Preview

Bulletin of NSAU (Novosibirsk State Agrarian University)

Advanced search

Effect of immunomodulator Roncoleukin on some indices of nonspecific immunity of arctic char

https://doi.org/10.31677/2072-6724-2024-71-2-235-241

Abstract

Health protection of aquacultured hydrobionts faces the problem of correcting immunodeficiency states of various genesis. Immunosuppression is associated with the development of opportunistic infections. In addition, the immuno-physiological status of farmed fish is directly related to fish production and, consequently, to the economic performance of aquaculture enterprises. The use of immune-correcting drugs in aquaculture is one of the new effective methods of controlling fish diseases. One such drug is Roncoleukin (recombinant interleukin-2), which provides the cellular component of adaptive immunity. Its use in fish farming has yielded positive results in sturgeon, carp and young salmon fish. In 2023 in the cold-water basin farm of IE Romanov (Leningrad Region) on three-year old Arctic char Salvelinus alpinus (Linnaeus, 1758) the effect of the preparation “Roncoleukin” on the indices of nonspecific immunity was evaluated. As a result of the experiment, the parameters characterizing the intensity of anti-infective immunity of fish bactericidal activity of blood serum, the level of C-reactive protein, the content of circulating nonspecific immune complexes and phagocytic activity of neutrophils were studied. The study showed a high level of bactericidal activity of blood serum in control and experimental fish and, as a consequence, the absence of immunodeficient individuals. The high index of neutrophil phagocytic activity in Arctic char fed Ronkoleikin indicates the stimulating effect of this drug on the mechanisms of cellular immunity. This indirectly confirms the higher content of immune complexes and the number of individuals with a positive level of C-reactive protein in the group of experimental fish.

About the Authors

D. V. Mikryakov
Institute for Biology of Inland Waters. I.D. Papanin RAS
Russian Federation
  1. D. biol. Sciences.

Borok



T. A. Nechaeva
St. Petersburg Agrarian State University
Russian Federation

Doctor of Agricultural Sciences.

St. Petersburg Pushkin



T. A. Suvorova
Institute for Biology of Inland Waters. I.D. Papanin RAS
Russian Federation

Researcher.

Borok



S. V. Kuzmicheva
Institute for Biology of Inland Waters. I.D. Papanin RAS
Russian Federation

Researcher.

Borok



G. Y. Pronina
RGAU Moscow Agricultural Academy. K.A. Timiryazeva
Russian Federation

Doctor of Biol. Sci.

Moscow



V. A. Nazarov
IP Romanov
Russian Federation

Chief fish farmer.

Village Lopukhinka, Leningrad region



M. I. Kovalchuk
IP Romanov
Russian Federation

Fish farmer.

Village Lopukhinka, Leningrad region



References

1. Aleksandrov S.N., Sadkovoe rybovodstvo (Cage fish farming), Moscow: Stalker, 2005, 270 p.

2. Bogeruk A.K., Rybnoe khozyaistvo, 2005, No. 4, pp. 14–18. (In Russ.)

3. Atlas presnovodnyh ryb Rossii (Atlas of Russian Freshwater Fishes), Moscow: Nauka, 2002, 379 p.

4. Ryby v zapovednikakh Rossii (Fish in Russian nature reserves), Ed. Yu.S. Reshetnikova, Moscow: T-vo nauchnykh izdaniy KMK, 2010, Vol. 1, 627 р.

5. Golod V.M., Nikandrov V.Ya., Pavlisov A.A., Shindavina N.I., Lukin A.A., Lipatova M.I., Arktika: ekologiya i ekonomika, 2018, No. 3 (31), pp. 137–143. (In Russ.)

6. Golovina N.A., Strelkov Yu.A., Voronin V.N., Golovin P.P., Evdokimova E.B., Yukhimenko L.N., Ikhtiopatologiya (Ichthyopathology), Moscow: Mir, 2003, 448 p.

7. Grishchenko L.I. Akbaev M.Sh., Bolezni ryb s osnovami rybovodstva (Fish diseases with basics of fish farming), Moscow: Kolos, 2013, 479 p.

8. Schaperclaus W., Fischkrankheiten, Berlin: Academic-Verlag., 1979, Vol. 1, 510 p.

9. Ostroumova I.N., Biologicheskie osnovy kormleniya ryb (Biological basis of fish feeding), Saint Petersburg: GONIORH, 2001, 372 p.

