Peculiarities of changes in a functional condition of pro-oxidant and antioxidant systems in guinea pigs’ lungs in experimental allergic alveolitis under the conditions of immobilization stress
DOI:
https://doi.org/10.12775/JEHS.2021.11.09.095Keywords
experimental allergic alveolitis, immobilization stress, peroxide lipid oxidation, antioxidant systemAbstract
We have analyzed the results of investigation of alterations in indices of pro-oxidant (conjugated diene and malondialdehyde) and antioxidant (superoxide dismutase, ceruloplasmin, catalase) systems in guinea pigs’ lungs in experimental allergic alveolitis in the dynamics of EAA development under the conditions of immobilization stress. The investigation was conducted on 62 female guinea pigs weighing 180-220 g, divided into 4 groups: I – intact guinea pigs (n=20), II – guinea pigs (n=14) with EAA under the conditions of IS (1st day); III – guinea pigs (n=14) with EAA under the conditions of IS (2nd day); IV – guinea pigs (n=14) with EAA under the conditions of IS (64th day). The results of experimental investigation showed that a significant increase in conjugated diene level in animals’ lungs was observed at all stages of EAA development under the conditions of immobilization stress as compared with control group, indicating activation of this marker. The same changes occurred with MDA content, indicating excessive accumulation of this lipid peroxidation product in lung tissue. Intensive synthesis of free radical compounds caused activation of some components of enzymatic system of antioxidant defense. In particular, a moderate decrease in superoxide dismutase activity in lung tissue is observed in response to increased level of LOPs at early stages of EAA and immobilization stress development as compared with the indices in intact animals. The same situation is observed with catalase and ceruloplasmin activity in the lungs of guinea pigs with modeled AA and IS.
References
Avdeyev SN, Avdeyeva OYe, Chuchalin AG. Ekzogennyy allergicheskiy al'veolit. RMZH. Russkiy meditsinskiy zhurnal. 2007; 6: 20–32. [in Rusian]
Gavrisyuk VK, Strafun OV. Gipersensitivnyy pnevmonit. Zdorov’ya Ukraí̈ni. 2016; 2(34): 22–23. [in Rusian]
Campbell JM. Acute symptoms following work with hay. Br. Med. J., 1932; 2: 1143–1144.
Lacasse Y, Selman M, Costabel U. et al. Clinical diagnosis of hypersensitivity pneumonitis. Am. J. Respir. Crit. Care Med. 2003; 168: 952–958.
Reed CE, Barbee RA. Pigeon-breeders’ lung: a newly observed interstitial pulmonary disease. JAMA. 1965; 193: 261–265.
Gavrisyuk VK. Printsipy lecheniya bol'nykh idiopaticheskim legochnym fibrozom. Zdorov’ya Ukraí̈ni. 2017; 1 (38) : 20–22. [in Rusian]
Mukhin N.A. Interstitsial'nyye bolezni legkikh. Litterra. Moskva. 2007: 434 s.
Makap'yants NN, Shmelev YeI. Novyye skhemy terapii pri ostrykh, podostrykh i khronicheskikh variantakh ekzogennogo allergicheskogo al'veolita. Vest. Ros. akad. med. Nauk. 2012; 11: 39–44. [in Rusian]
Khanningkheyk G, Richerson KH. Ekzogennyy allergicheskiy al'veolit. From Harrison’s Principles of Internal Medicine. 14thed. 2002; 78 – 80. [in Rusian]
Sharry C, Anderson K, Bourke SJ, Boyd G. Takes your breath away — the immunology of allergic alveolitis. Clin. Exp. Immunol. 2002; 128: 3–9.
Salvaggio JE, De Shazo RD. Pathogenesis of hypersensitivity pneumonitis. Chest. 1986; 89: 190 P.
Salvaggio JE. Immune reactions in allergic alveolitis. EUR Respir. J.Suppl. 1991; 13: 47 –59.
Semenzato G, Agostini C, Zambello R. et al. Lung T cells in hypersensitivity pneumonitis: phenotypic and functional analyses. J. Immunol. 1986; 137(4): 1164–1172.
Khasky AD, Smith JC. Stress, relaxation states, and creativity. Percept. Mot. Skills. 2000; 88 (22): 409 - 416.
Karanth J, Jeevaratnam K. Oxidative stress and antioxidant status in rat blood, muscle: effect of dietary lipid, carnitine and exercise bit. J. Vitam. Nutr. Res. 2005; 75(5): 333-339.
Orekhov OO, Kirilov YUA. Patomorfologiya legkikh i mikrotsirkulyatornogo rusla malogo kruga krovoobrashcheniya pri khronicheskom eksperimental'nom allergicheskom al'veolite. Arkhiv patologii. 1985; 10: 54–61. [in Rusian]
Gorizontov PD, Belousova OI, Fedotov MI. Stress i sistema krovi. M.: Meditsina. 1983: 338 P. [in Rusian]
Gavrilov AB, Myshkorudnaya MI. Spektrofotometricheskoye opredeleniye soderzhaniya gidroperekisey lipidov v plazme. Laboratornaya diagnostika ishemicheskoy bolezni serdtsa. K.: Zdorov'ya. 1989: 170-171.[in Rusian]
Korobeynikov EN. Modifikatsiya opredeleniya produktov POL v reaktsii s tiobarbiturovoy kislotoy Lab. delo. 1989; 7: 8-10[in Rusian]
Fried R. Enzymatic and non-enzymatic assay of super oxide dismutase. Biochemie. 1975; 57(65): 657-660.
Holmes R, Masters C. Epigenetic interconversions of the multiple forms of mouse liver catalase. FEBS Lett. 1970; 11(1): 45-48.
Kolb VG, Kamyshnikov VS. Opredeleniye aktivnosti tseruloplazmina v krovi. Spravochnik po klinicheskoy khimii. Minsk: Bela rus'. 1982; 290–291. [in Rusian]
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