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Biomedical subjects

A Hadengue

Publications and source records attributed to A Hadengue.

At least 181 records · Page 10Linked to original sources

Hyperkinetic circulatory syndrome in patients with presinusoidal portal hypertension. Effect of propranolol.

This study evaluates systemic and splanchnic haemodynamics and the effect of propranolol in 15 patients with presinusoidal portal hypertension (portal vein obstruction, n = 11; schistosomiasis, n = 4). These patients exhibited a hyperkinetic circulatory syndrome characterized by high cardiac index (4.4 +/- 1.61.min-1.m-2, mean +/- S.D.) and by low systemic vascular resistance despite normal liver function and sinusoidal pressure. Hepatic blood flow was decreased in half of the patients with portal vein obstruction. Azygos blood flow, an estimate of superior portal-systemic collateral circulation, was markedly increased in all patients (0.46 +/- 0.19 l/min, upper limit of normal: 0.19 l/min). Therefore, in these patients with normal hepatic venous pressure gradient, azygos blood flow measurement provides an index of splanchnic haemodynamic changes. Propranolol administration (15 mg, i.v.) reduced the hyperkinetic circulatory syndrome, with a significant decrease in heart rate (-17 +/- 6%), cardiac index (-25 +/- 12%) and azygos blood flow (-40 +/- 26%) and a significant increase in systemic vascular resistance (+40 +/- 40%). These results suggest that the hyperkinetic circulatory syndrome observed in these patients, could be related to an increase in beta-adrenergic activity. The decrease in azygos blood flow, after propranolol administration, was significantly correlated (r = 0.94) with the increase in right atrial pressure. This finding suggests that propranolol may act through an increase in portal-systemic collateral venous tone. These haemodynamic results justify, in patients with presinusoidal portal hypertension, clinical trials investigating the beneficial effect of beta-blockers on gastrointestinal bleeding caused by portal hypertension.

Adult↗

Somatostatin analogue improves survival in conscious cirrhotic rats subjected to gastrointestinal bleeding.

1. The continuing doubt concerning the value of vasoconstrictive therapy for gastrointestinal bleeding may be related to the complexity of clinical trials in such a situation. 2. The effect of SM 201-995, a somatostatin analogue, was investigated in conscious cirrhotic rats before, during and after experimental bleeding from the portal territory. 3. Before haemorrhage, somatostatin analogue (8 micrograms h-1 kg-1 body weight, intravenously) produced a significant decrease in portal pressure (17%), whereas a placebo (saline) lacked significant effect. 4. The rats were then subjected to spontaneous bleeding, by disconnection of the portal catheter from the pressure gauge, for a 5 min period. At the end of the haemorrhage, haemodynamic parameters did not significantly differ between the group receiving somatostatin analogue and that receiving placebo. 5. Fifteen minutes after the end of the bleeding period, portal pressure was significantly lower in rats receiving somatostatin analogue [8.5 +/- 0.5 mmHg (1.13 +/- 0.07 kPa), mean +/- SEM] than in rats receiving placebo [11.0 +/- 1.1 mmHg (1.50 +/- 0.15 kPa)]. 6. The volume of blood lost and mortality were significantly lower in the group treated with somatostatin analogue (2.3 +/- 0.1 ml/100 g body weight and 8%, respectively) than in the group receiving placebo (3.0 +/- 0.1 ml/100 g body weight and 50%, respectively). 7. These results demonstrate, in an experimental model, the beneficial effect of somatostatin analogue for the treatment of gastrointestinal bleeding due to portal hypertension. They suggest that administration of this substance should be started as soon as possible after the beginning of haemorrhage and continued after the cessation of bleeding.

Animals↗

[Tissue hypoxia and hepatocellular insufficiency in patients with cirrhosis].

To determine whether tissue hypoxia occurred in cirrhosis, oxygen contents, mixed venous and hepatic venous lactate concentrations as well as systemic hemodynamics were studied in 53 patients with cirrhosis. The influence of liver failure on tissue oxygenation was also studied. Cardiac index and mixed venous and hepatic venous lactate concentrations were significantly higher in patients with cirrhosis than in 20 control subjects. Oxygen consumption, oxygen extraction ratio and mixed venous and hepatic venous carbon dioxide tensions were significantly lower in the former than in the latter. Oxygen transport was not significantly different between the two groups. Cardiac index and oxygen transport were not significantly different between grade A (Pugh's classification) and grade C patients. Mixed venous as well as hepatic venous lactate concentrations were significantly higher while oxygen consumption, oxygen extraction ratio and carbon dioxide tensions were significantly lower in grade C than in grade A patients. We conclude that tissue hypoxia occurs in patients with cirrhosis and hepatic insufficiency. This tissue hypoxia might be due to arteriovenous shunting-related limitation of tissue oxygen extraction.

