Yıl: 2012 Cilt: 23 Sayı: 1 Sayfa Aralığı: 38 - 45 Metin Dili: Türkçe İndeks Tarihi: 29-07-2022

Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice

Öz:
Amaç: Bu calışmada, beta-glukanın deneysel tıkanma sarılığı modelinde akciğer uzerine koruyucu etkisinin araştırılması amaclandı. Yöntem: Her biri rastgele secilmiş yedi Wistar Albino rattan oluşan, Sham (1), kontrol (2) ve tedavi grupları (3,4,5) olmak uzere toplam beş grup oluşturuldu. Beta-glukan Grup 3e koledok ligasyonundan sonra, Grup 4e ligasyondan once ve sonra verildi. Grup 5e ise on tedavi olarak ligasyondan once verildi. Beta-glukan uygulaması, 50 mg/kg/gun şeklinde tek doz halinde gavaj yoluyla on gun boyunca gercekleştirildi. Serumda superoksit dismutaz, myeloperoksidaz; akciğer dokusunda malondialdehit, lipid hidroperoksidaz, glutatyon; bronkoalveoler lavaj sıvısında laktat dehidrogenaz olcumleri ile histopatolojik değerlendirilme yapıldı. Bulgular: Kan PNL duzeyi, kontrol grubunda en yuksek iken sham ve tedavi gruplarında duşuk idi. Kontrol grubu ile karşılaştırıldığında serum superoksit dismutaz ve doku glutatyon duzeyleri Grup 3 ve 4te belirgin yuksek iken (p≤0.04) Grup 3 ile 4 arasında farklılık gozlenmedi. Grup 3 ve 4te malondialdehit, lipid hidroperoksidaz, myeloperoksidaz değerleri belirgin duşuk idi. Bununla birlikte Grup 3 ile 4 arasında malondialdehit ve lipid hidroperoksidaz de.erleri farklı değildi. Bronkoalveoler lavaj sıvısındaki LDL değerleri tum tedavi gruplarında (Grup 3,4,5) anlamlı derecede duşuk idi (p≤0.008). Kontrol grubu ile karşılaştırıldığında akci. er hasarının tedavi gruplarında oldukca sınırlı olduğu tespit edildi (p<0.001). Sonuç: Bu calışma, tıkanma sarılı.ında betaglukanı n akciğer dokusunda oksidatif hasara karşı koruyucu etkiye sahip olduğunu gostermektedir.
Anahtar Kelime: Akciğer hasarı Oksidatif stres beta-Glukan Sarılık, tıkanma

Konular: Cerrahi

Deneysel tıkanma sarılığında beta-glukanın akut akciğer hasarına etkisi

Öz:
Background/aims: This study aimed at investigating the protective effects of beta-glucans on the lungs in obstructive jaundice. Methods: In total, five groups -Sham (1), control (2) and treatment groups (3,4,5)- were established; each comprising randomly selected seven Wistar Albino rats. Beta-glucan was given after choleduct ligation in Group 3 while it was given before and after the choleduct ligation in Group 4. As pre-treatment beta-glucan was given before ligation in Group 5. Beta-glucan was administered in a single dose of 50 mg/kg/day by gavage for a ten-day period. Superoxide dismutase, and myeloperoxidase levels in serum; malondialdehyde, lipid hydroxyperoxidase and glutathione levels in lung tissue; lactate dehydrogenase levels in bronchoalveolar lavage fluid were measured. Results: The blood polymorphonuclear leukocytes level was highest in the control group and lower in the sham and treatment groups. Serum superoxide dismutase and tissue glutathione values were significantly higher in Groups 3 and 4 (p&#8804;0.04) whilst Groups 3 and 4 did not differ from each other. In Groups 3 and 4 malondialdehyde, lipid hydroxyperoxidase, and myeloperoxidase values were significantly lower. However, Groups 3 and 4 did not differ for malondialdehyde or lipid hydroxyperoxidase values. Lactate dehydrogenase level in the bronchoalveolar lavage fluid was significantly lower in all of the treatment groups (Groups 3,4,5) (p&#8804;0.008). When compared to the control group, it was observed that lung damage was much more limited in the treatment groups (p<0.001). Conclusion: This study suggests that beta-glucan exhibits protective effect in pulmonary tissue against oxidative damage in obstructive jaundice.
