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C Gaudin

Publications and source records attributed to C Gaudin.

At least 73 records · Page 4Linked to original sources

Hemodynamic effects of endotoxin and platelet activating factor in cirrhotic rats.

Acute infections may influence the hemodynamic alterations of liver disease. Therefore, the hemodynamic effects of endotoxin (LPS E. coli 0111:B4) in conscious, normal, and cirrhotic rats were compared. Endotoxin decreased cardiac index in cirrhotic but not in normal rats. Although the effect of endotoxin on portal tributary blood flow was minor in all animals, a reduction in portal pressure was found in cirrhotic rats. Because the most marked hemodynamic effects were observed in cirrhotic rats, the second part of our study investigated whether platelet activating factor played a role in endotoxin-induced hemodynamic alterations in the cirrhotic model. Platelet activating factor reduced cardiac index and kidney blood flow but did not influence portal tributary blood flow. Two antagonists to platelet activating factor reduced the adverse renal blood flow lowering effects of endotoxin in cirrhotic rats. Thus, it is suggested that the hemodynamic changes observed in cirrhosis may be aggravated during acute infections. Under this condition, antagonists to platelet activating factor may be of benefit in the prevention of hemodynamic complications induced by endotoxin.

Animals↗

Ursodeoxycholic acid limits liver histologic alterations and portal hypertension induced by bile duct ligation in the rat.

Chronic administration of ursodeoxycholic acid (UDCA) has recently been suggested as a potential treatment for cholestatic liver disease. The purpose of this study was to examine the effects of chronic oral administration of UDCA on the histological, biochemical, and hemodynamic abnormalities induced by bile duct ligation in the rat. Fifty-one rats with ligation-section of the common bile duct were randomly and blindly assigned to receive UDCA (25 mg/kg each day) or placebo by gavage for 4 weeks. At the end of the treatment period, morphometric analysis showed that in rats treated with UDCA, hepatocyte and sinusoidal volume fractions were significantly higher than in rats receiving placebo [41.9 +/- 3.2% vs. 28.1 +/- 1.8%, (mean +/- SE) and 7.4 +/- 0.1% vs. 4.3 +/- 0.3%, respectively], whereas bile duct volume fraction (reflecting bile ductular proliferation) and connective tissue fraction were significantly lower in rats treated with UDCA than in rats receiving placebo (14.2 +/- 1.5% vs. 20.0 +/- 1.0% and 35.4 +/- 2.4% vs. 47.6 +/- 1.7%, respectively). Serum aminotransferase and alkaline phosphatase activities, and total serum bile acids and individual bile acid concentrations were not significantly different between the two groups. Portal pressure (12.7 +/- 0.5 mm Hg vs. 17.1 +/- 0.5 mm Hg), portal tributary blood flow (5.7 +/- 0.4 vs. 9.3 +/- 0.4 mL.min-1.100 g-1 body weight), and cardiac index (41.1 +/- 1.8 vs. 50.6 +/- 1.4 mL.min-1.100 g-1 body weight) were significantly lower in UDCA-treated rats than in placebo-treated animals. In portal vein stenosed rats, chronic administration of UDCA had no hemodynamic effects, a finding that suggests UDCA has no direct vasoactive effect on splanchnic circulation. It is concluded that in rats with bile duct ligation UDCA limits the severity of liver disease and consequently of portal hypertension and hyperkinetic circulation.

Animals↗

Effects of theophylline on hemodynamics and tissue oxygenation in patients with cirrhosis.