Adult↗

Circulatory effects of somatostatin analogue in two conscious rat models of portal hypertension.

A somatostatin analogue, a long-acting octapeptide (SMS 201-995), has been reported to decrease portal pressure, but the mechanism is unclear. To elucidate the effects of this drug on both systemic and splanchnic hemodynamics, it was administered in two conscious rat models of portal hypertension. The dose-response curves showed that the somatostatin analogue significantly decreased portal pressure at a lower dose in rats with cirrhosis than in portal vein-stenosed rats. Calculated ED50 values were significantly different among all groups. Intravenous infusion of 8 micrograms/kg body wt.h of somatostatin analogue significantly decreased cardiac output by approximately 20% in both groups of portal hypertensive rats and increased mean arterial pressure by 7%. Accordingly, systemic vascular resistance markedly increased, indicating vasoconstrictor effects of this drug. The somatostatin analogue also significantly decreased portal tributary blood flow by 18% in portal vein-stenosed rats and 27% in cirrhotic rats. In sham-operated rats, somatostatin analogue had no effect on the systemic or splanchnic circulation. This study shows that somatostatin analogue decreases portal pressure principally by reducing portal tributary blood flow. This reduction may be due to either a direct vasoconstrictive effect or diminution in vasoactive hormone release.

Animals↗

Liver hypermetabolism during alcohol withdrawal in humans. Role of sympathetic overactivity.

Catecholamines, which are elevated during alcohol withdrawal, can alter hepatic blood flow and increase hepatic oxygen consumption. We hypothesized that, in the withdrawal state, hepatic oxygen consumption and delivery could be altered in relation to an increased sympathetic activity. Thirteen chronic alcoholics were studied 34-72 h after withdrawal and 10 days later (control period) using conventional hemodynamic methods. As compared with the control period, splanchnic oxygen uptake was elevated at withdrawal (74.5 +/- 27.1 vs. 59.2 +/- 16.8 ml/min, p less than 0.025) and its variation was correlated with that of plasma epinephrine (r = 0.70, p less than 0.01). The hepatic venous oxygen content was reduced at withdrawal (113 +/- 22 vs. 126 +/- 21 ml/L, p less than 0.025) and correlated inversely with plasma norepinephrine levels (r = 0.56, p less than 0.01). We conclude that, during alcohol withdrawal in humans, hepatic energy expenditure may be elevated in relation to epinephrine secretion and that sympathetic overactivity may hinder the adaptive response in hepatic blood flow. The wide range in sympathetic nervous response to alcohol withdrawal could explain some differences in individual susceptibility to liver damage caused by alcohol.

Energy Metabolism↗

Model for the study of portal-systemic collateral vascular resistance in the conscious rat.

In order to obtain a model for the study of portal-systemic collateral vascular resistance, total portal vein occlusion was performed in rats 48 hr or 3 wk after partial obstruction. Four groups of conscious restrained rats were studied: a) sham-operated, b) partial portal vein ligated, c) 48 hr-total portal vein occluded, and d) 3 wk-total portal vein occluded. In comparison with the sham group, the three portal vein ligated groups had significantly higher cardiac output, portal tributary blood flow, portal pressure (7.7 +/- 0.4 versus 13.5 +/- 0.5, 13.6 +/- 0.8, and 17.7 +/- 1.1 mmHg, mean +/- SE, respectively) and hepatic arterial blood flow (5.8 +/- 0.6 versus 9.5 +/- 0.7, 8.3 +/- 0.5, and 13.9 +/- 1.9 ml/min, respectively). Cardiac output and portal tributary blood flow did not differ between the portal vein ligated groups, but portal pressure and hepatic arterial blood flow were significantly higher in the 3 wk-total portal vein occlusion group. The 3 wk-total portal vein occlusion group showed 99.1 +/- 0.3% shunting, different from the partial (29.7 +/- 16.9%, p less than 0.01) and 48 hr-total portal vein occlusion (46.5 +/- 14.7%, p less than 0.05) groups. Portography confirmed absence of portal-portal collaterals in the 3 wk-total portal vein occlusion group. It is suggested that rats with 3 wk-total portal vein occlusion are useful for the study of acute modifications of portal-systemic collateral circulation, as shunting is total and consistent in this model.

Animals↗

Effects of nitroglycerin on forearm haemodynamics in patients with cirrhosis.