10. Burlachenko I.V., Teoreticheskie i prikladnye aspekty povysheniya rezistentnosti osetrovykh ryb v akvakul’ture (Theoretical and applied aspects of increasing the resistance of sturgeon fish in aquaculture), abstract dis. Doctors of Biology sciences, 2007, 319 p. (in Russ).

11. Shcherbina M.A., Gamygin E.A., Kormlenie ryb v presnovodnoi akvakul’ture (Feeding fish in freshwater aquaculture), Moscow: Agricultural technologies, 2015, 292 p.

12. Gavrilin K.V. Suvorova T.A., Ponomarev A.K., Trudy VNIRO, 2016, Vol. 162, pp. 145–149. (In Russ.)

13. Nechaeva T.A., Ostrovskii M.V., Mezhdunarodnyi vestnik veterinarii, 2009, No. 3, pp. 43–49. (In Russ.)

14. Sich G.O., Gavrilova I.P., Sakharova K.O., Ostrovs’kii M.V., Maistrenko M.I., Buchats’kii L.P., Ribogospodarska nauka Ukraini, 2009, No. 3, pp. 98–101.

15. Grinevich Yu.A., Alferov A.N., Laboratornoe delo, 1981, No. 8, pp. 493–496. (In Russ.)

16. Shubich M.G., Tsitologiya, 1974, No. 10, pp. 1321–1322. (In Russ.)

17. Mikryakov V.R., Zakonomernosti funktsionirovaniya immunnoi sistemy presnovodnykh ryb (Patterns of functioning of the immune system of freshwater fish), Abstract. dis. doc. biol. Sci., Moscow, 1984, 37 p.

18. Mikryakov V.R., Zakonomernosti formirovaniya priobretennogo immuniteta u ryb (Patterns of formation of acquired immunity in fish), Rybinsk: Izd-vo IBVV RAN, 1991, 153 p.

19. Roit A., Brostoff Dzh., Meil D., Immunologiya (Immunology), Moscow: Mir, 2000, 592 p.

20. Van Muiswinkel W., Vervoorn-Van der Wal B., The immune system of fish, Fish Diseases and Disorders, 2006, Vol. 1, pp. 678–701.

21. Koikho R., Sanshain D., Bendzhamini E., Immunologiya (Immunology), Moscow: Academy, 2008, 368 p.

22. Van der Marel M.C., Carp mucus and its role in mucosal defense: PhD Thesis, Wageningen University, The Netherlands, 2012, 189 p.

23. Campoverde C., Milne D.J., Estévez A., Duncan N., Secombes C.J., Andree K.B., Ontogeny and modulation after PAMPs stimulation of β-defensin, hepcidin, and piscidin antimicrobial peptides in meagre (Argyrosomusregius), Fish Shellfish Immun, 2017, Vol. 69, pp. 200–210.

24. Bottazzi B., Doni A., Garlanda C., Mantovani A., Anintegrated view of humoral innate immunity: pentraxins as a paradigm, Ann. Rev. Immun, 2010, Vol. 28, pp. 157–183.

25. Lee P.T., Bird S., Zou J., Martin S.A.M., Phylogeny and expression analysis of C-reactive protein (CRP) and serum amyloid-P (SAP) like genes reveal two distinct groups in fish, Fish & Shellfish Immunology, 2017, Vol. 65, pp. 42–51.

26. Nazarov P.G., Meditsinskii akademicheskii zhurnal, 2010, Vol. 10, No. 4, pp. 107–124. (In Russ.)

27. Loginov S.I., Smirnov P.N., Trunov A.N., Immunnye kompleksy u zhivotnykh i cheloveka: norma i patologiya (Immune complexes in animals and humans: norm and pathology), Novosibirsk: Sib. Department. IEVS and Far East Russian Academy of Agricultural Sciences, 1999, 144 p.


Review

For citations:


Mikryakov D.V., Nechaeva T.A., Suvorova T.A., Kuzmicheva S.V., Pronina G.Y., Nazarov V.A., Kovalchuk M.I. Effect of immunomodulator Roncoleukin on some indices of nonspecific immunity of arctic char. Bulletin of NSAU (Novosibirsk State Agrarian University). 2024;(2):235-241. (In Russ.) https://doi.org/10.31677/2072-6724-2024-71-2-235-241

Views: 139


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2072-6724 (Print)