Since adenosine may play a role in the hyperdynamic circulation of cirrhosis, we examined the effects of theophylline (an adenosine receptor antagonist) on systemic and splanchnic hemodynamics, tissue oxygenation and sympathoadrenal activity in patients with cirrhosis and liver failure. Theophylline (aminophylline) was administered intravenously for 30 min. Six patients received a dose of 3 mg/kg and eight others a dose of 6 mg/kg. The low dose caused plasma theophylline concentrations of 7.4 +/- 1.8 mg/ml (mean +/- S.E.), and induced a significant increase in heart rate from 84 +/- 5 to 93 +/- 8 beats/min. This dosage did not significantly change other hemodynamic values, oxygen (O2) consumption, or sympathoadrenal activity. The high dose elicited plasma theophylline concentrations of 15.8 +/- 4.0 mg/ml. This dose significantly increased heart rate from 78 +/- 5 to 87 +/- 7 beats/min and significantly decreased right atrial pressure from 2.5 +/- 1.0 to 1.4 +/- 0.8 mmHg, stroke volume from 52 +/- 3 to 47 +/- 5 ml.beat-1.m-2 and systolic arterial pressure from 140 +/- 5 to 129 +/- 6 mmHg. In contrast, O2 consumption, sympathoadrenal activity, and all other hemodynamic values (including azygos blood flow) were not significantly modified. As a result, we conclude that, in patients with cirrhosis, theophylline may cause decreased stroke volume which lowers systolic arterial pressure. In our patients theophylline also had a positive chronotropic effect but no vasoconstrictor effect on systemic and splanchnic circulation. Finally, theophylline did not improve tissue oxygenation in patients with cirrhosis.

Adult↗

Hemodynamic and sympathetic responses to human atrial natriuretic peptide infusion in patients with cirrhosis.

To determine the potential usefulness of atrial natriuretic peptide (ANP) in patients with cirrhosis, we examined the effects of the infusion of a low dose of alpha-human ANP (alpha hANP, 25 ng.kg-1.min-1 for 30 min) on renal, splanchnic, systemic hemodynamics and sympathetic outflow in eight patients. Pulmonary arterial plasma ANP concentrations increased from 59 +/- 9 to 328 +/- 41 pg/ml (mean +/- S.E., p less than 0.05). Mean values of glomerular filtration rate and renal plasma flow were not significantly changed. Individual renal plasma flow responses differed from one patient to another. Renal plasma flow increased in two patients, decreased in three and did not change in the other patients. Renal plasma flow changes were correlated with basal renal plasma flow values (r = -0.938, p less than 0.05) but not with arterial pressure changes or renal vein plasma norepinephrine concentration changes. Azygos blood flow increased from 0.43 +/- 0.10 to 0.63 +/- 0.13 l/min (p less than 0.05) and the hepatic-venous pressure gradient decreased from 19.9 +/- 1.5 to 17.5 +/- 2.9 mmHg in post-infusion (p less than 0.05). Mean arterial pressure decreased significantly by 18% and cardiac output by 12%. Systemic vascular resistance and pulmonary arterial plasma norepinephrine concentrations were not significantly modified. Thus, in patients with cirrhosis, alpha hANP appears to have a direct vasodilating action on renal arterioles when basal renal vascular tone is high. In addition, although alpha hANP might exert a portal hypotensive action, alpha hANP induced arterial hypotension as a result of both low cardiac output and a lack of increased sympathetic vascular tone. The arterial hypotensive action may, thus, limit the therapeutic use of low doses of alpha hANP in cirrhotic patients.

Aldosterone↗

The catalytic domain of endoglucanase A from Clostridium cellulolyticum: effects of arginine 79 and histidine 122 mutations on catalysis.

Sequence analysis of the endoglucanase EGCCA of Clostridium cellulolyticum indicates the existence of two domains: a catalytic domain extending from residue 1 to residue 376 and a reiterated domain running from residue 390 to 450. A small deletion in the C terminal end of the catalytic domain inactivated the protein. From the analysis of the sequences of 26 endoglucanases belonging to family A, we focused on seven amino acids which were totally conserved in all the catalytic domains compared. The roles of two of these, Arg-79 and His-122, were studied and defined on the basis of the mutants obtained by introducing various substitutions. Our findings suggest that Arg-79 is involved in the structural organization of the protein; the His-122 residue seems to be more essential for catalysis. The role of His-123, which is conserved only in subfamily A4, was also investigated.

Amino Acid Sequence↗

[Effect of the severity of liver disease on renal hemodynamics and renal oxygen consumption in patients with cirrhosis].