1. Basal forearm haemodynamics were studied by venous occlusion plethysmography in three groups of subjects: group I, healthy controls, group II, patients with cirrhosis age- and sex-matched with group I, and group III, an older group of patients with cirrhosis. Subsequently, responses to sublingual nitroglycerin were measured in group I and II subjects. 2. Controls responded to nitroglycerin with an increase in venous distensibility; group II patients had higher initial venous distensibility but did not respond to nitroglycerin. No other variables in either group were affected by nitroglycerin. 3. Group II and III patients differed in forearm blood flow and vascular resistance and venous distensibility. A significant inverse correlation was found between age and forearm blood flow (r = 0.57, P less than 0.001) in all patients with cirrhosis. 4. We conclude that (a) venous tone is reduced in cirrhosis, possibly as a result of chronic venodilatation; (b) this venodilatation impedes further dilatory response to a small dose of nitroglycerin; (c) cirrhosis is also associated with age-related decreases in peripheral haemodynamics.

Adolescent↗

Regional blood flows by the microsphere method: reproducibility in portal hypertensive rats and influence of a portal vein catheter.

To determine the reproducibility of splanchnic blood flow measurements by the microsphere method in rats with portal hypertension and the effects of laparotomy with portal vein cannulation, eight groups of 10 rats were studied. Cardiac output and regional blood flows were measured twice, 10 min apart, in pentobarbital anesthetized or awake, sham-operated or portal vein-ligated rats, with or without portal cannulation. Variability between the two successive measurements was not affected by portal hypertension or portal cannulation, and was not different in the splanchnic territory and in other organs. Laparotomy with portal cannulation had no significant effect in sham-operated rats. In awake portal hypertensive rats, cardiac output (53.9 +/- 3.0 vs 45.8 +/- 2.9 ml.min-1.100 g body wt-1, P less than 0.01) and splanchnic blood flow (12.31 +/- 0.72 vs 9.34 +/- 0.85 ml.min-1.100 g body wt-1, P less than 0.01) were lower in portal vein cannulated rats compared with those of non-cannulated animals. In anesthetized portal hypertensive rats blood flows were unaffected by portal cannulation, but arterial pressure (100.2 +/- 4.3 vs 119.9 +/- 3.4 mm Hg, P less than 0.01) and heart rate (366.5 +/- 10.0 vs 405.5 +/- 7.4 beats.min-1, P less than 0.01) were elevated. Anesthesia also decreased portal pressure (14.8 +/- 0.5 vs 12.0 +/- 0.4 mm Hg, P less than 0.05) in portal hypertensive rats. We conclude that the microsphere method remains reproducible in portal hypertensive rat models. Laparotomy with portal cannulation can alter systemic and splanchnic hemodynamics in portal hypertensive rats; these effects can also be changed during pentobarbital anesthesia. Regional blood flow measurements in portal hypertensive rats should be performed in animals without portal cannulation and preferably in the awake state.

Animals↗

Carbamazepine-induced acute cholangitis.

We report the case of a patient with carbamazepine-induced cholestasis in whom histologic examination showed acute cholangitis. This type of lesion broadens the spectrum of carbamazepine-induced liver injury which also includes granuloma and hepatocellular necrosis. Its association with marked hypereosinophilia suggests that carbamazepine may cause acute cholangitis through an immunoallergic mechanism.

Aged↗

Reduction of intrahepatic vascular space in the pathogenesis of portal hypertension. In vitro and in vivo studies in the rat.

To elucidate a possible role for reduction of intrahepatic vascular space in the pathogenesis of portal hypertension, we studied a partially hepatectomized rat model in vitro and in vivo. The in vitro study used livers from normal, 1/3-hepatectomized, and 2/3-hepatectomized rats, and rats with cirrhosis caused by chronic bile duct ligation, for isolated, perfused flow-pressure plotting. Resistance to perfusion increased such that significant differences were found between all groups except the last two, which showed similar resistances. The in vivo study measured splanchnic blood flow by radioactive microspheres and portal pressure in anesthetized sham-operated and 1/3- and 2/3-hepatectomized rats. Although absolute portal tributary blood flows did not change, portal flow per gram of remnant liver showed significant increases: 1.57 +/- 0.32 ml/min X g liver, 2.52 +/- 0.60 ml/min X g liver, p less than 0.01; 3.48 +/- 1.04 ml/min X g liver, p less than 0.01, respectively. Although intrahepatic resistance increased significantly only in the 2/3-hepatectomized group, portal pressures increased significantly in both groups of hepatectomized rats: normal, 7.5 +/- 1.1 mmHg; 1/3-hepatectomized, 9.4 +/- 1.1 mmHg; and 2/3-hepatectomized, 11.1 +/- 1.2 mmHg. Thus, decreased intrahepatic vascular space caused by resection and hepatocellular hypertrophy leads to portal hypertension, thereby suggesting that this reduction in space may be the pathogenic factor common to a number of different theories of portal hypertension.

