1. Механизмы адгезивно-коадгезивного взаимодействия бактерий при формировании биопленки / Б. Г. Андрюков, Р. В. Ромашко, Т. А. Ефимов, И. Н. Ляпун, М. П. Бынина, Е. В. Матосова // Молекулярная генетика, микробиология и вирусология. 2020. Т. 38, № 4. С. 155-161. DOI: 10.17116/molgen202038041155
2. Active sludge and strains isolated from it as bioagents in biofuel cells / D. I. Stom, E. Yu. Konovalova, G. O. Zhdanova, M. Yu. Tolstoy, O. F. Vyatchina // Proc. 17th Int. Sci. Geoconf. SGEM 2017. Vienna. 2017. Vol. 17, Is 42. P. 19. DOI: 10.5593/sgem2017/42/S17.003
3. Bioelectrochemical processes of oxidation of dicarboxylic amino acids by strain Micrococcus luteus 1-I in a biofuel cell / A. V. Kuznetsov, N. N. Khorina, E. Yu. Konovalova, D. Yu. Amsheev, O. N. Ponamoreva, D. I. Stom // IOP Conf. Ser.: Earth Environ. Sci. 2021. Vol. 808. P. 012038. DOI: 10.1088/1755-1315/808/1/012038
4. Biofilm formation by Staphylococcus aureus on food contact surfaces: Relationship with temperature and cell surface hydrophobicity / P. Di Ciccio, A. Vergara, A. R. Festino, D. Paludi, E. Zanardi, S. Ghidini, A. Ianieri // Food Control. 2015. Vol. 50. Р. 930-936. DOI: 10.1016/j.foodcont.2014.10.048
5. Effect of initial carbon sources on the performance of a microbial fuel cell containing environmental microorganism Micrococcus luteus / Y. Choi, E. Jung, H. Park, S. Jung, S. Kim // Bull. Korean Chem. Soc. 2007. Vol. 28, N 9. P. 1591. DOI: 10.5012/bkcs.2007.28.9.1591
6. Electrochemical Parameters of Microbial Fuel Cells Based on the Micrococcus luteus Strain, New Ion-Exchange Membranes and Various Sugars / A. N. Chesnokova, S. A. Zakarchevsky, G. O. Zhdanova, D. I. Stom // Russ. J. Electrochem. 2023. Vol. 59, N 9. Р. 660-665. DOI: 10.1134/S1023193523090057
7. Lamari F., Khouadja S., Rtimi S.Interaction of Vibrio to Biotic and Abiotic Surfaces: Relationship between Hydrophobicity, Cell Adherence, Biofilm Production, and Cytotoxic Activity // Surfaces. 2018. Vol. 1. Р. 187-201. DOI: 10.3390/surfaces1010014
8. Rosenberg M. Bacterial adherence to polystyrene: a replica method of screening for bacterial hydrophobicity // Appl. Environ. Microbiol. 1981. Vol. 42, N 2. P. 375-377. DOI: 10.1128/aem.42.2.375-377.1981
9. Rosenberg M., Gutnik D., Rosenberg E. Adherence of bacteria to hydrocarbons: A simple method for measuring cell, surface hydrophobicity // FEMS Microbiol. Lett. 1980. Vol. 9. P. 29-33. DOI: 10.1111/j.1574-6968.1980.tb05599.x
10. Rubtsova E. V., Kuiukina M. S., Ivshina I. B. Effect of cultivation conditions on the adhesive activity of rhodococci towards n-hexadecane // Appl. Biochem. Microbiol. 2012. Vol. 48. P. 452-459.
11. Surfactant pollution, an emerging threat to ecosystem: Approaches for effective bacterial degradation /j. Arora, A. Ranjan, A. Chauhan, R. Biswas, V. D. Rajput, S. Sushkova, S. Mandzhieva, T. Minkina, T. Jindal // J. Appl. Microbiol. 2022. Vol. 133. Р. 1229-1244.