SCIENTIFIC-PRACTICAL JOURNAL

| укр | рус |

 

 


No2(1) 2018

Back to the issue


DOI 10.37219/2528-8253-2018-2-04

Minin YuV, Kucherenko TI, Burlaka YuB, Klys YuG, Voroshylova NM, Verevka SV
Indices of peroxidation of proteins, lipids and antioxidant system as the markers of endogenous intoxication in patients with syndrome of obstructive sleep apnea
Minin Yuriy V.
State Institution “Institute of otolaryngology named after Prof. O.S. Kolomiychenko of the National Academy of Medical Sciences of Ukraine”; Kyiv, Ukraine.
Department of inflammatory diseases of ENT-organs, leading researcher. Doctor of Medical Sciences, Professor

Kucherenko Tetiana I.
State Institution “Institute of otolaryngology named after Prof. O.S. Kolomiychenko of the National Academy of Medical Sciences of Ukraine”; Kyiv, Ukraine.
Department of inflammatory diseases of ENT-organs, Senior Researcher
E-mail: tkucherenko@hotmail.com

Burlaka Julia B.
State Institution “Institute of otolaryngology named after Prof. O.S. Kolomiychenko of the National Academy of Medical Sciences of Ukraine”; Kyiv, Ukraine.
Laboratory of biochemistry
Researcher
PhD
E-mail: amtc@kndio.kiev.ua

Klys Julia G
State Institution “Institute of otolaryngology named after Prof. O.S. Kolomiychenko of the National Academy of Medical Sciences of Ukraine”; Kyiv, Ukraine.
Laboratory of biochemistry
Researcher
PhD
E-mail: amtc@kndio.kiev.ua

Voroshilova Natalya M
State Institution “Institute of otolaryngology named after Prof. O.S. Kolomiychenko of the National Academy of Medical Sciences of Ukraine”; Kyiv, Ukraine.
Laboratory of biochemistry
Senior Researcher
PhD
E-mail: amtc@kndio.kiev.ua

Verevka Sergiy V.
State Institution “Institute of otolaryngology named after Prof. O.S. Kolomiychenko of the National Academy of Medical Sciences of Ukraine”; Kyiv, Ukraine.
Laboratory of biochemistry, manager.
Doctor of Biological Sciences, Professor.
Email: verevka.biochem@gmail.com

Abstract

The syndrome of obstructive sleep apnea (OSAS) is accompanied by episodes of hypoxia and reoxygenation, which causes an increase in the level of active forms of free radicals that lead to the development of the oxidative stress.
The aim of this work was to investigate the intensity of peroxidation of proteins and lipids, the components of the antioxidant system and the biochemical parameters endogenous intoxication in patients with OSAS.
Materials and methods: Twenty patients with OSAS were examined at the SI "Prof. O.S. Kolomyychenko Institute of Otolaryngology NAMS of Ukraine" (Kiev). They were divided into two groups: 10 of them were with apnea sleep index less than 30 episodes of respiratory arrest per hour (IA<30), another 10 ones – with more than 30 episodes (IA>30). The control group was consisted of 10 healthy persons. The object of biochemical studies was blood serum. The intensity of the oxidative modification of blood serum proteins was estimated by 2,4-dinitrophenyl hydrazine reaction by Levin in modification of Reznick. The evaluation of the intensity of peroxide processes was determined by interaction with 2-thiobarbiturac acid (TBA) by the method of Goncharenko. The activity of catalase was determined by the method of Korolyuk et al. The content of free thiol groups (SH-) was determined by interaction with 5,5'-dithio-bis-(2-nitrobenzoic acid) by the method of Sokolovsky et al. The contents of medium weight molecules and tyrosine-containing peptides (TCP) were determined spectrophotometrically at 254 and 280 nm, respectively. Statistical processing of results was carried out using a program package of biometric data WinPEPI.
Results: In patients with OSAS whose IA<30, an increase of the level of TCP, oxidative modification of proteins, the content of TBA-positive products and a decrease in the level of SH-groups. In patients with IA>30, increased levels of medium weight molecules, TСP, oxidative modification of proteins, the content of TBA-positive products and the activity of catalase. A significant difference was observed in patients with syndrome of obstructive sleep apnea of varying degrees of severity of the content of aldehyde and ketone derivatives of neutral proteins; aldehyde derivatives of the main nature, the content of TBA-positive products and the activity of catalase.
Conclusions: The results of the conducted studies indicate an increase in the intensity of the processes of peroxidation of proteins and lipids, the change in the components of the antioxidant system and the development of endogenous intoxication in patients with OSAS.