In patients with cirrhosis, it has been shown that abnormal systemic and splanchnic hemodynamics and systemic oxygen (O2) consumption are related to the severity of liver disease. Little is known on the relationship between the severity of cirrhosis, on one hand, and renal hemodynamics and O2 consumption, on the other. We measured renal hemodynamics and renal O2 consumption in 31 patients Pugh's grade A and B and in 13 patients grade C. Systemic and splanchnic hemodynamics as well as systemic O2 consumption were studied. Renal blood flow, glomerular filtration rate, and renal O2 consumption were not significantly different between grades A and B and grade C patients. The renal fraction of systemic O2 consumption was higher (11.4 +/- 5.9 vs 7.9 +/- 4.1 percent respectively; P less than 0.05) and the systemic O2 consumption (111 +/- 23 vs 128 +/- 26 ml.min-1.m-2 respectively; P less than 0.05) lower in patients with grade C than in grades A and B patients. The degree of systemic hyperkineticism and portal hypertension was related to the severity of cirrhosis. In our patients, renal hemodynamics and renal O2 consumption were not related to the severity of cirrhosis. However, liver failure was associated with an increased renal fraction of systemic O2 consumption due to unchanged renal O2 consumption and decreased systemic O2 consumption.

Adult↗

[Hemodynamic effects of the administration of terlipressin alone or combined with nitroglycerin in patients with cirrhosis].

Terlipressin (Glypressin), a synthetic analog of vasopressin, induces arteriolar vasoconstriction which causes both a portal hypotensive effect and certain side-effects on the systemic circulation (elevated arterial pressure and reduced cardiac output). The combination of nitroglycerin with terlipressin might accentuate the portal hypotensive effect and prevent the side-effects on the systemic circulation. The aim of this study was to examine the systemic and splanchnic hemodynamic responses to terlipressin administered alone or combined with nitroglycerin in patients with cirrhosis. Systemic and splanchnic hemodynamics were measured before and 1 h after a bolus of terlipressin (1 to 2 mg IV) given alone (n = 10) or in association with nitroglycerin infusion (25 micrograms/min, n = 9). Terlipressin alone significantly increased the arterial pressure by 21%, systemic vascular resistance by 60%, and significantly decreased cardiac output by 23%. The right atrial and pulmonary pressures significantly increased and the wedged hepatic venous pressure and hepatic venous pressure gradient significantly decreased by 8% and 16%, respectively. The combined therapy decreased the cardiac output by 20%, but did not significantly modify the other systemic and splanchnic hemodynamic values. No significant differences were found between terlipressin and the combined therapy concerning changes in wedged hepatic venous pressure or hepatic venous pressure gradient. We conclude that in patients with cirrhosis, nitroglycerin prevents the deleterious vasoconstrictor and vasopressor effects of terlipressin. However, the combined therapy, as terlipressin alone, decreases the cardiac output.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Pressure↗

[Renal sympathetic nervous activity in patients with cirrhosis].

This study was designed to evaluate the renal contribution to overall sympathetic nerve hyperactivity and the relationships between renal sympathetic activity and systemic, splanchnic or renal hemodynamics in a series of 55 cirrhotic patients. Plasma noradrenaline concentrations were significantly higher in the renal vein than in the pulmonary artery (803 +/- 54 vs 608 +/- 47 pg/ml, P less than 0.01). These two concentrations were significantly correlated, which suggests that renal sympathetic activity and overall sympathetic activity increase in parallel in patients with cirrhosis. However, the estimated renal net release of noradrenaline was not correlated with plasma noradrenaline concentration in the pulmonary artery, suggesting that overall sympathetic nerve activity is not directly dependent on renal contribution in patients with cirrhosis. Neither plasma noradrenaline concentration in the renal vein nor renal net release of noradrenaline were correlated with systemic. splanchnic or renal hemodynamics. Thus, this study did not show a major role of renal sympathetic activity in the hemodynamic changes in cirrhosis.

Adult↗

Long-term sympathetic and hemodynamic responses to clonidine in patients with cirrhosis and ascites.

