Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: UMLS:C0034063 (pulmonary edema)
10,665 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Acute respiratory failure after hepatic resection, especially in case of concomitant liver dysfunction, is the most troublesome postoperative complication. In order to clarify the pathophysiological mechanism of acute respiratory failure, EVLW (extravascular lung water) was measured by double indicator dilution method in canine model. Mongrel dogs underwent laparotomy and the common bile duct was ligated and divided. After 6 weeks, EVLW was significantly elevated compared with that of normal dogs (p less than 0.05). From 4 hours after 70% hepatic resection dextran-40 was loaded to increase PWP (pulmonary wedge pressure). EVLW was increased accompanying the elevation of PWP in all groups, but in the group with biliary obstruction EVLW was significantly increased for the same elevation of PWP. These results suggest that permeability of pulmonary capillary was highly increased after hepatic resection in biliary obstruction group. Pulmonary edema in this canine model seems to resemble ARDS in human and the pathophysiological mechanism was thought to be related with depression of RES phagocytic function, activation of complement system and pulmonary vascular plugging by aggregates of degenerating granulocytes and endothelial injury. Gabexate mesilate blocked the increase of the lung vascular permeability and was thought to be effective to protect the lung from postoperative acute respiratory failure.
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PMID:[Acute respiratory failure after hepatic resection in canine biliary obstruction model]. 314 48

We evaluated the effects of a protease inhibitor on the progression of acute pancreatitis in rats. The model was selected and modified to mimic an intermediate stage of the disease. The degree of microcirculatory derangement in the pancrease and of lung edema was determined to assess the effects of gabexate mesilate (ethyl-4-(6-guanidinohexanoyloxy) benzoate methane sulfonate), a synthetic antiprotease, in acute pancreatitis. Male Sprague-Dawley rats (225-275 g) were used. Experimental pancreatitis was established by four intramuscular injections of cerulein (50 micrograms/kg) at 1 hour intervals. Lipopolysaccharide (10 mg/kg) was injected intraperitoneally as an acute septic challenge. Gabexate mesilate was infused intravenously 6 hours after the initiation of induction of acute pancreatitis at doses of 0.01, 0.1, 1, or 10 mg/kg/h. Microcirculatory changes in the pancreas were studied using in vivo microscopy. All animals survived until the end of the experiments. Gabexate mesilate significantly improved pathologic criteria and decreased serum lipase levels at doses of 1 and 10 mg/kg/h. It significantly lessened the severity of lung edema and improved the microcirculatory environment in the pancreas by increasing flow velocity and reducing leukocyte sticking. These results indicate the beneficial effects of gabexate mesilate on pancreatic microcirculation and lung edema in the progression of acute pancreatitis with septic challenge in rats.
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PMID:Gabexate mesilate improves pancreatic microcirculation and reduces lung edema in a rat model of acute pancreatitis. 930 24