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Role of oxidative stress and glutathione system in the pathogenesis of nonalcoholic fatty liver disease

Abstract

In recent years nonalcoholic fatty liver disease transformed from uncommon clinical entity into common ailment along with alcoholic liver disease and viral hepatitis. Increase in the number of patients with nonalcoholic fatty liver disease is registered all over the world. Nevertheless the problem of pathogenesis of nonalcoholic fatty liver disease is still discussable. Oxidative stress is of first importance in the development of hepatitis on the background of hepatic steatosis. Glutathione system is the main defender of cells from oxidative stress that can be used in the formation of new approaches to the treatment of nonalcoholic fatty liver disease.

About the Authors

T. E. Promenasheva
Irkutsk State Medical University
Russian Federation


L. S. Kolesnichenko
Irkutsk State Medical University
Russian Federation


N. M. Kozlova
Irkutsk State Medical University
Russian Federation


References

1. Балаболкин М.И., Креминская В.М., Клебанова Е.М. Роль дисфункции эндотелия и окислительного стресса в механизмах развития ангиопатий при сахарном диабете 2-го типа // Кардиология. - 2004. - № 7. - С. 90-97

2. Кулинский В.И., Колесниченко Л.С. Обмен глутатиона // Успехи биологической химии. - 1990. Т. 31. - С. 157-179

3. Ланкин В.З., Бондарь Т.Н., Тихазе А.К. Влияние свободных жирных кислот на липопероксидазную активность антиоксидантных ферментов - Se- содержщей глутатионпероксидазы и неселеновой глутатион-трансферазы // Докл. АН СССР. - 1997. - Т. 357, № 5. - С. 828-831

4. Меньшикова Е.Б., Зенков Н.К., Сафина А.Ф. Окислительный стресс при ишемическом и репер- фузионном повреждении миокарда // Успехи соврем. биол. - 2006. - Т. 117, № 3. - С. 362-373

5. Николаев С.М., Шантанова Л.Н., Мондодоев А.Г. Свободнорадикальное окисление и скрининг антиоксидантов, адаптогенов с использованием биотест-систем // Бюл. ВСНЦ СО РАМН. - 2010. - № 2. - С. 196-200

6. Павлов Ч., Бакулин И. Неалкогольный стеатогепатит: клинические перспективы и принципы лечения // Врач. - 2007. - № 10. - C. 24-28

7. Скрипник І.М., Мельник Т.В., Потяженко М.М. Клінічна гепатологія. - Полтава: Дивосвіт, 2007. - 425 с

8. Хазанов А.И. Возможности прогрессирования алкогольного и неалкогольного стеатогепатита в цирроз печени // Рос. журн. гастроэнтерол., гепатол. и колопроктологии. - 2005. - Т. 15, № 2. - С. 26-32

9. Cadenas E., Davies K.J. Mitochondrial free radical generation, oxidative stress, and aging // Free Radic. Biol. Med. - 2000. - Vol. 29, N 3-4. - Р. 222-230.

10. Chen Y., Yang Y., Miller M.L. Hepatocyte-specific Gclc deletion leads to rapid onset of steatosis with mitochondrial injury and liver failure // Hepatology. - 2007. -Vol. 45, N 5. - Р. 1118-1128.

11. Comhair S.A., Erzurum S.C. The regulation and role of extracellular glutathione peroxidase // Antioxid. Redox. Signal. - 2005. - Vol. 7, N 1-2. - Р 72-79.

12. Hardwick R.N., Fisher C.D., Canet M.J., Lake A.D. et al. Diversity in antioxidant response enzymes in progressive stages of human nonalcoholic fatty liver disease // Drug Metab. Dispos. - 2010. - Vol. 38, N 12. - Р. 301-2293.

13. Hashemi M., Eskandari-Nasab E. Fazaeli A., Bahari A. et al. Association of genetic polimorphisms of glutathione-S-transferase genes (GSTT1, GSTM1 and GSTP1) and susceptibility to nonalcoholic fatty liver disease in Zahedan, Southeast Iran // DNA Cell Biol. - 2012. - Vol. 31, N 5. - Р. 7-672.

14. Higuchi Y. Chromosomal DNA fragmentation in apoptosis and necrosis induced by oxidative stress // Biochem. Pharmacol. - 2003. - Vol. 8, N 66. - P. 15271535.

15. Huang Z.Z. et al. Mechanism and significance of increased glutathione level in human hepatocellular carcinoma and liver regeneration // FASEB J. - 2001. - Vol. 15, N 1. - Р. 19-21.

16. Kalhan S.C., Guo L., Edmison J., Dasarathy S. et al. Plasma metabolomic profile in non-alcoholic fatty liver disease // Metabolism. - 2011. - Vol. 60, N 3. - Р. 404-413.

17. Kulinsky V.I., Kolesnichenko L.S. The glutathione system. II. Other enzymes, thiol-disulfide metabolism, inflammation and immunity, functions // Biochemistry (Moscow) Supplement Series Biomedical Chemistry. - 2009. - Vol. 3, N 3. - Р. 211-220.

18. Lu S.C. Regulation of hepatic glutathione synthesis: currents and controversies // Faseb. J. - 1999. - Vol. 13. - P. 1169-1181.

19. Montironi R. et al. Expression of pi-class glutathione S-transferase: two populations of high grade prostatic intraepithelial neoplasia with different relations to carcinoma // Mol. Pathol.- 2000. - Vol. 53, N 3. - Р. 122-128.

20. Pinto Н.С., Baptista A., Camilo M.E. Nonalcoholic steatohepatitis: clinico-pathological comparison with alcoholic hepatitis in ambulatory and hospitalized patients // Dig. Dis. Sci. - 2006. - Vol. 41. - Р. 172-179.

21. Rahman I., Adcock I.M. Oxidative stress and redox regulation of lung inflammation in COPD // Eur. Respir. J. - 2006. - Vol. 28, N 1. - Р. 219-242.

22. Rolo A.P., Teodoro J.S., Palmeira C.M. Role of oxidative stress in the pathogenesis of nonalcoholic steatohepatitis // Free Radic. Biol. Med. - 2012. - Vol. 1, N 1. - Р. 59-69.

23. Struznka L., Chalimoniuk M., Sulkowski G. The role of astroglia in Pb-exposed adult rat brain with respect to glutamate toxicity // Toxicology. - 2005. - Vol. 212, N 2-3. - Р 185-194.

24. Uysal S., Armutcu F., Aydogan T., Akin K. et al. Some inflammatory cytokine levels, iron metabolism and oxidant stress markers in subjects with nonalcoholic steatohepatitis // Clin. Biochem. - 2011. - Vol. 44, N 17-18. - Р. 9-1375.

25. Vernon G., Baranova A., Younossi Z.M. Systematic review: the epidemiology and natural history of non-alcoholic fatty liver disease and non-alcoholic steatohepatitis in adults // Aliment. Pharmacol. Ther. - 2011. - Vol. 34, N 3. - Р. 85-274.


Review

For citations:


Promenasheva T.E., Kolesnichenko L.S., Kozlova N.M. Role of oxidative stress and glutathione system in the pathogenesis of nonalcoholic fatty liver disease. Acta Biomedica Scientifica. 2014;(5):80-83. (In Russ.)

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