Search Results - "Ponamoreva, O."

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  1. 1

    Use of biocompatible redox-active polymers based on carbon nanotubes and modified organic matrices for development of a highly sensitive BOD biosensor by Arlyapov, V.A., Kharkova, A.S., Kurbanaliyeva, S.K., Kuznetsova, L.S., Machulin, A.V., Tarasov, S.E., Melnikov, P.V., Ponamoreva, O.N., Alferov, V.A., Reshetilov, A.N.

    Published in Enzyme and microbial technology (01-02-2021)
    “…•BSA- and chitosan-based redox-active polymer composites were studied.•Composites were coupled with mediators and carbon nanotubes.•Use of mediators and…”
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  2. 2

    Yeast-based self-organized hybrid bio-silica sol-gels for the design of biosensors by Ponamoreva, O N, Kamanina, O A, Alferov, V A, Machulin, A V, Rogova, T V, Arlyapov, V A, Alferov, S V, Suzina, N E, Ivanova, E P

    Published in Biosensors & bioelectronics (15-05-2015)
    “…The methylotrophic Pichia angusta VKM Y-2559 and the oleaginous Cryptococcus curvatus VKM Y-3288 yeast cells were immobilized in a bimodal silica-organic…”
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  3. 3

    Characterization of biosurfactants produced by the oil-degrading bacterium Rhodococcus erythropolis S67 at low temperature by Luong, T. M., Ponamoreva, O. N., Nechaeva, I. A., Petrikov, K. V., Delegan, Ya. A., Surin, A. K., Linklater, D., Filonov, A. E.

    “…Production of trehalolipid biosurfactants by Rhodococcus erythropolis S67 depending on the growth temperature was studied. R. erythropolis S67 produced…”
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  4. 4

    Glycolipids of Pseudomonas and Rhodococcus oil-degrading bacteria used in bioremediation preparations: Formation and structure by Petrikov, K., Delegan, Ya, Surin, A., Ponamoreva, O., Puntus, I., Filonov, A., Boronin, A.

    Published in Process biochemistry (1991) (01-06-2013)
    “…•Five effective oil-degrading microbial strains were glycolipids producers.•Pseudomonas fluorescens and Pseudomonas putida produced rhamnolipid B and its…”
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  5. 5

    Interaction of Oxidized Multiwalled Carbon Nanotubes with Coronene on Graphite Electrodes: Electrochemical Examination by Ponamoreva, O. N., Pankovskaya, V. I., Alferov, S. V., D’yachkova, T. P., Alferov, V. A.

    Published in Inorganic materials : applied research (01-08-2023)
    “…The possibilities of activation of carbon electrodes by oxidized multiwalled carbon nanotubes and hybrid nanomaterials based on carbon nanotubes and coronene,…”
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  6. 6

    Biohybrid of methylotrophic yeast and organically modified silica gels from sol–gel chemistry of tetraethoxysilane and dimethyldiethoxysilane by Ponamoreva, O. N., Lavrova, D. G., Kamanina, O. A., Rybochkin, P. V., Machulin, A. V., Alferov, V. A.

    Published in Journal of sol-gel science and technology (01-11-2019)
    “…The sol–gel process is an effective method to encapsulate living cells into a three-dimensional silica network under mild conditions. In this work, the…”
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  7. 7

    Acidophilic Microorganisms Leptospirillum sp., Acidithiobacillus sp., Ferroplasma sp. As a Cathodic Bioagents in a MFC by Stom, D. I., Zhdanova, G. O., Kalashnikova, O. B., Bulaev, A. G., Kashevskii, A. V., Kupchinsky, A. B., Vardanyan, N. S., Ponamoreva, O. N., Alferov, S. V., Saksonov, M. N., Chesnokova, A. N., Tolstoy, M. Yu

    Published in Geomicrobiology journal (01-04-2021)
    “…Reducing fuel cells electrical losses is achieved by the use of a catalyst. Being inexpensive and renewable, biocathodes have an advantage over synthetic and…”
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  8. 8

    Bacterial Cellulose as a Matrix for Microorganisms in Bioelectrocatalytic Systems by Tarasov, S. E., Plekhanova, Yu. V., Kitova, A. E., Bykov, A. G., Machulin, A. V., Kolesov, V. V., Klenova, N. A., Revin, V. V., Ponamoreva, O. N., Reshetilov, A. N.

    Published in Applied biochemistry and microbiology (01-08-2022)
    “…Bacterial cellulose (BC) produced by the Komagateibacter sucrofermentas VKPM B-11267 bacteria was used as a carrier for immobilization of acetic acid bacteria…”
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  9. 9

    A Biosensor Based Microorganisms Immobilized in Layer-by-Layer Films for the Determination of Biochemical Oxygen Demand by Arlyapov, V. A., Yudina, N. Yu, Machulin, A. V., Alferov, V. A., Ponamoreva, O. N., Reshetilov, A. N.

    “…A new approach has been developed for the formation of the biosensor recognition elements via the immobilization of microorganisms in layer-by-layer films in…”
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  10. 10

    Effect of polyethylene glycol additives on structure, stability, and biocatalytic activity of ormosil sol–gel encapsulated yeast cells by Lavrova, D. G., Kamanina, O. A., Machulin, A. V., Suzina, N. E., Alferov, V. A., Ponamoreva, O. N.

