Публикации (по IF ) сотрудников подразделения (БД НИОХ СО РАН)
- O.A. Krumkacheva, I.O. Timofeev, L.V. Politanskaya, Yu.F. Polienko, E.V. Tretyakov, O.Yu. Rogozhnikova, D.V. Trukhin, V.M. Tormyshev, A.S. Chubarov, E.G. Bagryanskaya, M.V. Fedin
Triplet Fullerenes as Prospective Spin Labels for Nanoscale Distance Measurements by Pulsed Dipolar EPR
Angewandte Chemie International Edition, 2019, V. 58, N 38, Pp 13271-13275 doi:10.1002/anie.201904152, IF=12.256
- O.A. Krumkacheva, G.Yu. Shevelev, A.A. Lomzov, N.S. Dyrkheeva, A.A. Kuzhelev, V.V. Koval, V.M. Tormyshev, Yu.F. Polienko, M.V. Fedin, D.V. Pyshnyi, O.I. Lavrik, E.G. Bagryanskaya
DNA complexes with human apurinic/apyrimidinic endonuclease 1: structural insights revealed by pulsed dipolar EPR with orthogonal spin labeling
Nucleic Acids Research,2019, V. 47, N 15, Pp 7767-7780 doi:10.1093/nar/gkz620, IF=11.147
- M.Yu. Ivanov, S.A. Prikhod'ko, N. Yu. Adonin, I.A. Kirilyuk, S.V. Adichtchev, N.V. Surovtsev, S.A. Dzuba, M.V. Fedin
Structural Anomalies in Ionic Liquids near the Glass Transition Revealed by Pulse EPR
J. Phys. Chem. Lett., Publication Date (Web): July 27, 2018 (Chemical and Dynamical Processes in Solution; Polymers, Glasses, and Soft Matter) doi:10.1021/acs.jpclett.8b02097, IF=8.708
- Е.В. Третьяков, В.И. Овчаренко, А.О. Терентьев, И.Б. Крылов, Т.В. Магдесиева, Д.Г. Мажукин, Н.П. Грицан
Сопряженные нитроксильные радикалы
Успехи химии, 2022, 91 (2), RCR5025 (Conjugated nitroxide radicals/ E V Tretyakov, V I Ovcharenko, A O Terent'ev, I B Krylov, T V Magdesieva, D G Mazhukin, N P Gritsan// Russian Chemical Reviews, 2022, 91 (2), RCR5025 doi:10.1070/RCR5025), IF=7.46
- R. Nazarewicz, A. Dikalova, A. Bikineyeva, S. Ivanov, I.A. Kirilyuk, I.A. Grigor'ev, S.I. Dikalov
Does Scavenging of Mitochondrial Superoxide Attenuate Cancer Prosurvival Signaling Pathways?
Antioxidants & Redox Signaling, 2013, V.19, N 4, pp 344-349. doi:10.1089/ars.2013.5185, IF=7.189
- E.G. Kovaleva, L.S. Molochnikov, D. Tambasova, A. Marek, M. Chestnut, V.A. Osipova, D.O. Antonov, I.A. Kirilyuk, A. Smirnov
Electrostatic Properties of Inner Nanopore Surfaces of Anodic Aluminum Oxide Membranes upon High Temperature Annealing Revealed by EPR of pH-sensitive Spin Probes and Labels
Journal of Membrane Science, V. 604, 1 June 2020, 118084 doi:10.1016/j.memsci.2020.118084, IF=7.183
- K. Suzuki, Y. Takemoto, S. Takaoka, K.Taguchi. Y. Uchida, D.G. Mazhukin, I.A. Grigor'ev, R. Tamura
Chiral all-organic nitroxide biradical liquid crystals showing remarkably large positive magneto-LC effects
Chem. Commun., 2016,52(20), 3935-3938 doi:10.1039/C5CC09202G, IF=6.566
- S. Dikalov, Yu.F. Polienko, I. Kirilyuk
Electron Paramagnetic Resonance Measurements of Reactive Oxygen Species by Cyclic Hydroxylamine Spin Probes
Antioxidants & Redox Signaling, 2018, V. 28, N 15, Pp 1433-1444 doi:10.1089/ars.2017.7396, IF=6.53
- N. Polyakov, T. Leshina, L. Fedenok, I. Slepneva, I. Kirilyuk, J. Furso, M. Olchawa, T. Sarna, M. Elas, I. Bilkis, L. Weiner
Redox-Active Quinone Chelators: Properties, Mechanisms of Action, Cell Delivery, and Cell Toxicity
Antioxidants & Redox Signaling, 2018, V.28, N 15, Pp 1394-1403 doi:10.1089/ars.2017.7406, IF=6.53
- A. A. Sonina, I.P. Koskin, P.S. Sherin, T. V. Rybalova, I. K. Shundrina, E. A. Mostovich, M. S. Kazantsev