Anahtar Kelime: beta-Glucans Jaundice, Obstructive Lung Injury Oxidative Stress

Konular: Cerrahi
Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. White JS, Hoper M, Parks RW, et al. Patterns of bacterial translocation in experimental biliary obstruction. J Surg Res 2006; 132: 80-4.
  • 2. Doğan U, Karabulut Z, Hamamc› O, et al. N-asetilsistein’in tıkanma sarılığında bakteriyel translokasyona, karaciğer ve ileumdaki yapısal değişikliklere etkisi. Türk Cerrahi Derg 2005; 21: 15-20. (In Turkish)
  • 3. Sheen-Chen SM, Chau P, Harris HW. Obstructive jaundice alters Kupffer cell function independent of bacterial translocation. J Surg Res 1998; 80: 205-9.
  • 4. Papakostas C, Bezirtzoglou E, Pitiakoudis M, et al. Endotoxinemia in the portal and the systemic circulation in obstructive jaundice. Clin Exp Med 2003; 3: 124-8.
  • 5. Akca T, Canbaz H, Tataroglu C, et al. The effect of Nacetylcysteine on pulmonary lipid peroxidation and tissue damage. J Surg Res 2005; 129: 38-45.
  • 6. Orellana M, Rodrigo R, Thielemann L, Guajardo V. Bile duct ligation and oxidative stress in the rat: effects in liver and kidney. Comp Biochem Physiol C Toxicol Pharmacol 2000; 126: 105-11.
  • 7. Chang SW, Ohara N. Chronic biliary obstruction induces pulmonary intravascular phagocytosis and endotoxin sensitivity in rats. J Clin Invest 1994; 94: 2009-19.
  • 8. Xiping Z, Jun F, Chengjun W, et al. Effect of salvia miltiorrhizae on pulmonary apoptosis of rats with severe acute pancreatitis or obstructive jaundice. Inflammation 2009; 32: 287-95.
  • 9. Rahman I, MacNee W. Oxidative stress and regulation of glutathione in lung inflammation. Eur Respir J 2000; 16: 534-54.
  • 10. Çavdar C, Sifil A, Çamsar› T. Hastal›klar›n patogenez ve tedavisinde reaktif oksijen partikülleri ve antioksidanlar. Turk Neph Dial Transpl 1997; 3-4: 96-101. (In Turkish)
  • 11. Pelizon AC, Kaneno R, Soares AM, et al. Immunomodulatory activities associated with b-glucan derived from Saccharomyces cerevisiae. Physiol Res 2005; 54: 557-64.
  • 12. Rice PJ, Adams EL, Ozment-Skelton T, et al. Oral delivery and gastrointestinal absorption of soluble glucans stimulate increased resistance to infectious challenge. J Pharmacol Exp Ther 2005; 314: 1079-86.
  • 13. Chen J, Seviour R. Medicinal importance of fungal β-(1-- >3), (1-->6)-glucans. Mycol Res 2007; 111: 635-52.
  • 14. Sener G, Toklu H, Ercan F, Erkanli G. Protective effect of beta glucan against oxidative organ injury in a rat model of sepsis. Int Immunopharmacol 2005; 5: 1387-96.
  • 15. Jung K, Ha Y, Ha SK, et al. Antiviral effect of Saccharomyces cerevisiae β-glucan to swine influenza virus by increased production of interferon-gamma and nitric oxide. J Vet Med B Infect Dis Vet Public Health 2004; 51: 72-6.
  • 16. Hetland G, Ohno N, Aaberge IS, Lovik M. Protective effect of β-glucan against systemic Streptococcus pneumoniae infection in mice. FEMS Immunol Med Microbiol 2000; 27: 111-6.
