Molecular indicators reflecting the states of stress-limiting systems of mononuclear leucocytes in the blood, as well as the effects of low-intensive microwave radiation in patients with coronary artery disease were studied. The work it was evaluated the content in mononuclear leucocytes whole blood of components PI3P/AKT/mTOR/p70S6K1 of signaling pathway, heat shock proteins (HSP27, HSP70, HSP90), the concentra-tion of antioxidants and peroxides depending on the level of phosphorylation of the terminal protein kinase MAPK/SAPK of signaling pathway – p38. The results of the study. It was revealed the dependence of a level of studied factors from the degree of phosphorylation p38 in patients with coronary heart disease. It was defined the 38 p sensitivity to the effects of low-intensity microwave radiation, it is manifested by increased level of phosphorylation in the irradiated cul-tures. This study revealed the sensitivity to low-intensity microwave irradiation of content in the mononuclear cells phosphorylated forms of the protein kinases AMPK, AKT1, p70S6K1, as well as the antioxidant status and protein of p53-dependent initial content in the cell phosphorylated form p38. It was shown a possibility of microwave radiation to reduce the content in the cells of the protein kinase and p70 ACT more pronounced at high levels of phosphorylation p38.
coronary heart disease, p38, AMPK, AKT1, p70S6K1, antioxidants, microwave.
1. Oganov R.G., Kontsevaya A.V., Kalinina A.M. Ekonomicheskiy ushcherb ot serdechno-sosudistykh zabolevaniy v Rossiyskoy Federatsii. Kardiovask ter i prof. 2011. №4. S. 4-9.
2. Morozov V.N., Khadartsev A.A. K sovremennoy traktovke mekhanizmov stressa. Vestnik novykh meditsinskikh tekhnologiy. 2010. T. 17. № 1. S. 15-17.
3. Bondar´ S.S., Logatkina A.V., Arzhnikov V.V., Terekhov I.V. Immunoneyroendokrinnye vzaimosvyazi u patsientov s ishemicheskoy bolezn´yu serdtsa . Elektronnyy nauchnyy zhurnal APRIORI. Seriya: Estestvennye i tekhnicheskie nauki (elektronnyy resurs). 2015. № 6. URL: http://apriori-journal.ru/seria2/6-2015/Bondari-Logatkina-Arzhnikov-Terehov.pdf.
4. Khadartsev A.A., Logatkina A.V., Bondar´ S.S. Molekulyarnye mekhanizmy formirovaniya pato-logicheskikh izmeneniy i ikh korrektsiya u bol´nykh ishemicheskoy bolezney serdtsa. Problemy razvitiya nauki, meditsiny, obrazovaniya (teoriya i praktika) I mezhdunarodnaya zaochnaya nauchno-prakticheskaya kon-ferentsiya: Sbornik nauchnykh trudov. 2013. S. 217-219.
5. Koryakina L.B., Pivovarov Yu.I., Kuril´skaya T.E. Disfunktsiya sosudistogo endoteliya pri arterial´noy gipertonii i ishemicheskoy bolezni serdtsa (obzor literatury). Byulleten´ Vostochno-Sibirskogo nauchnogo tsentra Sibirskogo otdeleniya Rossiyskoy akademii meditsinskikh nauk. 2013. № 2-1 (90). S. 165-170.
6. Sistemnye podkhody v biologii i meditsine (sistemnyy analiz, upravlenie i obrabotka in-formatsii) / V.I. Starodubov i dr.; pod red. A.A. Khadartseva, V.M. Es´kova, A.A. Yashina, K.M. Kozyreva. Tula: OOO RIF «INFRA», 2008. 372 s.
7. Kidalov V.N., Khadartsev A.A., Yakushina G.N. Sanogenez i sanogennye reaktsii eritrona. pro-blemy meditsiny i obshchee predstavlenie o sanogeneze. Vestnik novykh meditsinskikh tekhnologiy. 2005. T. 12. № 3-4. S. 5-9.
8. Gapeev A.B. Issledovanie mekhanizmov biologicheskogo deystviya nizkointensivnogo elektro-magnitnogo izlucheniya krayne vysokikh chastot: uspekhi, problemy, perspektivy. Biomeditsinskaya radioelektronika. 2014. № 6. S. 20-30.
9. Betskiy O.V., Lebedeva N.N. Biologicheskie effekty nizkointensivnykh millimetrovykh voln (obzor). Biomeditsinskaya radioelektronika. 2015. № 1. S. 31-47.
10. Gapeev A.B., Chemeris N.K. Mekhanizmy biologicheskogo deystviya elektromagnitnogo izlucheniya krayne vysokikh chastot na kletochnom urovne. Biomeditsinskaya radioelektronika. 2007. № 2-4. S. 44-62.
11. Terekhov I.V., Petrosyan V.I., Dyagilev B.L., Solodukhin K.A., Arzhnikov V.V., Bondar´ S.S. Mo-lekulyarnye mekhanizmy immunoreabilitatsii pri ispol´zovanii nizkointensivnogo SVCh-izlucheniya /. Byulleten´ meditsinskikh internet-konferentsiy. 2011. T.1. № 5. S. 34-37.
12. Osobennosti biologicheskogo effekta nizkointensivnogo SVCh-oblucheniya v usloviyakh antigen-noy stimulyatsii mononuklearov tsel´noy krovi / I.V. Terekhov, K.A. Solodukhin, V.S. Nikiforov [i dr.]. Fizioterapevt. 2013. №1. S.26-32.
13. Vliyanie nizkointensivnogo SVCh-oblucheniya na vnutrikletochnye protsessy v mononuklearakh pri pnevmonii / K.A. Solodukhin, V.S. Nikiforov, M.S. Gromov [i dr.]. Meditsinskaya immunologiya. 2012. T.14. №6. S. 541-544.
