[No authors listed]
OBJECTIVE:NADPH oxidase activation results in overproduction that is the pathological basis of I/R injury. This study aimed to investigate potential effects of ORG on I/R-induced duanyu1670 production in rat mesenteric microvasculature and underlying mechanisms. METHODS:Mesenteric I/R in Male Wistar rats (200~250Â g) was induced by ligation of the mesenteric artery and vein for 10Â minutes followed by reperfusion for 60Â minutes by releasing of the occlusion. The rats were infused intravenously with or without ORG (5Â mg/kg per hour) 10Â minutes before ischemia (pretreatment) or 20Â minutes after reperfusion (posttreatment). The DHR fluorescence intensity on, the leukocytes adherent to, and mast cell degranulation out of mesenteric venules were determined using an intravital microscope. NADPH oxidase subunit p47(phox) membrane translocation in intestine tissues was detected by Western blotting. RESULTS:Pre- or posttreatment with ORG inhibited I/R-induced DHR fluorescence intensity on the venular walls and leukocytes adhesion, ORG pretreatment inhibited mast cell degranulation as well. Furthermore, the translocation of p47(phox) from cytosol to membrane was suppressed markedly by ORG after I/R. CONCLUSIONS:The results suggested that ORG restrained I/R-induced duanyu1670 production, which might be correlated with its inhibitive effect on NADPH activation.
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