The aim of the present study was to examine the short- and long-term effects of the alpha 2-agonist clonidine on sympathetic overactivity, systemic, splanchnic, and renal circulation changes, and abnormal renal sodium excretion in cirrhotic patients with ascites. Of 17 patients, 8 received clonidine and 9 a placebo. Measurements were taken before and after either a single dose of clonidine (150 micrograms) and placebo or a 1-week treatment with clonidine (150 micrograms/day) and placebo. Clonidine but not placebo induced significant short- and long-term decreases in plasma norepinephrine concentrations in the pulmonary artery and the right renal vein. Acute clonidine administration induced a significant reduction in cardiac output, heart rate, arterial pressure, and hepatic venous pressure gradient but had no effect on renal hemodynamics. Long-term clonidine administration induced a significant decrease in the hepatic venous pressure gradient from 20.1 +/- 1.9 to 17.6 +/- 2.0 mm Hg (mean +/- SEM) but had no significant effects on systemic or renal hemodynamics or renal excretion of sodium. It is concluded that long-term clonidine administration in cirrhotic patients induced a sustained decrease in sympathetic nervous activity and portal pressure. In contrast, clonidine had no prolonged effect on systemic hemodynamics. In addition, short- and long-term clonidine administration did not modify renal hemodynamics or induce a natriuretic response in patients with ascites.

Ascites↗

Variability of hemodynamic values and plasma catecholamine concentrations over a one-hour period in conscious, restrained rats.

Restrained conscious rats have been widely used for physiological and pharmacological hemodynamic studies. In this condition, the variability of the circulation is unclear. Repeated measurements in restrained normal rats showed stable systemic hemodynamics (cardiac output ranging from 130 +/- 14 to 174 +/- 10 mL/min, mean arterial pressure ranging from 109 +/- 9 to 117 +/- 5 mmHg) and splanchnic hemodynamics (splanchnic blood flow ranging from 8.51 +/- 1.89 to 13.01 +/- 1.45 mL min-1 100 g-1 body wt) over a period of 1 hr. Slight but not significant hemodynamic variations, however, occurred in pulmonary blood flow. Similarly, plasma noradrenaline concentrations did not vary over this period (plasma noradrenaline level ranging from 186 +/- 36 to 358 +/- 64 pg/mL). These plasma noradrenaline concentrations were similar to those measured in a group of conscious unrestrained rats 3 hr after recovery from surgery (292 +/- 60 pg/mL). A significant correlation was observed between plasma noradrenaline concentration and heart rate.

Animals↗

Clearance of atrial natriuretic peptide in patients with cirrhosis. Role of liver failure.

In non-cirrhotic patients, splanchnic, renal and pulmonary vascular beds are involved in the plasma clearance for atrial natriuretic peptide (ANP). In patients with cirrhosis, endogenous plasma ANP clearance by these vascular beds has not been systematically studied. In addition, the influence of the severity of liver failure on plasma ANP clearance is not known. Thus, in this study we determined plasma ANP clearance by splanchnic, renal and pulmonary circulations using both arteriovenous differences in plasma ANP concentrations and organ plasma flow in 11 patients with cirrhosis. The role of forearm circulation in plasma ANP extraction was also studied. Splanchnic plasma ANP extraction was 29 +/- 7% (mean +/- S.E.) and splanchnic plasma ANP clearance was 404 +/- 130 ml/min (n = 7). Renal plasma ANP extraction and clearance were 32 +/- 8% and 191 +/- 57 ml/min, respectively. Forearm plasma ANP extraction was 11 +/- 4%. Pulmonary plasma ANP extraction and clearance were 8 +/- 5% and 312 +/- 272 ml/min, respectively. A significant negative correlation was found between logarithm of serum bilirubin concentration, on one hand, and splanchnic and forearm plasma ANP extraction, on the other. A significant negative correlation was found between Pugh's score, on one hand, and renal plasma ANP extraction and clearance, on the other. No significant correlation was found between the severity of liver failure and pulmonary plasma ANP extraction and clearance. As a result, we conclude that in cirrhotic patients splanchnic, renal, forearm and pulmonary vascular beds are involved in plasma ANP extraction and clearance. Plasma ANP extraction and/or clearance may be attenuated in the splanchnic, renal and forearm circulations due to liver failure.

