HYPOXIA REOXYGENATION INCREASES THE PERMEABILITY OF ENDOTHELIAL-CELL MONOLAYERS - ROLE OF OXYGEN RADICALS

被引:99
作者
INAUEN, W [1 ]
PAYNE, DK [1 ]
KVIETYS, PR [1 ]
GRANGER, DN [1 ]
机构
[1] LOUISIANA STATE UNIV,MED CTR,DEPT MED,1501 KINGS HIGHWAY,POB 33932,SHREVEPORT,LA 71130
关键词
Endothelium; Free radicals; Hypoxia; Ischemia/Reperfusion injury; Oxygen radicals; Oxypurinol; Superoxide dismutase;
D O I
10.1016/0891-5849(90)90031-D
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We assessed the effect of hypoxia/reoxygenation on 14C-albumin flux across endothelial monolayers. Cultured bovine pulmonary artery endoehtlial cells were grown to confluence on nitrocellulose filters (pore size 12 μm). The endothelialized filters were mounted in Ussing-type chambers which were filled with cell culture medium (M 199). Equimolar amounts (33 nM) of 14C-labeled and unlabeled albumin were added to the "hot" and "cold" chambers, respectively. The monolayers were then exposed to successive periods (90 min) of normoxia (pO2 20 mmHg), and reoxygenation (pO2 145 mmHg). A gas bubbling system was used to control media pO2 and to ensure adequate mixing. Four aliquots of culture media were taken during each period in order to calculate 14C-albumin permeability across the endothelialized filter. In some experiments, either the xanthine oxidase inhibitor, oxypurinol (10 μM), or superoxide dismutase (600 U/mL), was added to the media immediately prior to the experiments. As compared to the normoxic control period, albumin permeability was 1.5 times higher during hypoxia (p<0.01) and 2.3 times higher during reoxygenation (p<0.01). The reoxygenation-induced increase in albumin permeability was prevented by either oxypurinol or superoxide dismutase. These data indicate that xanthine oxidase-derived oxygen radicals contribute to the hypoxia/reoxygenation-induced endothelial cell dysfunction. The altered endothelial barrier function induced by hypoxia/reoxygenation is consistent with the microvascular dysfunction observed following reperfusion of ischemic tissues. © 1990.
引用
收藏
页码:219 / 223
页数:5
相关论文
共 33 条
[1]  
Granger, Rutili, McCord, Superoxide radicals in feline intestinal ischemia, Gastroenterology, 81, pp. 22-29, (1981)
[2]  
Parks, Bulkley, Granger, Hamilton, McCord, Ischemic injury in the cat small intestine: role of superoxide radicals, Gastroenterology, 82, pp. 9-15, (1982)
[3]  
Smith, Grisham, Manci, Granger, Kvietys, Gastric mucosal injury in the rat. Role of iron and xanthine oxidase, Gastroenterology, 92, pp. 950-956, (1987)
[4]  
Kennedy, Rao, Hopkins, Pennington, Tolley, Hoidal, Role of reactive oxygen species in reperfusion injury of the rabbit lung, J. Clin. Invest., 83, pp. 1326-1335, (1989)
[5]  
Grosso, Brown, Viders, Mulvin, Bannerjee, Velasco, Repine, Harken, Xanthine oxidase-derived oxygen radicals induce pulmonary edema via direct endothelial cell injury, J. Surg. Res., 46, pp. 355-360, (1989)
[6]  
Lynch, Grum, Gallagher, Bolling, Deeb, Morganroth, Xanthine oxidase inhibition attenuates ischemic-reperfusion lung injury, J. Surg. Res., 44, pp. 538-544, (1988)
[7]  
Patt, Harken, Burton, Rodell, Piermattei, Schorr, Parker, Berger, Horesh, Terada, Linas, Cheronis, Repine, Xanthine oxidase-derived hydrogen peroxide contributes to ischemia reperfusion-induced edema in gerbil brains, J. Clin. Invest., 81, pp. 1556-1562, (1988)
[8]  
Korthuis, Granger, Townsley, Taylor, The, Circ. Res., 57, pp. 599-609, (1985)
[9]  
Granger, Hollwarth, Parks, Ischemia-reperfusion injury: role of oxygen-derived free radicals, Acta Physiol. Scand., 548, pp. 47-63, (1986)
[10]  
Granger, Role of xanthine oxidase and granulocytes in ischemia-reperfusion injury, Am J Physiol, 255, pp. H1269-H1275, (1988)