IMMUNE STATUS OF A MAN LONG AFTER CHRONIC RADIATION EXPOSURE
Abstract and keywords
Abstract (English):
Purpose: Assessment of major parameters of the system immunity in 376 Techa riverside residents affected by external γ- and internal (mainly due to 90Sr) irradiation 60–68 years after the onset of exposure. Material and methods: The study involved 376 residents of the settlements located in the basin of the Techa River which was contaminated due to releases of liquid radioactive waste of Mayak Production Association. Red bone marrow received the largest doses that reached 4457.1 mGy, mean dose value was 1080.8 ± 38.4 mGy. Doses to the thymus and peripheral organs of the immune system in the exposed individuals were much lower; mean dose value was 65.3 ± 4.9 mGy. The study of the systemic immunity included the analysis of the parameters that characterize functional status of adaptive and innate immunity, as well as of the cytokine system. Results: Pro-inflammatory changes of the cytokines spectrum (decrease of IL-4 in blood serum, increase of TNFα and IFNγ) were observed in exposed people with a background of involution changes. Conclusion: Persistent reduction in the number of neutrophils in blood against normal levels of granulocyte colony-stimulating and granulocyte-macrophage colony-stimulating factors in blood serum could be indicative of certain inefficiency of hematopoietic stem cell pool. The most distinct features of immunity in exposed persons concerned the cytokine spectrum which were inflammatory in nature and on the one hand could be involved in the mechanisms of development of long-term effects of radiation and on the other could have a protective effect on the protection of the body from cells carrying sublethal abnormalities.

Keywords:
chronic exposure, red bone marrow, adaptive and innate immunity, cytokines
References

1. Akleyev AV, Akleyev AA, Andreev CC, et al. Consequences of radioactive contamination of the Techa River. Akleyev AV (ed). Chelyabinsk. 2016. 390 p. (In Russ.).

2. Krestinina LY, Davis FG, Schonfeld S, Preston DL, Degteva M, Epifanova S, et al. Leukaemia incidence in the Techa River Cohort: 1953-2007. Br J Cancer. 2013;109:2886-93.

3. ICRP Publication 118. Early and late effects of radiation in normal tissues and organs - threshold doses for tissue reactions in a radiation protection context. Pergamon Press. Oxford. 2012:322.

4. UNSCEAR. Biological mechanisms of radiation actions at low doses. United Nations Scientific Committee on the Effects of Atomic Radiation. United Nations. New York. 2012.

5. Hayashi T, Morishita Y, Kubo Y, Kusunoki Y, Hayashi I, Kasagi F, et al. Long-term effects of radiation dose on inflammatory markers in atomic bomb survivors. Am J Med. 2005;118(1):83-6.

6. Glagolenko YuV, Drozhko YeG, Mokrov YuG, Rovnyi SI, Stukalov PM, Ivanov IA, et al. Reconstruction of the source parameters of the releases of liquid radioactive waste of the radiochemical plant into the Techa River. Report 1. Method development and main results. Issues of Radiation Safety. Special issue. 2008:76-91. (In Russ.).

7. Totolyan AA, Freidlin IS. Immune system cells. 2000:231. (In Russ.).

8. Mayansky AN, Wiksman MK. Method of assessment of functional activity of human neutrophils using nitroblue tetrazolium reduction test. Methodical recommendations. Kazan. 1979:11. (In Russ.).

9. Rebrova OYu. Statistical analysis of medical data. Using the STATISTICA application package. Moscow. 2002: 312. (In Russ.).

10. Medical-biological and ecological impacts of radioactive contamination of the Techa river. Edited by Akleyev AA, Kisselyov MF. Moscow. 2001:531. (In Russ.).

11. Akleyev AV, Kossenko MM. Generalization of the results of long-term study of immunity in the population exposed to radiation. Immunology. 1991;6:4-10. (In Russ.).

12. Akleyev AV, Veremeyeva GA, Silkina LA, Vozilova AV. Long term hemopoiesis and immunity status after chronic radiation exposure of red bone marrow in humans. CEJOEM. 1999; 5(2):113-29.

13. Akleev AV, Veremeeva GA, Kyoizumi S. Long-term effects of chronic radiation exposure on the level of somatic mutations in peripheral blood cells. Radiat. Biol. Radioecol. 1998;38(4):573-85.

14. Akleyev AV, Kossenko MM, Silkina LA, Degteva MO, Yachmenyov VA, Awa A, et al. Health effects of radiation incidents in the Southern Urals. Stem Cells. 1995;1:58-68.

15. Akleyev AV. Chronic radiation syndrome. Springer. 2014:410.

16. Pesternikova VS, Okladnikova ND. Assessment of bone marrow hematopoiesis in patients with chronic radiation sickness after 40 years of observation. Issues of Radiation Safety. 2004;4:41-5. (In Russ.).

17. Grebenyuk AN, Antushevich AE, Bejenar VF, Bovtushko VG, Kutsenko SA, Legeza VI, et al. Neutrophil and Extreme Effects. 1998. 216. (In Russ.).

18. Jerbin EA, Chukhlovin AB. Radiation Hematology. Moscow. 1989. 176. (In Russ.).

19. Lutckii AA, Zhirkov AA, Lobzin DY, Rao M, Alekseeva LA, Maeurer M, et al. Interferon-γ: biological function and application for study of cellular immune response. Journal Infectology. 2015;7(4):10-22. (In Russ.).

20. Hanahan D, Weinberg RA. The hallmarks of cancer: the next generation. Cell. 2011;144(5):646-74.

21. Akleyev AA. Neutrophil apoptosis among the residents of the Techa riverside villages in a long-term period of a chronic radiation exposure. Russ J Immunol. 2015 Aug;2(2):3-5. (In Russ.).

Login or Create
* Forgot password?