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Дата публикацииНазваниеАвторы
2022CK2 Inhibition and Antitumor Activity of 4,7-Dihydro-6-nitroazolo[1,5-a]pyrimidinesLyapustin, D. N.; Kotovskaya, S. K.; Butorin, I. I.; Ulomsky, E. N.; Rusinov, V. L.; Babkov, D. A.; Pokhlebin, A. A.; Spasov, A. A.; Melekhin, V. V.; Tokhtueva, M. D.; Shcheglova, A. V.; Makeev, O. G.
2022Discovery of Nitro-azolo[1,5-a]pyrimidines with Anti-Inflammatory and Protective Activity against LPS-Induced Acute Lung InjurySpasov, A.; Kosolapov, V.; Babkov, D.; Klochkov, V.; Sokolova, E.; Miroshnikov, M.; Borisov, A.; Velikorodnaya, Y.; Smirnov, A.; Savateev, K.; Fedotov, V.; Kotovskaya, S.; Rusinov, V.
2022Exploring CNS Effects of American Traditional Medicines using Zebrafish Modelsde Abreu, M. S.; Costa, F.; Giacomini, A. C. V. V.; Demin, K. A.; Petersen, E. V.; Rosemberg, D. B.; Kalueff, A. V.
2020How zebrafish models are reshaping modern translational neuroscience and drug discovery researchKalueff, A. V.; Khatsko, S. L.; Zabegalov, K. N.; Zhdanov, A. V.
2023Identification of RdRp inhibitors against SARS-CoV-2 through E-pharmacophore-based virtual screening, molecular docking and MD simulations approachesRehman, H. M.; Sajjad, M.; Ali, M. A.; Gul, R.; Naveed, M.; Aslam, M. S.; Shinwari, K.; Bhinder, M. A.; Ghani, M. U.; Saleem, M.; Rather, M. A.; Ahmad, I.; Amin, A.
2022In Silico Evaluation of Antifungal Compounds from Marine Sponges against COVID-19-Associated MucormycosisPokharkar, O.; Lakshmanan, H.; Zyryanov, G.; Tsurkan, M.
2018Simulation results source for the identification of biological active compounds: synthesis, antimicrobial evaluation and SARs of three in one heterocyclic motifsReddy, N. B.; Zyryanov, G. V.; Reddy, G. M.; Balakrishna, A.; Garcia, J. R.; Camilo, A.; Jr.; Sravya, G.; Зырянов, Г. В.
2020Structure-based virtual screening of pseudomonas aeruginosa lpxa inhibitors using pharmacophore-based approachBhaskar, B. V.; Babu, T. M. C.; Rammohan, A.; Zheng, G. Y.; Zyryanov, G. V.; Gu, W.; Зырянов, Г. В.
2020Synthesis of novel cytotoxic tetracyclic acridone derivatives and study of their molecular docking, ADMET, QSAR, bioactivity and protein binding propertiesVeligeti, R.; Madhu, R. B.; Anireddy, J.; Pasupuleti, V. R.; Avula, V. K. R.; Ethiraj, K. S.; Uppalanchi, S.; Kasturi, S.; Perumal, Y.; Anantaraju, H. S.; Polkam, N.; Guda, M. R.; Vallela, S.; Zyryanov, G. V.; Зырянов, Г. В.
2021Unsymmetrical Trifluoromethyl Methoxyphenyl β-Diketones: Effect of the Position of Methoxy Group and Coordination at Cu(II) on Biological ActivityKhamidullina, L. A.; Puzyrev, I. S.; Burygin, G. L.; Dorovatovskii, P. V.; Zubavichus, Y. V.; Mitrofanova, A. V.; Khrustalev, V. N.; Timofeeva, T. V.; Slepukhin, P. A.; Tobysheva, P. D.; Pestov, A. V.; Solari, E.; Tskhovrebov, A. G.; Nenajdenko, V. G.
2022The Use of Zebrafish as a Non-traditional Model Organism in Translational Pain Research: The Knowns and the UnknownsCosta, F. V.; Rosa, L. V.; Quadros, V. A.; de Abreu, M. S.; Santos, A. R. S.; Sneddon, L. U.; Kalueff, A. V.; Rosemberg, D. B.
2017Zebrafish models in neuropsychopharmacology and CNS drug discoveryKhan, K. M.; Collier, A. D.; Meshalkina, D. A.; Kysil, E. V.; Khatsko, S. L.; Kolesnikova, T.; Morzherin, Y. Y.; Warnick, J. E.; Kalueff, A. V.; Echevarria, D. J.