14. Sposob terapevticheskogo vozdeystviya na biologicheskie ob´´ekty elektromagnitnymi volnami i ustroystvo dlya ego osushchestvleniya: pat. 2445134 Ros. Federatsiya: MPK: A61N500, A61N502/ Vla-skin S.V., Terekhov I.V., Petrosyan V.I. i dr. № 2010138921/14; zayavl. 21.09.2010; opubl. 20.03.2012, Byul. № 8. 20 s.: il.
15. Korolev Yu.N., Geniatulina M.S., Nikulina L.A., Mikhaylik L.V. Ul´trastrukturnye proyav-leniya regenerativnykh protsessov v kletkakh Sertoli pri deystvii nizkointensivnogo elektromagnitno-go izlucheniya v usloviyakh stressa u krys. Voprosy kurortologii, fizioterapii i lechebnoy fizicheskoy kul´tury 2015. № 3 S. 40-44.
16. Metabolicheskie effekty nizkointensivnoy detsimetrovoy fizioterapii pri arterial´noy gipertonii / Logatkina A.V., Bondar´ S.S., Terekhov I.V. [i dr.]. Vestnik novykh meditsinskikh tekhnolo-giy. 2015. T. 22. № 2. S. 71-77.
17. Morfofunktsional´nye aspekty protivoopukholevogo effekta nizkointensivnogo mikrovol-novogo rezonansnogo izlucheniya v eksperimente / Gudtskova T.N., Zhukova G.V., Garkavi L.Kh. [i dr.]. Byulleten´ eksperimental´noy biologii i meditsiny. 2010. T. 150. № 11. S. 595-600.
18. Gistofunktsional´nye preobrazovaniya v endokrinnykh i immunnykh organakh pod vliyaniem raz-lichnykh rezhimov elektromagnitnogo izlucheniya / Rodzaevskaya E.B., Polina Yu.V., Uvarova I.A. [i dr.]. Saratovskiy nauchno-meditsinskiy zhurnal. 2009. T. 5. № 1. S. 36-40.
19. Ushakov I.B. Shtemberg A.S., Shafirkin A.V. Reaktivnost´ i rezistentnost´ organizma mle-kopitayushchikh. M.: Nauka, 2007. 493 s.
20. Bax J., Baumgartner H., Ceconi C. European Guidelines on cardiovascular disease prevention in clin-ical practice (version 2012). Eur Heart J. 2012. №33. R. 1635-1701.
21. Schieven G. L. The biology of p38 kinase: a central role in inflammation. Curr. Top. Med. Chem. 2005. №5. R. 921-928.
22. Selman C., Tullet J.M., Wieser D. Ribosomal protein S6 kinase 1 signaling regulates mammalian life span. Science. 2009. №326. R. 140-144.
23. Bagley M.C., Davis T., Murziani P.G.S., Widdowson C.S., Kipling D. Use of p38 MAPK Inhibitors for the Treatment of Werner Syndrome Pharmaceuticals. 2010. №3. R.1842-1872. DOIhttps://doi.org/10.3390/ph3061842
24. Kumar S., Boehm J., Lee J. C. p38 MAP kinases: key signalling molecules as therapeutic targets for inflammatory diseases. Nat. Rev. Drug Discovery. 2003. №2. R. 717-726.
25. Huot J., Houle F., Marceau F., Landry J. Oxidative stress-induced actin reorganization mediated by the p38 mitogen-activated protein kinase/heat shock protein 27 pathway in vascular endothelial cells. Circ. Res. 1997. №80. R. 383-392.
26. Leszczynski D., Joenvaara S., Reivinen J., Kuokka R. Non-thermal activation of the hsp27/p38MAPK stress pathway by mobile phone radiation in human endothelial cells: molecular mechanism for cancer- and blood-brain barrier-related effects. Differentiation. 2002. №70. R. 120-129.
27. Stankiewicz W., Zdanowski R., Skopinska-Rosewska E., Ujazdowska D., Kieliszek J., Skopiński P., Bodera P., Sommer E. The effect of 900MHz microwave GSM signal on the proliferation of endothelial cells in vitro. Centr Eur J Immunol. 2011. №36(4).R. 215-219.
28. Pearson G., Robinson F., Beers Gibson T., Xu B.E., Karandikar M., Berman K., Cobb M.H. Mitogen-activated protein (MAP) kinase pathways: regulation and physiological functions. Endocrine Reviews. 2001. №22(2). R. 153-183. DOIhttps://doi.org/10.1210/er.22.2.153
29. Thobe B.M., Frink M., Hildebrand F., Schwacha M.G., Hubbard W.J., Choudhry M.A., Chaudry, I.H. The role of MAPK in Kupffer cell toll-like receptor (TLR) 2-, TLR4-, and TLR9-mediated signaling following trauma-hemorrhage. J. Cell. Physiol. 2007. №210. R.667-675. DOI:https://doi.org/10.1002/jcp.20860.
30. Sunkari V.G., Aranovitch B., Portwood N., Nikoshkov A. Effect of low-intensity electromagnetic field on fibroblast migration and proliferation. Electromagnetic Biology and Medicine. 2011. №30(2). R.80-85.
31. Funk R. H., Monsees T. K. Effects of electromagnetic fields on cells: Physiological and therapeutical approaches and molecular mechanisms of interaction. A review. Cells Tiss. Org. 2006. №182. R. 59-78.
32. Saliev T., Mustapova Z., Bulanin D., Kulsharova G., Mikhalovsky S. Therapeutic potential of elec-tromagnetic fields for tissue engineering and wound healing. Cell Proliferation. 2014. №47(6). R. 485-493.