Journal for Veterinary Medicine, Biotechnology and Biosafety

Volume 12, Issue 3, September 2026, Pages 12–17

ISSN 2411-3174 (print version) ISSN 2411-0388 (online version)

SEROLOGICAL SURVEILLANCE OF INFLUENZA A VIRUS AND HIGHLY PATHOGENIC AVIAN INFLUENZA H5N1 IN RUMINANTS IN UKRAINE, 2015‒2026

Muzyka N. M. 1, Kolomak I. O. 2, Pishchanskyi О. V. 3, Aliekseieva H. B. 3, Drozhzhe Zh. M. 3

1 National Scientific Center ‘Institute of Experimental and Clinical Veterinary Medicine’, Kharkiv, Ukraine, e-mail: muzykanat@gmail.com

2 Poltava State Agrarian University, Poltava, Ukraine

3 State Scientific Research Institute of Laboratory Diagnostics and Veterinary and Sanitary Expertise, Kyiv, Ukraine

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Citation for print version: Muzyka, N. M., Kolomak, I. O., Pishchanskyi, О. V., Aliekseieva, H. B. and Drozhzhe, Zh. M. (2026) ‘Serological surveillance of Influenza A virus and Highly pathogenic avian influenza H5N1 in ruminants in Ukraine, 2015‒2026’, Journal for Veterinary Medicine, Biotechnology and Biosafety, 12(3), pp. 12–17.

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Citation for online version: Muzyka, N. M., Kolomak, I. O., Pishchanskyi, О. V., Aliekseieva, H. B. and Drozhzhe, Zh. M. (2026) ‘Serological surveillance of Influenza A virus and Highly pathogenic avian influenza H5N1 in ruminants in Ukraine, 2015‒2026’, Journal for Veterinary Medicine, Biotechnology and Biosafety, 12(3), pp. 12–17. DOI: 10.36016/JVMBBS-2026-12-3-2.

Summary. This article provides a concise review of the current literature on the circulation of influenza A viruses in cattle and the unprecedented emergence of highly pathogenic avian influenza (HPAI) H5N1 infection in this species. Particular attention is paid to the ecological and biological aspects of influenza A virus cross-species transmission, as well as to the potential implications of these events for veterinary medicine, livestock production, and public health. The study presents the results of the first pilot serological investigation conducted at the National Scientific Center ‘Institute of Experimental and Clinical Veterinary Medicine’, providing evidence of the potential circulation of influenza A virus among ruminants in Ukraine. A total of 510 serum samples collected from cattle and small ruminants in different regions of Ukraine between 2015 and 2026 were tested using an enzyme-linked immunosorbent assay (ELISA). Three (0.59%) seropositive cattle serum samples, collected in 2023 and 2026, were identified, whereas all serum samples obtained from small ruminants tested negative. Overall, the seroprevalence of antibodies against influenza A virus was low, ranging from 1.67% to 5.0%, depending on the year of sampling and the geographical region. Further serological characterization of all influenza A virus-positive sera for antibodies against highly pathogenic avian influenza H5N1 yielded negative results. Thus, the findings do not support the circulation of HPAI H5N1 among the examined ruminant population in Ukraine. Nevertheless, given the remarkable evolutionary plasticity of influenza A viruses, their ability to overcome species barriers, and their potential to establish novel transmission pathways, continued serological, virological, and molecular surveillance of ruminants is warranted. Such monitoring is essential for the early detection of cross-species transmission events, changes in virus ecology, and the emergence of novel biological properties

Keywords: highly pathogenic avian influenza, cattle influenza, serological surveillance, enzyme-linked immunosorbent assay

References:

Ballmann, M., Germeraad, E., Mars, M., Santman-Berends, I. and de Boer, S. (2026) Serologische Screening van Rundvee op Antilichamen Tegen Aviaire Influenza Virus. Lelystad: Wageningen Bioveterinary Research. (Wageningen Bioveterinary Research Report, 2608033). doi: 10.18174/713793.

Caserta, L. C., Frye, E. A., Butt, S. L., Laverack, M., Nooruzzaman, M., Covaleda, L. M., Thompson, A. C., Koscielny, M. P., Cronk, B., Johnson, A., Kleinhenz, K., Edwards, E. E., Gomez, G., Hitchener, G., Martins, M., Kapczynski, D. R., Suarez, D. L., Alexander Morris, E. R., Hensley, T., Beeby, J. S., Lejeune, M., Swinford, A. K., Elvinger, F., Dimitrov, K. M. and Diel, D. G. (2024) ‘Spillover of highly pathogenic avian influenza H5N1 virus to dairy cattle’, Nature, 634(8034), pp. 669‒676. doi: 10.1038/s41586-024-07849-4.