Keywords

obstructive sleep apnea syndrome, endogenous intoxication, oxidative modification of proteins and lipids, antioxidant system.


Reference

  1. Smolyaninova YuV, Khromova YuA, Madaeva IM, Kolesnikova LI. [Diagnosis and treatment of patients with obstructive sleep apnea / hypopnea syndrome]. Acta Biomedica Scientifica. 2007; 1(53): 40-3. [Article in Russian].
  2. Ryabov GA, Azizov YuM, Pasechnik IN, Krylov VV, Tsvetkov DS. [Oxidative stress and endogenous intoxication in patients with critical conditions] Alexander Saltanov Intensive Care Herald. 2004; (4): 4-7. [Article in Russian].
  3. Malakhova MYa. [Endogenous intoxication as a reflection of compensatory adjustment of metabolic processes in the body]. Efferentnaya terapiya. 2000; (4): 3-14. [Article in Russian].
  4. Kopytova TV, Abalikhina EP, Schelchkova NA. [The value of lipid peroxidation in biological substrates for the assessment of metabolic processes in psoriasis]. Klin. Lab. Diagn. 2007; (11): 20-3. [Article in Russian].
  5. Buzunov RV, Legeyda IV, Tsaryova EV. Snoring and obstructive sleep apnea syndrome in adults and children: A Practical Guide for Physicians. Moscow; 2013. 1245 p. [In Russian].
  6. Zhadenov II, Karyakina EV, Belova SV, Goryachev VI. The method of determining endogenous intoxication. Patent RU 2193780 C1 G 01N33 / 68, G 01N33 / 48. Claims 04/26/2001, published on November 27, 2002. 7: 935-48. [In Russian].
  7. Gavrilov VB, Lobko NF, Konev SV. [Determination of tyrosine and tryptophan-containing peptides in blood plasma by absorption in the UV-region of the spectrum]. Klin. Lab. Diagn. 2004; 3: 12-6. [Article in Russian].
  8. Reznick AZ, Packer L. Oxidative damage to protein: spectrophotometric method for carbonil assay. Methods in Enzymology 1994; 233: 357-63. [Article in Russian].
  9. Dubinina EE, Burmistrov SO, Khodov DA, Porotov IG. Oxidative modification of human serum proteins, method of its determination. Biochemistry (Moscow) Supplement. Series B, Biomedical chemistry. 1995; 41 (1): 24-6. [Article in
    Russian].
  10. Goncharenko MS, Latin AM. Method for evaluating lipid peroxidation. Laborat. delo. 1985; (11): 60-1. [Article in Russian].
  11. Korolyuk, MA, Ivanova LI, Mayorova IG, Tokarev VE. Method for the determination of catalase activity. Laborat. delo. 1988; 1: 16-9. [Article in Russian].
  12. Sokolovsky VV, Kuzmina VS, Moskadynova GA, Petrova NN. Spectrophotometric determination of thiols in blood serum. Klin. Lab. Diagn. 1997; (11): 20-1. [Article in Russian].
  13. Gubler EV. Computational methods of analysis and recognition of pathological processes. Lviv: Medicine; 1978. 296 p. [In Russian].
  14. Maltsev EV. Methodology of scientific creativity in medicine: Practical aspects. Odessa: Astroprint; 2006. 120 p. [In Russian].
  15. Kozhamberdin KE, Muravleva LE, Omarova IM. Effect of fluoropyrimidines in combination with cisplatin on the level of tyrosine and tryptophancontaining peptides. Meditsina i ekologiya. 2007; (3): 70-4. [Article in Russian].
  16. Muravleva LE, Molotov-Luchansky VB, Klyuev AD, Bakenova RA, Kultanov BZ, Tankibaeva ON. Oxidative modification of proteins: problems and prospects of research. Fundamentalnyie issledovaniya. 2010; (1): 74-8. [Article in Russian].
  17. Dubinina EE, Pustogina AB. Oxidative modification of proteins, its role in pathological conditions. Ukr Biochem J. 2008; 80 (6): 18. [Article in Russian].
  18. Ilyicheva AS, Fomina MA. The state of oxidative carbonylation of muscle tissue proteins with severe hyperhomocysteinemia. I.P. Pavlov Russian Medical Biological Herald. 2015; (1): 45-51. [Article in Russian].
