1. Minigalieva, I.A., Bushueva, T.V., Froehlich, E., Meindl C., Panov V.G, Varaksin A.N, Shur V. Ya, Shishkina E.V., Gurvivh V.B., Katsnelson B.A. Are in vivo and in vitro assessments of comparative and combined toxicity of the same metallic nanoparticles compatible, or contradictory, or both? A juxtaposition of data obtained in respective experiments with NiO and Mn3O4 nanoparticles. Food Chem. Toxicol. 2017; 109: 393-4
2. Minigalieva I.A., Bushueva T. V., Panov V. G., Varaksin A.N., Shur V.Ya., Shishkina E.V., Gurvich V.B., Katsnel'son B.A. Nekotorye aspekty otsenki toksichnosti metallo- oksidnykh nanochastits na kletochnykh kul'turakh (na primere NiO i Mn3O4). Toksikologicheskii vestnik. 205: 35-43.
3. Minigalieva I.A., Bushueva, T.V., Panov V.G., Shur V. Ya, Shishkina E.V., Gurvivh V.B., Katsnelson B.A. Some aspects of metal oxide nanoparticles toxicity assessment on cell cultures as exemplified by NiO and Mn3OToxicological Review. 205: 35-43 (in Russian).
4. Katsnelson B.A., Privalova L.I., Sutunkova M.P., Minigalieva IA, Gurvich V.B., Shur V.Y., et al. Experimental research into metallic and metal oxide nanoparticle toxicity in vivo, In: B. Yan, H. Zhou, J. Gardea-Torresdey (Eds.). “Bioactivity of Engineered Nanoparticles", Springer; 2017; Chapter 11: 259-319.
5. Karlsson, H.L., Cronholm, P., Gustafsson, J., Moller, L. Copper oxide nanoparticles are highly toxic: A comparison between metal oxide nanoparticles and carbon nanotubes. Chem. Res. Toxicol. 2008; 21: 1726-1732.