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[Role of nitric oxide in alterations of the systemic and splanchnic hemodynamics in a experimental model of portal hypertension].

Liliana Albornoz, Juan Carlos Bandi, Susana Sánchez, Eduardo Spinedi, Griselda Canteros, De Paula Ja, Omar Galdame, Ricardo Mastaï

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Abstract

Recent experimental studies have suggested that an increase in the synthesis of nitric oxide, a powerful vasodilator secreted by endothelial cells, plays a role in the hemodynamic disturbances associated to portal hypertension. The present study was addressed to investigate the effects of L-NNA (a specific inhibitor of nitric oxide) on systemic and splanchnic hemodynamics in portal hypertensive rats, induced by partial portal vein ligation. Intravenous infusion of L-NNA (50 ug/kg/min) significantly increased systemic blood pressure and decreased cardiac output as measured by radiolabeled microspheres. A significant increase in systemic and splanchnic vascular resistance was also observed in L-NNA-treated rats; whereas portal blood flow decreased significantly, L-NNA did not modify portal pressure. Pretreatment with L-arginine (300 mg/Kg, i.v.) prevented the hemodynamic changes induced by L-NNA. Similar values of endotoxin levels were detected in both groups of animals. In the control group, L-NNA caused a mild but significant increase of mean arterial pressure; no significant changes on the other hemodynamic parameters were observed. These results suggest that an increase in endogenous synthesis of nitric oxide may play an important role in hemodynamic disturbances associated with chronic portal hypertension.

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What this paper is about

Recent experimental studies have suggested that an increase in the synthesis of nitric oxide, a powerful vasodilator secreted by endothelial cells, plays a role in the hemodynamic disturbances associated to portal hypertension. The present study was addressed to investigate the effects of L-NNA (a specific inhibitor of nitric oxide) on systemic and splanchnic hemodynamics in portal hypertensive rats, induced by partial portal vein ligation. Intravenous infusion of L-NNA (50 ug/kg/min) significantly increased systemic blood pressure and decreased cardiac output as measured by radiolabeled microspheres. A significant increase in systemic and splanchnic vascular resistance was also observed in L-NNA-treated rats; whereas portal blood flow decreased significantly, L-NNA did not modify portal pressure. Pretreatment with L-arginine (300 mg/Kg, i.v.) prevented the hemodynamic changes induced by L-NNA. Similar values of endotoxin levels were detected in both groups of animals. In the control group, L-NNA caused a mild but significant increase of mean arterial pressure; no significant changes on the other hemodynamic parameters were observed. These results suggest that an increase in endogenous synthesis of nitric oxide may play an important role in hemodynamic disturbances associated with chronic portal hypertension.

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Available abstract

Recent experimental studies have suggested that an increase in the synthesis of nitric oxide, a powerful vasodilator secreted by endothelial cells, plays a role in the hemodynamic disturbances associated to portal hypertension. The present study was addressed to investigate the effects of L-NNA (a specific inhibitor of nitric oxide) on systemic and splanchnic hemodynamics in portal hypertensive rats, induced by partial portal vein ligation. Intravenous infusion of L-NNA (50 ug/kg/min) significantly increased systemic blood pressure and decreased cardiac output as measured by radiolabeled microspheres. A significant increase in systemic and splanchnic vascular resistance was also observed in L-NNA-treated rats; whereas portal blood flow decreased significantly, L-NNA did not modify portal pressure. Pretreatment with L-arginine (300 mg/Kg, i.v.) prevented the hemodynamic changes induced by L-NNA. Similar values of endotoxin levels were detected in both groups of animals. In the control group, L-NNA caused a mild but significant increase of mean arterial pressure; no significant changes on the other hemodynamic parameters were observed. These results suggest that an increase in endogenous synthesis of nitric oxide may play an important role in hemodynamic disturbances associated with chronic portal hypertension.

Key concepts: Portal hypertension, Splanchnic, Hemodynamics, Nitric oxide, Portal venous pressure, Medicine, Internal medicine, Vascular resistance

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[Role of nitric oxide in alterations of the systemic and splanchnic hemodynamics in a experimental model of portal hypertension]. — Research Paper | ScholarLens