PubMed HealthSearch

Biomedical subjects

R Nordmann

Publications and source records attributed to R Nordmann.

At least 19 recordsLinked to original sources

Comparative effects of ethanol, n-propranol and isopropanol on lipid disposal by rat liver.

Besides ethanol, other aliphatic alcohols such as n-propanol and isopropanol induce a triacylglycerol (TAG) accumulation in the liver. To determine whether a common mechanism is responsible for the effects of these three alcohols on hepatic lipid metabolism, each was administered by gastric tube to female Wistar rats at the dose of 50 mmol/kg body wt. Whichever alcohol was administered, the hepatic triacylglycerol accumulation was found to be related to the duration of elevated blood alcohol concentration. After administration of n-propanol or isopropanol, the liver [14C]palmitate uptake was increased whereas hepatic palmitate oxidation to 14CO2 was impaired and palmitate esterification into TAG enhanced; these perturbations were however more discrete than after ethanol administration. In contrast to ethanol and n-propanol which, at the dose presently used, increase precursor incorporation into blood TAG, isopropanol inhibits this incorporation. Interference with the process of very low density lipoprotein (VLDL) synthesis and/or secretion, which appears only at a late stage of isopropanol intoxication, is probably responsible for the intensity and duration of the fatty liver observed after administration of this alcohol.

1-Propanol

[Effect of natural amino acids on ethanol oxidation in isolated rat hepatocytes].

The effects of the various naturally occurring amino acids on ethanol oxidation in hepatocytes from starved rats was systematically studied. In order to minimize the non ADH pathways, the ethanol concentration used was 4 mmol/litre, the amino acids being added at the same concentration. In hepatocytes from fasted rats, alanine, arginine, asparagine, aspartate, citrulline, cysteine, glutamate, glutamine, glycine, histidine, hydroxyproline, ornithine and serine increase significantly ethanol consumption. The stimulatory effect of glutamine being much less pronounced than the asparagine one and proline being devoid of action, the influence of ammonium chloride addition on ethanol consumption in the presence of these amino acids was studied. Ammonium chloride determines an enhancement of ethanol oxidation in these conditions, the results showing no apparent correlation between intracellular glutamate concentration and ethanol oxidation rate, contrarily to previous data. In hepatocytes from fed rats, only alanine, asparagine, cysteine, glycine, hydroxyproline, ornithine and serine increase ethanol oxidation, although to a lesser extent than in cells from starved rats.

Amino Acids

Modification of theophylline-induced lipolysis in human fat cells after trypsination.

Trypsin-treatment of human fat cells results in the potentiation of the lipolytic response and the cAMP accumulation induced by theophylline (5 . 10(-4) M) but not of those induced by theophylline (5 . 10(-3) M). The amount of cAMP formed after exposure to theophylline (5 . 10(-3) M) plus norepinephrine (5 . 10(-6) M) remains, however, 2.6 fold higher in trypsin-treated human fat cells than in the control ones.

Adipose Tissue

Loss of the lipoprotein lipase activating ability of rat serum after administration of some fatty liver inducing drugs.

The effects of the administration of different fatty liver inducing drugs on the serum lipoprotein lipase activating ability was investigated in rats. Addition of serum from 2-mercaptoethanol-, 2-mercaptoacetate-, ethionine- or D-galactosamine- treated rats failed to activate heart and adipose tissue lipoprotein lipase from control rats. The activating effect of serum was only slightly reduced in isopropanol-treated rats, whereas it was found unaffected in ethanol-treated ones. Electrophoresis of the lipoproteins and of the very low density lipoproteins (VLDL) fraction of sera from 2-mercaptoethanol-, 2-mercaptoacetate-, isopropanol-, ethionine- and D-galactosamine-treated rats suggest that the lack of lipoprotein lipase activation ability of these sera is most probably related to the impairing effects of these drugs upon VLDL metabolism, i.e. reduction of VLDL secretion in the case of 2-mercaptoethanol, 2-mercaptoacetate and isopropanol, production of abnormal VLDL in the case of D-galactosamine and both decreased VLDL secretion and production of abnormal VLDL in the case of ethionine.

1-Propanol

Regulation of lipolysis and cyclic AMP synthesis through energy supply in isolated human fat cells.

The effects of glucose and of various inhibitors of glycolysis or of oxidative phosphorylation on stimulated lipolysis and on intracellular cyclic AMP and ATP levels were investigated in isolated human fat cells. The glycolysis inhibitors, NaF and monoiodoacetate, inhibited epinephrine or theophylline-stimulated lipolysis and parallely reduced the intracellular cyclic AMP and ATP levels; however, neither NaF nor monoidoacetate significantly affected dibutyryl cyclic AMP-induced lipolysis. Removal of glucose from the medium also reduced the rate of epinephrine-stimulated lipolysis and the intracellular cyclic AMP and ATP levels but failed to modify the lipolytic activity of dibutyryl cyclic AMP. The oxidative phosphorylation inhibitors, antimycin A and, under fixed conditions, 2,4-dinitrophenol also strongly decreased the adipocyte cyclic AMP and ATP levels but inhibited as well the rate of epinephrine- and of dibutyryl cyclic AMP-induced lipolysis. N-Ethylmaleimide, a mixed glycolysis and oxidative phosphorylation inhibitor, not only reduced the intracellular cyclic AMP and ATP levels and epinephrine- or theophylline-induced lipolysis, but also that stimulated by dibutyryl cyclic AMP. When glycolysis was almost fully inhibited, human fat cells were insensitive to epinephrine but remained fully responsive to dibutyryl cyclic AMP. These results, showing a relationship between ATP availability, cyclic AMP synthesis and lipolysis, suggest a different ATP requirement for cyclic AMP synthesis and triacylglycerol lipase activation, a difference which could explain why ATP issued from glucose breakdown appears to be a determinant factor for cyclic AMP synthesis, but not for triacylglycerol lipase activation in human fat cells.