Atrial Natriuretic Factor↗

Regional sympathetic activity, severity of liver disease and hemodynamics in patients with cirrhosis.

One hundred and eight patients with cirrhosis (23 grade A, 46 grade B and 39 grade C, according to Pugh's classification) underwent hemodynamic studies and plasma catecholamine concentration measurements. Blood samples were withdrawn from the pulmonary artery (n = 108), the hepatic vein (n = 108), the azygos vein (n = 59), the right renal vein (n = 66), the right jugular vein (n = 34) and the femoral vein (n = 33). Plasma noradrenaline concentrations in the pulmonary artery and the hepatic vein were more elevated in grade B (607 +/- 52 and 402 +/- 42 pg/ml, respectively) and C patients (630 +/- 59 and 475 +/- 53 pg/ml, respectively) than in grade A patients (411 +/- 51 and 243 +/- 40 pg/ml, respectively). Plasma noradrenaline concentrations from these two vessels were negatively correlated with indocyanine green clearance. These results indicate that both overall and splanchnic sympathetic activities are dependent on altered hepatic function. Significant correlations were found between the wedged hepatic venous pressure and plasma noradrenaline concentrations from either the pulmonary artery, the hepatic vein or the azygos vein. These correlations indicate that both overall and splanchnic sympathetic activities are dependent on the degree of portal hypertension. Moreover, significant correlations were found between hepatic venous plasma noradrenaline concentrations and systemic hemodynamic values, suggesting that splanchnic sympathetic nervous activity could either play a role in the systemic hyperkinetic syndrome or be a consequence of this hyperkinetic syndrome.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

In vitro and in vivo potentiation of chloroquine against malaria parasites by an enantiomer of amlodipine.

A combination of chloroquine and amlodipine, a derivative of 1,4-dihydropyridine calcium channel blocker, was tested against Plasmodium falciparum in vitro and P. yoelii in mice. The dextrorotary enantiomer of amlodipine, practically devoid of calcium channel blocking action, increased chloroquine accumulation inside the infected mouse erythrocytes and potentiated chloroquine action against the resistant strains of P. falciparum in vitro and P. yoelii in mice. Unlike the racemate, the dextrorotary amlodipine was not toxic to the host animal, even at the highest dose of 250 mg/kg. No potentiating effect was noted in the chloroquine-susceptible strains of P. falciparum. The results of this study indicate that chloroquine potentiation of amlodipine is probably independent of calcium channels and that a combination therapy of the dextrorotary enantiomer of amlodipine and chloroquine might be a potentially useful therapeutic strategy against chloroquine-resistant falciparum malaria.

Amlodipine↗

Characterization of endoglucanase A from Clostridium cellulolyticum.

A construction was carried out to obtain a high level of expression in Escherichia coli of the gene celCCA, coding for the endoglucanase A from Clostridium cellulolyticum (EGCCA). The enzyme was purified in two forms with different molecular weights, 51,000 and 44,000. The smaller protein was probably the result of proteolysis, although great care was taken to prevent this process from occurring. Evidence was found for the loss of the conserved reiterated domains which are characteristic of C. thermocellum and C. cellulolyticum cellulases. The two forms were extensively studied, and it was demonstrated that although they had the same pH and temperature optima, they differed in their catalytic properties. The truncated protein gave the more efficient catalytic parameters on carboxymethyl cellulose and showed improved endoglucanase characteristics, whereas the intact enzyme showed truer cellulase characteristics. The possible role of clostridial reiterated domains in the hydrolytic activity toward crystalline cellulose is discussed.

Amino Acid Sequence↗

Adenosine and hemodynamic alterations in cirrhotic rats.

