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1.

A new enzymatic technique to estimate the efficiency of microbial degradation of pollutants/A. B. Sarangova, L. A. Somova ; ed. RM Wheeler [et al.] // LIFE SCIENCES: LIFE SUPPORT SYSTEMS STUDIES-I. Ser. ADVANCES IN SPACE RESEARCH:PERGAMON PRESS LTD, 1997. т.Vol. 20:F4.6, F4.8, F4.2 and F4.9 Symposia of COSPAR Scientific Commission F on Life Sciences - Life Support System Studies-I, at the 31st COSPAR Scientific Assembly (JUL 14-SEP 21, 1996, BIRMINGHAM, ENGLAND),N Is. 10.-С.2049-2052
2.

A new enzymatic technique to estimate the efficiency of microbial degradation of pollutants/A. B. Sarangova, L. A. Somova // Advances in Space Research, 1997. т.Vol. 20,N Is. 10.-С.2049-2052
3.

A study of the properties and efficacy of microparticles based on P(3HB) and P(3HB/3HV) loaded with herbicides/R. Vijayamma, H. J. Maria, S. Thomas [et al.] // JOURNAL OF APPLIED POLYMER SCIENCE:WILEY, 2021.- Ст.e51756
4.

A study of the properties and efficacy of microparticles based on P(3HB) and P(3HB/3HV) loaded with herbicides/R. Vijayamma, H. J. Maria, S. Thomas [et al.] // Journal of Applied Polymer Science:John Wiley and Sons Inc, 2021
5.

Accumulation of elements by submerged (Stuckenia pectinata (L.) Borner) and emergent (Phragmites australis (Cav.) Trin. ex Steud.) macrophytes under different salinity levels/O. V. Anishchenko, A. P. Tolomeev, E. A. Ivanova [et al.] // Plant Physiology and Biochemistry:Elsevier Masson SAS, 2020. т.Vol. 154.-С.328-340
6.

Accumulation of elements by submerged (Stuckenia pectinata (L.) Borner) and emergent (Phragmites australis (Cay.) Trin. ex Steud.) macrophytes under different salinity levels/O. V. Anishchenko, A. P. Tolomeev, E. A. Ivanova [et al.] // PLANT PHYSIOLOGY AND BIOCHEMISTRY:ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER, 2020. т.Vol. 154.-С.328-340
7.

Active mixing of immobilised enzymatic system in microfluidic chip/K. A. Lukyanenko [et al.] // MICRO & NANO LETTERS:INST ENGINEERING TECHNOLOGY-IET, 2017. т.Vol. 12,N Is. 6.-С.377-381
8.

Advances in the use of molecular tools in ecological and biodiversity assessment of aquatic ecosystems/M. J. Feio, A. F. Filipe, A. Garcia-Raventos [et al.] // LIMNETICA:ASOC ESPAN LIMNOL-MISLATA, 2020. т.Vol. 39:19th Congress of the Iberian-Association-of-Limnology (AIL) (JUN 24-29, 2018, Coimbra, PORTUGAL),N Is. 1.-С.419-440
9.

An Integrated Approach to the Assessment of an Ecological Impact of Industrial Products and Processes/S. I. Bartsev [et al.] ; ed.: Z Yang, Z Yang // 18TH BIENNIAL ISEM CONFERENCE ON ECOLOGICAL MODELLING FOR GLOBAL CHANGE AND COUPLED HUMAN AND NATURAL SYSTEM. Ser. Procedia Environmental Sciences:ELSEVIER SCIENCE BV, 2012. т.Vol. 13:18th Biennial ISEM Conference on Ecological Modelling for Global Change and Coupled Human and Natural Systems (SEP 20-23, 2011, Beijing, PEOPLES R CHINA).-С.837-846
10.

Analytical Enzymatic Reactions in Microfluidic Chips/K. A. Lukyanenko [et al.] // APPLIED BIOCHEMISTRY AND MICROBIOLOGY:MAIK NAUKA/INTERPERIODICA/SPRINGER, 2017. т.Vol. 53,N Is. 7.-С.775-780
11.

Antifungal activity of P3HB microparticles containing tebuconazole/A. M. Shershneva [et al.] // Journal of Environmental Science and Health - Part B Pesticides, Food Contaminants, and Agricultural Wastes:Taylor and Francis Inc., 2019
12.

Antioxidant Activity of Fullerenols. Bioluminescent Monitoring in vitro/A. S. Sachkova [et al.] ; ed.: A. .. Turner, A. .. Tang // BIOSENSORS 2016:ELSEVIER SCIENCE BV, 2017. т.Vol. 27:26th Anniversary World Congress on Biosensors (Biosensors) (MAY 25-27, 2016, Gothenburg, SWEDEN).-С.230-231
13.

Antioxidant activity of humic substances via bioluminescent monitoring in vitro/A. S. Tarasova, D. I. Stom, N. S. Kudryasheva // ENVIRONMENTAL MONITORING AND ASSESSMENT:SPRINGER, 2015. т.Vol. 187,N Is. 3.- Ст.89
14.

Bioluminescent and biochemical properties of Cys-free Ca2+-regulated photoproteins obelin and aequorin/E. V. Eremeeva, E. S. Vysotski // JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY:ELSEVIER SCIENCE SA, 2017. т.Vol. 174.-С.97-105
15.

Bioluminescent and biochemical properties of Cys-free Ca2+-regulated photoproteins obelin and aequorin/E. V. Eremeeva, E. S. Vysotski // Journal of Photochemistry and Photobiology B: Biology:Elsevier B.V., 2017. т.Vol. 174.-С.97-105
16.

Bioluminescent immunoassay of thyrotropin and thyroxine using obelin as a label/L. A. Frank, A. I. Petunin, E. S. Vysotski // ANALYTICAL BIOCHEMISTRY:ACADEMIC PRESS INC ELSEVIER SCIENCE, 2004. т.Vol. 325,N Is. 2.-С.240-246
17.

Bioluminescent Properties of Semi-Synthetic Obelin and Aequorin Activated by Coelenterazine Analogues with Modifications of C-2, C-6, and C-8 Substituents/E. V. Eremeeva, T. Y. Jiang, N. P. Malikova [et al.] // INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES:MDPI, 2020. т.Vol. 21,N Is. 15.- Ст.5446
18.

Bioluminescent properties of semi-synthetic obelin and aequorin activated by coelenterazine analogues with modifications of C-2, C-6, and C-8 substituents/E. V. Eremeeva, T. Jiang, N. P. Malikova [et al.] // International Journal of Molecular Sciences:MDPI AG, 2020. т.Vol. 21,N Is. 15.- Ст.5446.-С.1-21
19.

Bioluminescent reporters for identification of gene allelic variants/V. V. Krasitskaya [et al.] // RUSSIAN JOURNAL OF BIOORGANIC CHEMISTRY:MAIK NAUKA/INTERPERIODICA/SPRINGER, 2012. т.Vol. 38,N Is. 3.-С.298-305
20.

"Biospherics" approach for studies of natural and artificial ecosystems/N. S. Pechurkin, L. A. Somova // Advances in Space Research, 2008. т.Vol. 41,N Is. 5.-С.691-695
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