Crystal packing control of a trifluoromethyl-substituted furan/phenylene co-oligomer
Acta Crystallographica Section B, 2018, V. 74, N 5, Pp 450-457 doi:10.1107/S2052520618011782, IF=6.467
- I.P. Koskin, E.A. Mostovich, E. Benassi, M.S. Kazantsev
A quantitative topological descriptor for linear co-oligomer fusion
Chem. Commun., 2018, V. 54, N 52, Pp 7235-7238 doi:10.1039/C8CC03156H, IF=6.29
- M. Edeleva, D. Morozov, D. Parkhomenko, Yu. Polienko, A. Iurchenkova, I. Kirilyuk, E. Bagryanskaya
Versatile approach to activation of alkoxyamine homolysis by 1,3-dipolar cycloaddition for efficient and safe nitroxide mediated polymerization
Chem. Commun., 2019,V. 55, N 2, Pp 190-193 doi:10.1039/C8CC08541B, IF=6.164
- D.A. Komarov, Yu. Ichikawa, K. Yamamoto, N.J. Stewart, S. Matsumoto, H. Yasui, I.A. Kirilyuk, V.V. Khramtsov, O. Inanami, H. Hirata
In vivo extracellular pH mapping of tumors using electron paramagnetic resonance
Anal. Chem., 90 (23), pp 13938-13945 doi:10.1021/acs.analchem.8b03328, IF=6.042
- B. Sharma, V.A. Tran, T. Pongratz, L. Galazzo, I. Zhurko, E. Bordignon, S.M. Kast, F. Neese, D. Marx
A Joint Venture of Ab Initio Molecular Dynamics, Coupled Cluster Electronic Structure Methods, and Liquid-State Theory to Compute Accurate Isotropic Hyperfine Constants of Nitroxide Probes in Water
Journal of Chemical Theory and Computation, 2021, V. 17, N 10, Pp 6366-6386 doi:10.1021/acs.jctc.1c00582, IF=6.006
- M.Yu. Ivanov, Yu.F. Polienko, I.A. Kirilyuk, S.A. Prikhod'ko, N
Peek Inside the Water Mixtures of Ionic Liquids at Molecular Level: Microscopic Properties Probed by EPR Spectroscopy
Int. J. Mol. Sci. 2021, 22(21), 11900 doi:10.3390/ijms222111900, IF=5.923
- S.I. Dikalov, A.E. Dikalova, I.A. Kirilyuk
Coupling of phagocytic NADPH oxidase activity and mitochondrial superoxide production
Frontiers in Cardiovascular Medicine, 2022, 9, 942736 doi:10.3389/fcvm.2022.942736, IF=5.846
- A. Samouilov, O.V. Efimoya, A.A. Bobko, Z. Sun, S. Petryakov, T.D. Eubank, D.G. Trofimov, I.A. Kirilyuk, I.A. Grigor'ev, W. Takahashi, J.L. Zweier, V.V. Khramtsov
In Vivo Proton–Electron Double-Resonance Imaging of Extracellular Tumor pH Using an Advanced Nitroxide Probe
Anal. Chem., 2014, 86 (2), pp. 1045-1052., 2014, 86, 2, 1045-1052 doi:10.1021/ac402230h, IF=5.824
- S.E. Tolstikov, E.V. Tretyakov, D.E. Gorbunov, I.F. Zhurko, M.V. Fedin, G.V. Romanenko, A.S. Bogomyakov, N.P. Gritsan, D.G. Mazhukin
Reaction of Paramagnetic Synthon, Lithiated 4,4,5,5-Tetramethyl-4,5-dihydro-1H-imidazol-1-oxyl 3-oxide, with Cyclic Aldonitrones of the Imidazole Series
Chemistry - A European Journal, 2016, V. 22, N 41, Pp 14598-14604 doi:10.1002/chem.201602049, IF=5.77
- M. Kozuleva, I. Klenina, I. Mysin, I. Kirilyuk, V. Opanasenko, I. Proskuryakov, B. Ivanov
Quantification of superoxide radical production in thylakoid membrane using cyclic hydroxylamines
Free Radical Biology and Medicine, V. 89, 2015, Pp 1014-1023 doi:10.1016/j.freeradbiomed.2015.08.016, IF=5.736
- A.A. Bobko, I.A. Kirilyuk, I.A. Grigor’ev, J.L. Zweier, V.V. Khramtsov
Reversible reduction of nitroxides to hydroxylamines: roles for ascorbate and glutathione
Free Radic.Biol. Med., 2007, V. 42, N 3, 404-412. doi:10.1016/j.freeradbiomed.2006.11.007, IF=5.44