  • 17. Liang J, Melican D, Cafro L, et al. Enhanced clearance of a multiple antibiotic resistant Staphylococcus aureus in rats treated with PGG-glucan is associated with increased leukocyte counts and increased neutrophil oxidative burst activity. Int J Immunopharmacol 1998; 20: 595-614.
  • 18. Kernodle DS, Gates H, Kaiser AB. Prophylactic anti-infective activity of poly- [1-6]-b-D-glucopyranosyl-[1-3]-b-Dglucopryanose glucan in a guinea pig model of staphylococcal wound infection. Antimicrob Agents Chemother 1998; 42: 545-9.
  • 19. Wei D, Zhang L, Williams DL, Browder IW. Glucan stimulates human dermal fibroblast collagen biosynthesis through a nuclear factor-1 dependent mechanism. Wound Repair Regen 2002; 10: 161-8.
  • 20. Dinelek H. Deneysel t›kanma sar›l›¤› modelinde beta glukan› n bakteriyel translokasyonu önlemedeki etkinli¤i. Isparta, Suleyman Demirel University, Medical Faculty, Department of General Surgery, Thesis of Speciality in Medicine, 2005. (In Turkish)
  • 21. Cruz A, Tasset I, Ramírez LM, et al. Effect of melatonin on myocardial oxidative stress induced by experimental obstructive jaundice. Rev Esp Enferm Dig 2009; 101: 460-3.
  • 22. Demirbilek S, Tas E, Gurunluoglu K, et al. Fluvastatin reduced liver injury in rat model of extrahepatic cholestasis. Pediatr Surg Int 2007; 23: 155-62.
  • 23. Bayrak O, Turgut F, Karatas OF, et al. Oral beta-glucan protects kidney against ischemia/reperfusion injury in rats. Am J Nephrol 2008; 28: 190-6.
  • 24. Alptekin N, Mehmetcik G, Uysal M, Toker GA. Evidence for oxidative stress in the hepatic mitochondria of bile duct ligated rats. Pharmacol Res 1997; 36: 243-7.
  • 25. Cruz A, Padillo FJ, Túnez I, et al. Melatonin protects against renal oxidative stress after obstructive jaundice in rats. Eur J Pharmacol 2001; 425: 135-9.
  • 26. Ara C, Kirimlioglu H, Karabulut AB, et al. Protective effect of resveratrol against oxidative stress in cholestasis. J Surg Res 2005; 127: 112-7.
  • 27. Dulundu E, Ozel Y, Topaloglu U, et al. Grape seed extract reduces oxidative stress and fibrosis in experimental biliary obstruction. J Gastroenterol Hepatol 2007; 22: 885-92.
  • 28. Sener G, Toklu HZ, Cetinel S. β-Glucan protects against chronic nicotine-induced oxidative damage in rat kidney and bladder. Environ Toxicol Pharmacol 2007; 23: 25–32.
  • 29. Toklu HZ, Sehirli AO, Velio¤lu-O¤ünç A, et al. Acetaminophen- induced toxicity is prevented by β-D-glucan treatment in mice. Eur J Pharmacol 2006; 543: 133-40.
  • 30. Sener G, Ekflio¤lu-Demiralp E, Cetiner M, et al. β-glucan ameliorates methotrexate-induced oxidative organ injury via its antioxidant and immunomodulatory effects. Eur J Pharmacol 2006; 542: 170-8.
  • 31. Garc›ía JJ, Reiter RJ, Guerrero JM, et al. Melatonin prevents changes in microsomal membrane fluidity during induced lipid peroxidation. FEBS Lett 1997; 408: 297–300.
  • 32. Dirlik M, Karahan A, Canbaz H, et al. Effects of sulfasalazine on lipid peroxidation and histologic liver damage in a rat model of obstructive jaundice and obstructive jaundice with lipopoly-saccharide-induced sepsis. Curr Ther Res 2009; 70: 299-315.