  19. Lavi EL, Lavie P. Molecular mechanisms of cardiovascular disease in OSAHS: the oxidative stress link. Eur Respir J. 2009 Jun;33(6):1467-84. doi: 10.1183/09031936.00086608.
  20. Stepovaya EA, Shakhristova EV, Ryazantseva NV. Oxidative modification of proteins and glutathione system during modulation of the redox status of epithelial cells of the mammary gland. Biochemistry (Moscow) Supplement. Series B, Biomedical chemistry. 2016; 62 (1): 64-8. [Article in Russian].
  21. Turan Н, Demir С. Investigation of Lipid Peroxidation and Antioxidant Enzyme Activity in Sleep Apnea Patients. Natural Science and Discovery. 2016; 2 (2): 36-40.
  22. Kopytova TV, Dmitrieva ON, Khimkina LN, Panteleeva GA. Oxidative modification of proteins and oligopeptides in patients with chronic dermatoses with the syndrome of endogenous intoxication. Fundamentalnyie issledovaniya. 2009; (6): 25-9. [Article in Russian].
  23. Dubinina EE. Oxygen metabolism products in the functional activity of cells. St. Petersburg: Med. Press; 2006. 397 p. [In Russian].
  24. Astashova TA, Astashov VV, Morozov SV. Chromato-mass spectrophotometric analysis of lipid peroxidation products in organs and tissues under the conditions of the toxicosis model. Problems of biological, medical, and pharmaceutical
    chemistry. 1998; (4): 52-5. [Article in Russian].
  25. Dubinina OYu. Oxidative stress and oxidative modification of proteins. Medical and clinical chemistry. 2001; 3 (2): 5-11. [Article in Ukrainian].
  26. Gubsky YuI, Belenichev IF, Levitsky EL, Kovalenko SI, Pavlov SV, Gancheva OV, et al. Toxicological effects of oxidative modification of proteins in various pathological conditions. Modern problems of toxicology. 2005; 8 (3): 20-7. [Article
    in Russian].
  27. Reimund E. The free radical flux theory of sleep. Med Hypotheses. 1994 Oct;43(4):231-3.
  28. Kolesnikova LI, Madaeva IM, Semenova NV, Solodova EI. Assessment of oxidative stress in women with postmenopausal sleep disorders using an integral indicator. Klin. Lab. Diagn. 2014; 12: 29-32. [Article in Russian].
  29. Menshchikova EB, Zenkov NK, Lankin VZ, Bondar IA, Trufakin VA. Oxidative stress: pathological states and diseases. Novosibirsk: ARTA; 2008. 284 p. [In Russian].
  30. Shevelkova AA, Vyushina AV. Oxidative modification of proteins and the content of thiols in the blood during physiological pregnancy. Journal of Obstetrics and Women's Diseases. 2012; LXI (4): 109-12. [Article in Russian].
  31. Bezruchko NV, Rubtsov GK, Ganyaeva NB, Kozlova GA, Sadovnikova DG. Catalase of biological environment of the human body and its clinical and biochemical value in the assessment of endotoxicosis. Tomsk State Pedagogical University Bulletin. 2012; 7 (122): 94-8. [Article in Russian].
  32. Leibenluft E, Schmidt PJ, Turner EH, Danaceau MA, Ashman SB, Wehr TA, et al. Effects of leuprolide-induced hypogonadism and testosterone replacement on sleep, melatonin, and prolactin secretion in men. J Clin Endocrinol Metab. 1997
    Oct;82(10):3203-7. doi: 10.1210/jcem.82.10.4270
  33. Janson C, Lindberg E, Gislason T, Elmasry A, Boman G. Insomnia in men a 10 year prospective population based study. Sleep. 2001 Jun 15;24(4):425-30. doi: 10.1093/sleep/24.4.425.
  34. Mallon L, Broman JE, Hetta J. Sleep complaints predict coronary artery disease mortality in males: a 12-year follow up study of a middle aged Swedish population. J Intern Med. 2002 Mar;251(3):207-16.
 

© 2019, Public Organization «Ukrainian Scientific Medical Society of Otorhinolaryngologists»