Functioning of the antioxidant system under psycho-emotional stress

Автор: Dachanidze Natalia, Burjanadze George, Kuchukashvili Zurab, Menabde Ketevan, Koshoridze Nana

Журнал: Журнал стресс-физиологии и биохимии @jspb

Статья в выпуске: 4 т.9, 2013 года.

Бесплатный доступ

It was studied intensity of lipid peroxidation and activity of enzymes from antioxidant system in blood plasma and cardiac muscle cells among laboratory rats under 40 days of isolation and violation of diurnal cycle. The received data show that at the background of quantitative changes in NO there also take place changes in the intensity of lipid peroxidation process, indicated by quantitative change in the concentration of Malone dialdehyde and diene conjugates, including Malonedialdehyde and marked with a reduced activity of antioxidant system enzymes, such as catalase and superoxide dismutase activity. Based on the results, we pro-posed that psychological stress is one of the factors contributing to the development of various cardiac diseases.

Еще

Antioxidant system, psycho-emotional stress, superoxide-dismutase, catalase, nitric oxide

Короткий адрес: https://sciup.org/14323794

IDR: 14323794

Список литературы Functioning of the antioxidant system under psycho-emotional stress

  • Ando T, Mimura K, Johansson CC, Hanson M, Mougiakakos D, Larsson C and Martins da Palma T, et al. (2008) Transduction with the antioxidant enzyme catalase protects human T cells against oxidative stress J Immunol, 181: 8382-8390
  • Burjanadze G, Dachanidze N, Karapetian M, Menabde K and Koshoridze N. (2009) Changes in white rat brain energetic cells under stress induced by violated diurnal cycle. Georgian Med News, 167: 84-89 (in Russian)
  • Cao W, Carney JM, Duchon A, Floyd RA and Chevion M. (2000) Oxygen free radical involvement in ischemia and reperfusion injury to brain. Neurosci Lett, 88: 233-238
  • Estevez AG, Spear N, Mannuel SM, Radi R, Henderson CE, Barbeito L and Beckman JS. (1998) Nitric oxide and superoxide contribute to motor neuron apoptosis induced by trophic factor deprivation. J Neurosci, 18: 923-931
  • Giordano FJ. (2005) Oxygen, oxidative stress, hypoxia, and heart failure. J ClinInvest, 115: 500-508
  • Griffiths Ch, Yamini B, Hall C and Garthwaite J. (2002) Nitric oxide inactivation in brain by a novel O2-dependent mechanism resulting in the formation of nitrate ions. Biochem J, 362: 459-464
  • Heitzer T, Schlinzig T, Krohn K, Meinertz T and Mu¨nzel T. (2001) Endothelial dysfunction, oxidative stress and risk of cardiovascular events in patients with coronary disease. Circulation, 104: 2673-2678
  • Kekelidze T, Khait I, Togliatti A, Benzecry JM and Holtzman D. (2001) Altered brain phosphocreatine and ATP regulation when mitochondrial creatine kinase is absent. J Neurosci Res, 66: 866-872
  • Koike H, Ibi D, Mizoguchi H, Nagai T, Nitta A, Takuma K and Nabeshima T, et al.(2009) Behavioral abnormality and pharmacological response in social isolation-reared mice. Behav Brain Res, 202: 114-121
  • Koshoridze NI, Menabde KO, Kuchukashvili ZT, Chachua MV and Chipashvili MD. (2010) Quantitative alterations in the products of lipid peroxidation under stress. J Stress Phys Biochem, 6: 4-9
  • Kunieda T, Minamino T, Katsuno T, Tateno K, Nishi J, Miyauchi H and Orimo M, et al. (2006) Cellular senescence impairs circadian expression of clock genes in vitro and in vivo. Circ Res, 98: 532-539