Animals↗

Oxygen and bile acid content in the azygos blood. Clues to the azygos derivation in patients with portal hypertension.

In patients with cirrhosis, elevation of azygos blood flow has been attributed on indirect grounds to cephalad portosystemic collaterals. To gather more information on the origin of the azygos blood, we studied the oxygen and bile acid content of the azygos and mixed venous blood in patients with portal hypertension. Azygos oxygen saturation was 59.6 +/- 6.0% in 8 controls, and significantly higher in 35 patients with cirrhosis (76.7 +/- 7.6%; P less than 0.01) as well as in 6 patients with noncirrhotic portal hypertension (84.0 +/- 8.2%; P less than 0.01). High oxygen saturation, however, was not correlated to azygos blood flow in patients with cirrhosis. In cirrhotic patients, total bile acid concentrations were 28.1 +/- 20.4 mumol/l in the pulmonary artery and 25.9 +/- 17.6 mumol/l in the azygos vein, giving an azygos to mixed venous ratio of 0.95 +/- 0.18. These results provide new evidence that elevated azygos blood flow in patients with portal hypertension is derived from the portal system, and perhaps predominantly from the splenic territory.

Azygos Vein↗

Naloxone does not alter haemodynamics in cirrhosis. Studies in humans and rats.

In order to test the hypothesis that endogenous opioids may mediate some of the circulatory derangements in cirrhosis, we studied the haemodynamic effects of naloxone, an opioid antagonist, in patients and in a rat model of biliary cirrhosis. In 9 patients with alcoholic cirrhosis and 5 control patients without significant liver disease, cardiac output, systemic vascular resistance, mean arterial pressure, heart rate, hepatic venous pressures and O2 content, hepatic and azygos blood flows and serum catecholamines were measured before and 30 min after naloxone 3.2 mg i.v. bolus. No significant changes were observed in either group of patients. Similarly in 16 conscious rats, 8 sham-operated and 8 with cirrhosis due to bile duct ligation, cardiac output, systemic vascular resistance, mean arterial pressure, heart rate, and splanchnic organ blood flows were measured by radioactive microspheres, before and 20 min after naloxone 1 mg/kg i.v. bolus. No significant changes were observed in either group. We failed to detect any evidence that endorphins are involved in tonic haemodynamic control in cirrhosis.

Adult↗

Possible deleterious hemodynamic effect of nifedipine on portal hypertension in patients with cirrhosis.

The acute effects of nifedipine, 10 mg administered sublingually, were studied in 10 patients with alcoholic cirrhosis. Nifedipine significantly increased cardiac output and reduced systemic vascular resistance. Nifedipine also increased the hepatic venous pressure gradient by 15% (P less than 0.01). Hepatic blood flow and azygos blood flow did not change significantly. It is suggested that nifedipine increases portal pressure and thus may be deleterious to patients with portal hypertension.

Blood Pressure↗

Hemodynamic characterization of chronic bile duct-ligated rats: effect of pentobarbital sodium.

Systemic and splanchnic hemodynamics of the chronic bile duct-ligated rat were characterized by radioactive microspheres. Conscious and pentobarbital sodium-anesthetized, bile duct-ligated and sham-operated rats had cardiac output and regional organ blood flows determined. The conscious bile duct-ligated rat compared with the sham-operated showed a hyperdynamic circulation with an increased cardiac output (153.3 +/- 9.8 vs. 112.6 +/- 6.0 ml/min, P less than 0.005) and portal tributary blood flow (21.32 +/- 1.43 vs. 12.79 +/- 1.47 ml/min, P less than 0.005). Pentobarbital sodium anesthesia induced marked hemodynamic changes in both sham-operated and bile duct-ligated rats. The latter group was especially sensitive to its effects; thus, comparison of cardiac output and portal tributary blood flow between anesthetized bile duct-ligated and sham-operated rats showed no significant differences. We conclude that the rat with cirrhosis due to chronic bile duct ligation is an excellent model for hemodynamic investigations but should be studied in the conscious state, since pentobarbital sodium anesthesia eliminates the hyperdynamic circulation.

Anesthesia, General↗