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C Gaudin

Publications and source records attributed to C Gaudin.

107 records · Page 6Linked to original sources

[Influence of ascites on splanchnic and systemic hemodynamics in patients with alcoholic cirrhosis].

The effect of ascites on splanchnic and systemic hemodynamics was retrospectively studied in 256 patients with alcoholic cirrhosis. The patients were divided into 3 classes: no ascites, moderate ascites, and large ascites. They were also classed into 3 groups according to a modified Pugh classification (ascites was not taken into account). In patients without ascites, cardiac output was positively related to the severity of liver disease. This result was not found in patients with large ascites. Similarly, in patients with no or moderate ascites, the degree of portal hypertension estimated by the hepatic venous pressure gradient was associated with liver failure. In patients with large ascites, hepatic venous pressure gradient was higher than in patients without ascites but this relation was observed only in patients without liver failure. These results show that ascites reduces the relation between cardiac output and liver failure and increases the degree of portal hypertension but not cardiac output.

Ascites↗

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↗

Effects of end-product inhibition of Cellulomonas uda anaerobic growth on cellobiose chemostat culture.

Cellulomonas uda was grown anaerobically in a chemostat with 3.33 and 11.41 mM cellobiose in the feed medium at dilution rates varying from 0.017 to 0.29/h. Unusual results obtained were analyzed by using curves simulating the steady-state biomass. This unusual behavior could be accounted for by a classical growth model taking end-product inhibition into account. Acetate has been identified to be the major inhibitor in the experimental conditions used. Parameters calculated from experimental observations gave theoretical curves of biomass production versus dilution rate which fitted the experimental points very well.

Acetates↗

Reversal of adrenaline-induced increase in azygos blood flow in patients with cirrhosis receiving propranolol.

In patients with cirrhosis, endogenous catecholamines may influence the circulatory effects of propranolol. We intended to evaluate the interaction of adrenaline and propranolol on azygos blood flow, an estimate of blood flow in the superior portosystemic collateral circulation. We investigated 6 patients with cirrhosis, 5 with good liver function, receiving an intravenous infusion of adrenaline (50 ng/kg/min) before and after administration of propranolol. The median value for baseline azygos blood flow was increased from 700 ml/min (range 340-1 470 ml/min) to 1 050 (range 570-1 840 ml/min) with adrenaline alone (P less than 0.05), and decreased to 610 ml/min (range 260-1 190 ml/min) with propranolol alone (P less than 0.05). The infusion of adrenaline given after propranolol further reduced azygos blood flow to a median value of 530 ml/min (range 200-730 ml/min) (P less than 0.05). Thus, following beta-adrenergic blockade, there is a reversal of the effects of adrenaline on azygos blood flow, which corresponds to a potentiation of the effects of propranolol. Similar endogenous adrenaline-propranolol interactions may play a role in preventing recurrent variceal bleeding in cirrhotic patients.

Adult↗

Dilution of plasma with Tris buffer increases measured catecholamines in plasma.

We investigated the effects of dilution of plasma samples on the measured concentrations of catecholamines. Diluting samples of human plasma 10-, 50-, and 100-fold with Tris buffer (100 mol/L, pH 8.6) improved analytical recovery of internal standards, suggesting that it decreases the commonly observed inhibition of methylation in radioenzymatic assays of catecholamines in plasma. However, the dilution is not associated with a proportional decrease in counted radioactivity. This extra amount of radioactivity, which is unlikely to be nonspecific in origin, accounts for a significant increase in the calculated catecholamine concentration. Tentatively, we suggest that Tris buffer releases both catecholamines and conjugated catecholamines bound to some unidentified low-molecular-mass component of plasma.

Dopamine↗

Purification and partial characterization of two extracellular endoglucanases from Cellulomonas fermentans.

Avicelase assay of gel slices after non-denaturing polyacrylamide gel electrophoresis of concentrated supernatants from Cellulomonas fermentans revealed four active bands. One of them corresponded to the principal active band on CM-cellulose. Among the three others, at least one did not correspond to any active band on CM-cellulose and might reflect the presence of an exoglucanase (EC 3.2.1.91). The active band on CM-cellulose was composed of two endoglucanases (EC 3.2.1.4), called CFA and CFB, which we purified by the means of DEAE-Trisacryl chromatography and high performance liquid chromatography (anion exchange chromatography and gel chromatography). These two monomeric enzymes differ in their molecular weights (40,000 and 57,000 for CFA and CFB, respectively) and in their catalytic constants in the reaction with CM-cellulose (Km were 1.5 g/l and 59 g/l for CFA and CFB, respectively), but have similar modes of action on this substrate and similar substrate specificities.

Actinomycetales↗

Free and conjugated catecholamines in digestive tissues of rats.

Using a radioenzymatic technique, the highest concentrations of free catecholamines were found in the duodenum, and the lowest in the liver of untreated rats. When compared to the antrum, the concentration of free dopamine was higher, and that of norepinephrine lower in the fundus. As far as conjugated catecholamines are concerned, the tissue concentrations of both sulfo- and glucurono-conjugates were usually low, and often non detectable, with an exception: the concentration of glucurono-conjugated dopamine was very high in the duodenum, ileum, and liver of untreated rats.

Animals↗

Metabolism and Solubilization of Cellulose by Clostridium cellulolyticum H10.