Adipose Tissue

Role and mechanism of peripheral fatty acid mobilization in 2-mercaptoethanol-induced fatty liver.

2-Mercaptoethanol-induced fatty liver involves an increased free fatty acid mobilization which is primarily due to an inhibition of free fatty acid reesterification in adipose tissue. Furthermore, increased free fatty acid mobilization as well as fatty liver induction are not induced by 2-mercaptoethanol per se but result most probably from 2-mercaptoacetate through oxidation of 2-mercaptoethanol.

Adenosine Triphosphate

[Comparison of the effect of acetone and isopropanol on lipid metabolism in rats].

Isopropanol and acetone administered to rats in conditions leading to a similar blood acetone level differ markedly in their effects on lipid metabolism. Isopropanol administration determines a fatty liver, which is mainly related to a defect in hepatic lipoprotein synthesis. Acetone administration gives only raise to a slight increase in the liver triacylglycerol level. It does not alter the [1-14C] palmitate, [1-14C] glycerol or [U-14C] leucine incorporation into blood lipoproteins. Acetone does thus not appear to play a preminent role in the isopropanol induced fatty liver which seems to be related mainly to a direct action of the alcohol itself.

1-Propanol

[Effect of arginine administration on disturbances of hepatic glutamine metabolism during acute ammonia intoxication in the rat].

The present study is concerned with the effects of L-arginine hydrochloride administration on the disturbances of liver glutamine metabolism following acute ammonia intoxication in the rat. Our results show that arginine administration does not suppress the decrease in the hepatic glutamine level and the marked activation of liver glutaminase I induced by ammonia. These alterations do not therefore appear to be related to the limitation of ammonia detoxication through the urea cycle.

Amino Acids

Inhibition of free fatty acid release from isolated rat epididymal fat cells by some natural occurring organic acids.

The effects of some mono-, di- and tricarboxylic substrates (acetate, pyruvate, L-lactate, L-alanine, D,L-beta-hydroxybutyrate, succinate, D,L-malate, alpha-oxoglutarate, L-glutamate and citrate) on the basal lypolytic activity of isolated white adipocytes from fasted rats were investigated "in vitro". At concentrations ranging from 1 to 10 mM, the compounds tested, except lactate, had no influence on the rate of glycerol release but markedly reduced the free fatty acid (FFA) release. Lactate reduced both the glycerol and FFA release. As this "in vitro" lowering effect on FFA release was observed using concentrations occurring "in vivo" in the blood for lactate, beta-hydrobutyrate, and alanine, these results suggest that, besides lactate and beta-hydroxybutyrate, alanine may also assume an important role in the "in vivo" regulation of peripheral FFA mobilization and consequently of ketogenesis.

Adipose Tissue

Influence of trypsin on lipolysis in human fat cells. Comparison with rat adipocytes.

1. Trypsin-treated human and rat fat cells were obtained by digestion of adipose tissue with collagenase plus trypsin and their lipolytic response to insulin, catecholamines and dibutyryl cyclic AMP were compared with the lipolytic response of human and rat fat cells isolated with collagenase only. 2. In both human and rat fat cells, no significant modification occurred in the intracellular lactate dehydrogenase content and in the basal release of glycerol after trypsination. 3. In rat fat cells, trypsin abolished the antilipolytic effect of insulin but maintained a normal lipolytic response to epinephrine, norepinephrine and isoproterenol. 4. In human fat cells, on the contrary, trypsin failed to modify the antilipolytic effect of insulin, but markedly potentiated the lipolytic response to epinephrine, norepinephrine and isoproterenol. Trypsin also increased the rate of intracellular 3' :5' cyclic AMP accumulation in response to catecholamines. Under these conditions, however, trypsin-treated human fat cells had a normal reponse to the lipolytic agent dibutyryl cyclin AMP. 5. These data suggest that human fat cells differ from the rat ones by the existence in human adipocyte membranes of a trypsin-sensitive component which inhibits the catecholamine induced lipolytic process and which is different from the alpha receptors.

Adipose Tissue

Structure of the phosphatidylcholines of the lung surfactant at birth in normal full term infants.

1. This investigation was undertaken for the purpose of determining the structure of the phosphatidylcholines of lung surfactant system present at birth in normal full term newborn infants. 2. The procedure, using tracheal aspirates as lung secretions, combines a cold-acetone precipitation and a two-dimensional thin-layer chromatography of the lipid extract. 3. Different species of phosphatidylcholines were isolated and found to account together for over 60% of the total phospholipids in tracheal aspirates. Analysis of the fatty acids esterifying the alpha- and beta-carbon of these different phosphatidylcholines showed palmitic acid as the major component with little myristic acid. 4. This fatty acid analysis revealed furthermore that the major phosphatidylcholine fraction was almost exclusively alpha, beta-dipalmitoylphosphatidylcholine. 5. This study shows that the procedure described provides a useful and simple method for the extraction, isolation and characterisation of the functional components of lung surfactant in living human newborns.

Chromatography, Thin Layer