This study evaluated the hypothesis that adenosine may participate in the hemodynamic alterations observed in conscious unrestrained cirrhotic rats. In sham-operated rats, adenosine (20 micrograms.100 g body wt-1.min-1 iv) induced hyperdynamic circulation and significantly increased portal pressure, mimicking the hemodynamic changes observed in cirrhosis. Although adenosine significantly increased hyperdynamic circulation and portal pressure in cirrhotic rats, these changes were significantly less marked than in sham-operated rats. 8-Phenyltheophylline (20 micrograms.100 g body wt-1.min-1 iv), a specific and potent adenosine antagonist, significantly decreased portal tributary blood flow in sham-operated rats (-18.0 +/- 5.6%) but did not have a significant effect in cirrhotic rats. The limited effect of 8-phenyltheophylline was not due to an insufficient dose, since the dose administered antagonized the hemodynamic effect of exogenous adenosine up to 40 micrograms.100 g body wt-1.min-1. We conclude that in certain circumstances, although adenosine may aggravate the hyperdynamic circulation, in normal conditions, the hemodynamic alterations observed in cirrhotic rats are not mediated by adenosine.

Adenosine↗

Selective dopamine DA1 stimulation with fenoldopam in cirrhotic patients with ascites: a systemic, splanchnic and renal hemodynamic study.

We studied the effects of fenoldopam, a selective dopamine DA1 agonist on systemic and splanchnic hemodynamics, renal blood flow and sodium excretion in 12 patients with alcoholic cirrhosis and ascites. Hepatic, azygos and renal veins were catheterized before and after intravenous administration of fenoldopam, 0.05 micrograms/kg/min for 1 hr and increased to 0.1 micrograms/kg/min for another hour. Mean arterial pressure progressively decreased (from 83 +/- 7 to a minimum of 77 +/- 8 mm Hg 100 min after starting the infusion) but returned to baseline level at 120 min. Plasma norepinephrine and renin activity increased (respectively from 567 +/- 297 to 919 +/- 375 pg/ml, p less than 0.05, and from 17 +/- 14 to 23 +/- 15 ng/ml/hr, p less than 0.05). Renal blood flow, urine output or sodium excretion did not change. Sodium output decreased at 1 hr from 6.9 mumol/min to 4.0 mumol/min, p less than 0.05. Both hepatic venous pressure gradient and azygos blood flow significantly increased by 21%. We conclude that the acute administration of fenoldopam did not improve renal hemodynamics or function in patients with cirrhosis and ascites. In addition, dopamine DA1 agonism caused further increases in norepinephrine concentration and plasma renin activity. Portal pressure also increased, probably because of an increase in mesenteric blood flow. These results question the renal benefit and raise concern about the use of dopamine agonists in patients with cirrhosis and ascites.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Relationships between plasma atrial natriuretic peptide concentrations and hemodynamics and hematocrit in patients with cirrhosis.

We studied the relationships in 29 patients with cirrhosis between pulmonary arterial atrial natriuretic peptide concentrations and the following: systemic and splanchnic hemodynamics, the hematocrit, arterial oxyhemoglobin saturation, oxygen tension and the severity of cirrhosis. Plasma atrial natriuretic peptide concentrations ranged from 21 to 208 pg/ml and averaged 78 +/- 8 pg/ml (mean +/- S.E.M.). Simple regression analysis showed significant correlations between plasma atrial natriuretic peptide concentration and the following: hematocrit, mean pulmonary arterial pressure, wedged hepatic venous pressure, free hepatic venous pressure, pulmonary wedged pressure and serum bilirubin concentrations. No significant correlations were found between plasma atrial natriuretic peptide concentrations and all other hemodynamic values, arterial oxyhemoglobin saturation and oxygen tension. Multiple stepwise regression analysis showed that the hematocrit, mean pulmonary arterial pressure and wedged hepatic venous pressure were significant and independent predictors of pulmonary artery plasma atrial natriuretic peptide concentrations (R2 = 0.69). Partial regression coefficients were -0.74 (p less than 0.001), 0.61 (p less than 0.001) and 0.44 (p less than 0.05) for the hematocrit, the mean pulmonary arterial pressure and the wedged hepatic venous pressure, respectively. In conclusion, in patients with cirrhosis, increased plasma atrial natriuretic peptide concentrations were related to the degree of hemodilution, increased pulmonary arterial pressure and the degree of portal hypertension. Plasma atrial natriuretic peptide concentrations were not influenced by the arterial oxygenation levels.

Arteries↗