activation, and oxygen transfer. Inorganic Chemistry. 53: 1779-87 |
Silman I, Roth E, Paz A, et al. (2013) The specific interaction of the photosensitizer methylene blue with acetylcholinesterase provides a model system for studying the molecular consequences of photodynamic therapy. Chemico-Biological Interactions. 203: 63-6 |
Triquigneaux MM, Ehrenshaft M, Roth E, et al. (2012) Targeted oxidation of Torpedo californica acetylcholinesterase by singlet oxygen: identification of N-formylkynurenine tryptophan derivatives within the active-site gorge of its complex with the photosensitizer methylene blue. The Biochemical Journal. 448: 83-91 |
Weiner L, Roth E, Silman I. (2011) Targeted oxidation of Torpedo californica acetylcholinesterase by singlet oxygen. Photochemistry and Photobiology. 87: 308-16 |
Lichtenberg DA, Shoval H, Pinchuk I, et al. (2010) Both the Formation and Polyphenol-Induced Dissociation of Various Amyloid Fibrils are Accompanied by ROS Formation Biophysical Journal. 98: 455a |