When Clostridium cellulolyticum was grown with cellulose MN300 as the substrate, the rates of growth and metabolite production were found to be lower than those observed with soluble sugars as the substrate. At low cellulose concentrations, the growth yields were equal to those obtained with cellobiose. The main fermentation products from cellulose and soluble sugars were the same. Up to 15 mM of consumed hexose, a change in the metabolic pathway favoring lactate production similar to that observed with soluble sugars was found to occur concomitantly with a decrease in molar growth yield. With cellulose concentrations above 5 g/liter, accumulation of soluble sugars occurred once growth had ceased. Glucose accounted for 30% of these sugars. A kinetic analysis of cellulose solubilization revealed that cellulolysis by C. cellulolyticum involved three stages whatever cellulose concentration was used. Analysis of these kinetics showed three consecutive enzymatic activity levels having the same K(m) (0.8 g of cellulose per liter, i.e., 5 mM hexose equivalent) but decreasing values of V(max). The hypothesis is suggested that each step corresponds to differences in cellulose structure.

Journal Article↗

Metabolism of glucose and cellobiose by cellulolytic mesophilic Clostridium sp. strain H10.

The metabolism of strain H10, a cellulolytic mesophilic Clostridium sp., was studied on glucose and cellobiose as energy and carbon sources. The main products of fermentation of both sugars were acetate, lactate, and ethanol. At low sugar levels, molar growth yields were better for cellobiose than for glucose. In both cases, an inhibition of growth was observed between 1 and 2 g/liter and a total inhibition after the latter concentration. Inhibition was not the result of low pH due to acid formation; growth under static pH conditions was limited in the same way. On the other hand, acetate and lactate had no inhibitory effect when added at concentrations equal to the final titers. Concomitant with the inhibition of growth was a change in metabolic pathways for sugar concentrations between 1 and 2 g/liter, i.e., the production of lactate was higher. After complete inhibition of growth, an accumulation of carbohydrates which were neither glucose nor cellobiose was observed.

Cellobiose↗

Energetics of growth of a defined mixed culture of Desulfovibrio vulgaris and Methanosarcina barkeri: maintenance energy coefficient of the sulfate-reducing organism in the absence and presence of its partner.

The maintenance energy coefficient of Desulfovibrio vulgaris was studied by using a chemostat, with Methanosarcina barkeri or sulfate as the electron acceptor; lithium lactate or sodium pyruvate served as the electron donor. The experiments showed that the growth energetics of D. vulgaris or M. barkeri were greatly affected by maintenance energy coefficients. When D. vulgaris grew on lactate or pyruvate medium with sulfate, these coefficients reached 4.40 and 2.80 mM g-1 h-1, respectively; on lactate medium in the presence of M. barkeri the same coefficient reached a value of 2.90 mM g-1 h-1. Results also showed that the increase of the value of the maintenance energy coefficient corresponded to a decrease of the biomass produced. D. vulgaris maximal growth yield values calculated by use of the Pirt equation were slightly higher with M. barkeri (maximal growth yield, 10 g/mol) than with sulfate (maximal growth yield, 7.5 g/mol). This finding could be interpreted by reference to the ATP-generating reactions involved in D. vulgaris growth in the presence of sulfate or M. barkeri.

Culture Media↗

Thermodynamic studies of binding proteins: effects of temperature variations on substrate binding and conformation of the leucine-isoleucine-valine binding protein of Escherichia coli.

The behaviour of the Leucine isoleucine Valine binding protein of Escherichia coli as a function of temperature has been examined. Substrate binding measurements showed a temperature dependence of the leucine-isoleucine-valine binding protein leucine complex formation constants. The protein-substrate complex was completely dissociated beyond 70 degrees C. In the range 5-65 degrees C the protein remained active but Van't Hoff's plots indicated changes of the reaction thermodynamic parameters. Large negative delta Cp values (--2.25 kJ mole-1 K-1 between 5 and 40 degrees C and--9.40 above 40 degrees C) indicate important substrate induced modifications of the protein conformation. Scanning calorimetry of the leucine isoleucine valine binding protein before and after addition of leucine was also performed. Two thermal events were recorded when the protein was substratefree and only one, at a higher temperature and more important, when the substrate was added. The results of these two approaches were in agreement in that both methods suggested a binding dependent conformational change of the protein which resulted in a greater stability of its structure.

Bacterial Proteins↗

Biphasic saturations of binding proteins can be the result of a competitive inhibition of substrate fixation.

A mathematical model is proposed which explains some biphasic saturations of Binding Proteins by their substrates through an effect of a competitive inhibition. The inhibitor can be the substrate itself especially when the retention phenomenon is occuring. This model has been verified with two periplasmic Binding Proteins of Escherichia coli: the Glutamine Binding Protein and the Leucine-Isoleucine-Valine Binding Protein. A significant connection is found between experimental results and the hypothesis.

Binding, Competitive↗

[Relation between plasma catecholamines, the severity of the liver disease and hemodynamics in patients with cirrhosis].

Plasma noradrenaline and adrenaline concentrations were measured in 75 patients with cirrhosis in order to attempt to correlate these concentrations and liver failure and hemodynamic changes. The increased noradrenaline concentration was not correlated with the degree of liver failure estimated by Pugh's classification, with the cause of cirrhosis, with the presence of acute alcoholic hepatitis or with the presence of ascites. Adrenaline concentration was higher in cirrhotic patients with acute alcoholic hepatitis than in those without these lesions. Noradrenaline concentration was significantly correlated with heart rate, wedged hepatic venous pressure and renal blood flow. Noradrenaline concentration was also negatively correlated with stroke volume and adrenaline concentration was negatively correlated with cardiac output and stroke volume. These findings confirm the relationships between portal hypertension, sympathetic hyperactivity and renal function in patients with cirrhosis.

Adult↗