EFSA (European Food Safety Authority), ECDC (European Centre for Disease Prevention and Control), EURL (European Union Reference Laboratory for Avian Influenza), Alexakis, L., Buczkowski, H., Ducatez, M., Fusaro, A., Gonzales, J. L., Kuiken, T., Mirinavičiūtė, G., Ståhl, K., Staubach, C., Svartström, O., Terregino, C., Willgert, K., Melo, M. and Kohnle, L. (2025) ‘Avian influenza overview March‒June 2025’, European Food Safety Authority Journal, 23(7), p. e9520. doi: 10.2903/j.efsa.2025.9520.

EFSA (European Food Safety Authority), ECDC (European Centre for Disease Prevention and Control), EURL (European Union Reference Laboratory for Avian Influenza), Buczkowski, H., Ducatez, M., Fusaro, A., Gonzales, J. L., Kuiken, T., Mirinavičiūtė, G., Ståhl, K., Staubach, C., Svartström, O., Terregino, C., Willgert, K., Alarcón, E. and Kohnle, L. (2026) ‘Avian influenza overview March‒May 2026’, European Food Safety Authority Journal, 24(7), p. e10196. doi: 10.2903/j.efsa.2026.10196.

Kovalenko, G., Molozhanova, A., Halka, I. and Nychyk, S. (2017) ‘Antibody prevalence to influenza type A in wild boar of Northern Ukraine’, Vector Borne and Zoonotic Diseases, 17(12), pp. 836‒839. doi: 10.1089/vbz.2017.2118.

Krammer, F., Hermann, E. and Rasmussen, A. L. (2025) ‘Highly pathogenic avian influenza H5N1: history, current situation, and outlook’, Journal of Virology, 99(4), p. e0220924. doi: 10.1128/jvi.02209-24.

Krueger, W. S. and Gray, G. C. (2013) ‘Swine influenza virus infections in man’, Current Topics in Microbiology and Immunology, 370, pp. 201‒225. doi: 10.1007/82_2012_268.

Lombard, J., Stenkamp-Strahm, C., McCluskey, B., Abdul-Hamid, C., Cardona, C., Petersen, B. and Russo, K. (2025) ‘Invited review: The One Health challenges and opportunities of the H5N1 outbreak in dairy cattle in the United States’, Journal of Dairy Science, 108(7), pp. 6513‒6537. doi: 10.3168/jds.2024-26222.

Mironenko, A., Muzyka, N., Teteriuk, N., Radchenko, L., Popova, A., Waldenström, J. and Muzyka, D. (2026) ‘Genetic characterization of avian influenza virus A (H1N1) isolated from a fieldfare Turdus pilaris in Ukraine’, Microbiology Research, 17(1), p. 19. doi: 10.3390/microbiolres17010019.

Muramoto, Y., Noda, T., Kawakami, E., Akkina, R. and Kawaoka, Y. (2013) ‘Identification of novel influenza A virus proteins translated from PA mRNA’, Journal of Virology, 87(5), pp. 2455‒2462. doi: 10.1128/jvi.02656-12.

Muzyka, D., Pantin-Jackwood, M., Spackman, E., Stegniy, B., Rula, O. and Shutchenko, P. (2012) ‘Avian influenza virus wild bird surveillance in the Azov and Black Sea regions of Ukraine (2010‒2011)’, Avian Diseases, 56(4 Suppl), pp. 1010‒1016. doi: 10.1637/10157-040912-resnote.1.

Muzyka, D., Pantin-Jackwood, M. J., Spackman, E., Smith, D. M., Rula, O., Muzyka, N. and Stegniy, B. (2016a) ‘Isolation and genetic characterization of avian influenza viruses isolated from wild birds in the Azov‒Black Sea region of Ukraine (2001‒2012)’, Avian Diseases, 60(1 Suppl), pp. 365‒377. doi: 10.1637/11114-050115-reg.

Muzyka, D., Pantin-Jackwood, M., Starick, E. and Fereidouni, S. (2016b) ‘Evidence for genetic variation of Eurasian avian influenza viruses of subtype H15: the first report of an H15N7 virus’, Archives of Virology, 161, pp. 605‒612. doi: 10.1007/s00705-015-2629-2.

Muzyka, D., Rula, O., Tkachenko, S., Muzyka, N., Köthe, S., Pishchanskyi, O., Stegniy, B., Pantin-Jackwood, M. and Beer, M. (2019) ‘Highly pathogenic and low pathogenic avian influenza H5 subtype viruses in wild birds in Ukraine’, Avian Diseases, 63(1S), pp. 235‒245. doi: 10.1637/11879-042718-resnote.1.

Muzyka, N., Popova, A., Rula, O., Yurko, P., Chaplygina, A., Byrne, A. M. P., Lofts, A., Zohari, S., Koethe, S., Fair, J., Owen, J., Lewis, N., Pohlmann, A., Beer, M., Waldenström, J. and Muzyka, D. (2025) ‘Wild passerines as potential carriers and sources of avian influenza viruses in Ukraine’, Frontiers in Microbiology, 16, p. 1736454. doi: 10.3389/fmicb.2025.1736454.