  • 33. Toklu HZ, Sener G, Jahovic N, et al. Beta-glucan protects against burn-induced oxidative organ damage in rats. Int Immunopharmacol 2006; 6: 156-69.
  • 34. Morise Z, Ueda M, Kitajima M, et al. Reactive oxygen species and vascular cell adhesion molecule-1 in distant organ failure following bile duct obstruction in mice. Dig Dis Sci 2002; 47: 607-13.
  • 35. Sener G, Sert G, Ozer Sehirli A, et al. Pressure ulcer-induced oxidative organ injury is ameliorated by β-glucan treatment in rats. Int Immunopharmacol 2006; 6: 724-32.
  • 36. Babayigit H, Kucuk C, Sozuer E, et al. Protective effect of β-glucan on lung injury after cecal ligation and puncture in rats. Intensive Care Med 2005; 31: 865-70.
APA ERKOL M, KAHRAMANSOY N, KORDON Ö, BÜYÜKAŞIK O, SERİN E, KUKNER A (2012). Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. , 38 - 45.
Chicago ERKOL MEHMET HAYRI,KAHRAMANSOY Nurettin,KORDON Özgür,BÜYÜKAŞIK Oktay,SERİN Erdinç,KUKNER Aysel Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. (2012): 38 - 45.
MLA ERKOL MEHMET HAYRI,KAHRAMANSOY Nurettin,KORDON Özgür,BÜYÜKAŞIK Oktay,SERİN Erdinç,KUKNER Aysel Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. , 2012, ss.38 - 45.
AMA ERKOL M,KAHRAMANSOY N,KORDON Ö,BÜYÜKAŞIK O,SERİN E,KUKNER A Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. . 2012; 38 - 45.
Vancouver ERKOL M,KAHRAMANSOY N,KORDON Ö,BÜYÜKAŞIK O,SERİN E,KUKNER A Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. . 2012; 38 - 45.
IEEE ERKOL M,KAHRAMANSOY N,KORDON Ö,BÜYÜKAŞIK O,SERİN E,KUKNER A "Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice." , ss.38 - 45, 2012.
ISNAD ERKOL, MEHMET HAYRI vd. "Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice". (2012), 38-45.
APA ERKOL M, KAHRAMANSOY N, KORDON Ö, BÜYÜKAŞIK O, SERİN E, KUKNER A (2012). Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. Turkish Journal of Gastroenterology, 23(1), 38 - 45.
Chicago ERKOL MEHMET HAYRI,KAHRAMANSOY Nurettin,KORDON Özgür,BÜYÜKAŞIK Oktay,SERİN Erdinç,KUKNER Aysel Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. Turkish Journal of Gastroenterology 23, no.1 (2012): 38 - 45.
MLA ERKOL MEHMET HAYRI,KAHRAMANSOY Nurettin,KORDON Özgür,BÜYÜKAŞIK Oktay,SERİN Erdinç,KUKNER Aysel Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. Turkish Journal of Gastroenterology, vol.23, no.1, 2012, ss.38 - 45.
AMA ERKOL M,KAHRAMANSOY N,KORDON Ö,BÜYÜKAŞIK O,SERİN E,KUKNER A Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. Turkish Journal of Gastroenterology. 2012; 23(1): 38 - 45.
Vancouver ERKOL M,KAHRAMANSOY N,KORDON Ö,BÜYÜKAŞIK O,SERİN E,KUKNER A Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice. Turkish Journal of Gastroenterology. 2012; 23(1): 38 - 45.
IEEE ERKOL M,KAHRAMANSOY N,KORDON Ö,BÜYÜKAŞIK O,SERİN E,KUKNER A "Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice." Turkish Journal of Gastroenterology, 23, ss.38 - 45, 2012.
ISNAD ERKOL, MEHMET HAYRI vd. "Effect of beta-glucan in lung damage secondary to experimental obstructive jaundice". Turkish Journal of Gastroenterology 23/1 (2012), 38-45.