  • Landmesser U, Spiekermann S, Dikalov S, Tatge H, Wilke R, Kohler C and Harrison DG, et al. (2002) Vascular oxidative stress and endothelial dysfunction in patients with chronic heart failure: role of xanthine-oxidase and extracellular superoxide dismutase. Circulation, 106: 3073-3078
  • Levent G, Ali A, Ahmet A, Polat EC, Aytac C, Ayse E and Ahmet S. (2006) Oxidative stress and antioxidant defense in patients with chronic hepatitis C patients before and after pegylated interferon alfa-2b plus ribavirin therapy. J Transl Med, 4: 25-33
  • Leza JC, Salas E, Sawicki G, Russell JC and Radomski MW. (1998) The effect of stress on homeostasis in JCRLA-cp rats: the role of nitric oxide. J Pharmacol Exp Ther, 286: 1397-1403
  • Maekawa T, Kim S, Nakai D, Makino C, Takagi T, Ogura H and Yamada K, et al. (2010) Social isolation stress induces ATF-7 phosphorylation and impairs silencing of the 5-HT 5B receptor gene. EMBO J, 29: 196-208
  • McCord JM and Edeas MA. (2005) SOD, oxidative stress and human pathologies a brief history and a future vision. Biomed Pharmacother, 59: 139-142
  • Michara M and Uchiyama M. (1978) Determination of malonaldehyde precursor in tissues by thiobarbituric acid test. Biochem J, 86: 271-278
  • Nulton-Persson AC and Szweda LI. (2001) Modulation of mitochondrial function by hydrogen peroxide. J Biol Chem, 276: 23357-23361
  • Pahan K, Liu X, McKinney MJ, Wood C, Sheikh FG and Raymond JR. (2000) Expression of a dominant-negative mutant of p21(ras) inhibits induction of nitrid oxide synthase and activation of nuclear factor-kappB in primary astrocytes. J Neurochem, 74: 2288-2295
  • Pinna G, Dong E, Matsumoto K, Costa E and Guidotti A. (2003) In socially isolated mice, the reversal of brain allopregnanolone down-regulation mediates the anti aggressive action of fluoxetine. Proc Natl Acad Sci USA, 100: 2035-2040
  • Pinna G, Dong E, Matsumoto K, Costa E and Guidotti A. (2003) In socially isolated mice, the reversal of brain allopregnanolone down-regulation mediates the anti-aggressive action of fluoxetine. Proc Natl Acad Sci USA, 100: 2035-2340
  • Pinna G, Agis-Balboa RC, Zhubi A, Matsumoto K, Grayson DR, Costa E and Guidotti A. (2006) Imidazenil and diazepam increase locomotor activity in mice exposed to protracted social isolation. Proc Natl Acad Sci USA, 103: 4275-4280
  • Schlegel J, Wyss N, Schu¨ rch U, Schnyder T, Quest A, Wegmann G and Eppenberger HM, et al. (1988) Mitochondrial creatine kinase from cardiac muscle and brain are two distinct isoenzymes but both form octameric molecules. J Biol Chem, 263: 16963-16969
  • Sevanian A, Shen L and Ursini F. (2000) Inhibition of LDL oxidation and oxidized LDL-induced cytotoxicity by dihydropyridine calcium antagonists. Pharm Res, 17: 999-1006
  • Skornyakov VI, Kozhemyakin LA, Smirnov VV, Poliakova MA and Chulkevich GF. (1988) Products in lipid peroxidation cerebrospinal fluid in patients with craniocerebral traumas. Lab Delo, 8: 14-16
  • Tasset I, Pena J, Jimena I, Feijoo M, Del Carmen Munoz M, Montilla P and Tu´nez I. (2008) Effect of 17beta-estradiol on olfactory bulbectomy-induced oxidative stress and behavioral changes in rats. Neuropsychiatr Dis Treat, 4: 441-449
  • Weiss JN and Lamp ST. (1987) Glycolysis preferentially inhibits ATP-sensitive Kþchannels in isolated guinea pig cardiac myocytes. Science, 238: 67-69
Еще
Статья научная