Nguyen, T. Q., Hutter, C. R., Markin, A., Thomas, M., Lantz, K., Killian, M. L., Janzen, G. M., Vijendran, S., Wagle, S., Inderski, B., Magstadt, D. R., Li, G., Diel, D. G., Frye, E. A., Dimitrov, K. M., Swinford, A. K., Thompson, A. C., Snekvik, K. R., Suarez, D. L., Lakin, S. M., Schwabenlander, S., Ahola, S. C., Johnson, K. R., Baker, A. L., Robbe-Austerman, S., Torchetti, M. K. and Anderson, T. K. (2025) ‘Emergence and interstate spread of highly pathogenic avian influenza A(H5N1) in dairy cattle in the United States’, Science, 388(6745), p. eadq0900. doi: 10.1126/science.adq0900.

Peacock, T. P., Moncla, L., Dudas, G., VanInsberghe, D., Sukhova, K., Lloyd-Smith, J. O., Worobey, M., Lowen, A. C. and Nelson, M. I. (2025) ‘The global H5N1 influenza panzootic in mammals’, Nature, 637(8045), pp. 304‒313. doi: 10.1038/s41586-024-08054-z.

Pekar, J. E., Crespo-Bellido, A., Lemey, P., Bowman, A. S., Peacock, T. P., Ochoa, J. N., Rambaut, A., Pybus, O. G., Worobey, M. and Nelson, M. I. (2026) ‘Can H5N1 avian influenza in dairy cattle be contained in the US?’, Cell, 189(3), pp. 699‒705. doi: 10.1016/j.cell.2025.12.033.

Piret, J. and Boivin, G. (2020) ‘Pandemics throughout history’, Frontiers in Microbiology, 11, p. 631736. doi: 10.3389/fmicb.2020.631736.

Rula, О. M., Muzyka, N. M., Drozhzhe, Zh. M., Pishchanskyi, О. V., Stegniy, B. T. and Muzyka, D. V. (2024) ‘Serological monitoring of influenza A among wild and domestic ungulates in Ukraine’, Journal for Veterinary Medicine, Biotechnology and Biosafety, 10(3), pp. 29–36. doi: 10.36016/JVMBBS-2024-10-3-5.

Sapachova, M., Kovalenko, G., Sushko, M., Bezymennyi, M., Muzyka, D., Usachenko, N., Mezhenskyi, A., Abramov, A., Essen, S., Lewis, N. S. and Bortz, E. (2021) ‘Phylogenetic analysis of H5N8 highly pathogenic avian influenza viruses in Ukraine, 2016–2017’, Vector-Borne and Zoonotic Diseases, 21(12), pp. 979‒988. doi: 10.1089/vbz.2021.0031.

Scholtissek, C., Rohde, W., Von Hoyningen, V. and Rott, R. (1978) ‘On the origin of the human influenza virus subtypes H2N2 and H3N2’, Virology, 87(1), pp. 13‒20. doi: 10.1016/0042-6822(78)90153-8.

Shanta, R. N., Akther, M., Prodhan, M. A., Akter, S. H., Annandale, H., Sarker, S., Abraham, S. and Uddin, J. M. (2025) ‘Adaptation and outbreak of highly pathogenic avian influenza in dairy cattle: an emerging threat to humans, pets, and peridomestic animals’, Pathogens, 14(9) doi: 10.3390/pathogens14090846.

Shi, Y., Wu, Y., Zhang, W., Qi, J. and Gao, G. F. (2014) ‘Enabling the ‘host jump’: structural determinants of receptor-binding specificity in influenza A viruses’, Nature Reviews. Microbiology, 12(12), pp. 822‒831. doi: 10.1038/nrmicro3362.

Sreenivasan, C. C., Thomas, M., Kaushik, R. S., Wang, D. and Li, F. (2019) ‘Influenza A in bovine species: A narrative literature review’, Viruses, 11(6), p. 561. doi: 10.3390/v11060561.

Stegniy, B. T., Rula, O. M., Muzyka, N. M., Dunaiev, Yu. K., Busol, V. O., Kolchyk, O. V. and Muzyka, D. V. (2023) ‘Risk of Swine influenza for veterinary medicine and human health in Ukraine’, Journal for Veterinary Medicine, Biotechnology and Biosafety, 9(3), pp. 33–41. doi: 10.36016/JVMBBS-2023-9-3-6.

Suarez, D. L. (2016) ‘Influenza A virus’, in D. V. Swayne (ed.) Animal Influenza. 2nd ed. Ames, Iowa: Wiley & Sons, pp. 1–30. doi: 10.1002/9781118924341.ch1.

Wille, M. and Barr, I. G. (2022) ‘Resurgence of avian influenza virus’, Science, 376(6592), pp. 459‒460. doi: 10.1126/science.abo1232.

Yamayoshi, S., Watanabe, M., Goto, H. and Kawaoka, Y. (2016) ‘Identification of a novel viral protein expressed from the PB2 segment of influenza A virus’, Journal of Virology, 90(1), pp. 444‒456. doi: 10.1128/jvi.02175-15.