    Published in Journal of sol-gel science and technology (01-10-2018)
    “…Biohybrid materials based on ormosil encapsulated yeast cells were synthesized through a one-step sol–gel route with base-catalyst (NaF) using…”
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  11. 11

    Some Approaches to the Recovery of Baikal Sponge Populations: A Review by Topchiy, I. A., Stom, D. I., Tolstoy, M. Yu, Ponamoreva, O. N., Stom, A. D., Saksonov, M. N., Kupchinsky, A. B.

    Published in Contemporary problems of ecology (01-02-2023)
    “…The unique ecosystem of Lake Baikal is composed of diverse and mainly endemic flora and fauna. The sponge fauna of Baikal is represented by two families,…”
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  12. 12

    On the Development of Reagent-free Conductive Nanocomposite Systems for the Modification of Printed Electrodes When Producing Glucose Biosensors by Arlyapov, V A, Kuznetsova, L S, Kharkova, A S, Provotorova, D V, Nenarochkina, E D, Kamanina, O A, Machulin, A V, Ponamoreva, O N, Alferov, V A, Reshetilov, A N

    Published in Nanotechnologies in Russia (01-02-2022)
    “…The possibility of using redox-active polymers based on bovine serum albumin (BSA) and chitosan covalently linked to neutral red, thionine, and ferrocene…”
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  13. 13

    Bioanode for a microbial fuel cell based on Gluconobacter oxydans immobilized into a polymer matrix by Alferov, S. V, Minaicheva, P. R, Arlyapov, V. A, Asulyan, L. D, Alferov, V. A, Ponamoreva, O. N, Reshetilov, A. N

    Published in Applied biochemistry and microbiology (01-11-2014)
    “…Acetic acid bacteria Gluconobacter oxydans subsp. industrius RKM V-1280 were immobilized into a synthetic matrix based on polyvinyl alcohol modified with…”
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  14. 14

    Yeast Debaryomyces hansenii within ORMOSIL Shells as a Heterogeneous Biocatalyst by Ponamoreva, O. N., Afonina, E. L., Kamanina, O. A., Lavrova, D. G., Arlyapov, V. A., Alferov, V. A., Boronin, A. M.

    Published in Applied biochemistry and microbiology (01-12-2018)
    “…The relevant sol-gel encapsulation methods to design ORMOSIL (organically modified silica) protective shells around Debaryomyces hansenii yeast cells have been…”
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  15. 15

    Interaction of Ferrocene Mediators with Gluconobacter oxydans Immobilized Whole Cells and Membrane Fractions in Oxidation of Ethanol by Indzhgiya, E. Yu, Ponamoreva, O. N., Alferov, V. A., Reshetilov, A. N., Gorton, L.

    Published in Electroanalysis (New York, N.Y.) (01-04-2012)
    “…Gluconobacter oxydans whole cells and membrane fractions in combination with ferrocene mediators were used to study oxidation of ethanol. The efficiency of…”
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  16. 16

    Purification and characterization of methanol dehydrogenase of Methylobacterium nodulans rhizosphere phytosymbionts by Kuznetsova, T. A, Beschastny, A. P, Ponamoreva, O. N, Trotsenko, Yu. A

    Published in Applied biochemistry and microbiology (01-11-2012)
    “…Methanol dehydrogenase (MDH) of the facultative methylotrophic phytosymbiont Methylobacterium nodulans has been purified for the first time to an…”
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  17. 17

    Efficiency of bioelectrocatalytic oxidation of ethanol by whole cells and membrane fractions of Gluconobacter Oxydans bacteria in the presence of mediators of ferrocene series by Ponamoreva, O. N., Indzhgiya, E. Yu, Alferov, V. A., Reshetilov, A. N.

    Published in Russian journal of electrochemistry (01-12-2010)
    “…Bioelectrocatalytic oxidation of ethanol by whole cells and membrane fraction of Gluconobacter oxydans bacteria is studied on modified graphite-paste…”
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  18. 18

    Transformation of low-molecular linear caprolactam oligomers by the caprolactam-degrading bacterium Pseudomonas putida BS394(pBS268) by Ponamoreva, O. N, Esikova, T. Z, Vlasova, Yu. A, Baskunov, B. P, Alferov, V. A

    Published in Microbiology (New York) (01-06-2010)
    “…A biosensor based on the most active caprolactam-degrading strain Pseudomonas putida BS394(pBS268) was used in the study of aerobic degradation of linear…”
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  19. 19
  20. 20

    Distribution of nitrogen-transforming bacteria in an artificial reservoir populated with aquatic higher plants by Nam, N.V.T., Luong, M.T., Yudina, N.Yu, Ponamoreva, O. N., Alferov, S. V., Chi, T.N.L., Dung, N.T., Duyen, Ph.T.M., Nghia, V.T.

    “…This article examines the distribution of nitrogen-transforming bacteria in an artificial reservoir (pond) populated with aquatic higher plants of common reed…”
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