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Biomedical subjects

J H Trouvin

Publications and source records attributed to J H Trouvin.

At least 19 recordsLinked to original sources

Albumin binding and brain uptake of 6-fluoro-DL-tryptophan: competition with L-tryptophan.

We investigated potential competition between L-tryptophan (TRP) and 6-fluoro-DL-tryptophan (6-F-TRP) for binding to albumin and for passage through the blood-brain barrier (BBB). In experiments based on equilibrium dialysis, albumin (600 microM) bound about 80% of TRP and 50% of 6-F-TRP with affinity constants (Ka) of 3.7 +/- 0.04 x 10(4) and 0.62 +/- 0.01 x 10(4) M-1, respectively. Competitive inhibition was assessed as the decrease in the apparent Ka (K' a) of TRP in the presence of 6-F-TRP, with no modification of the N value. Competition between TRP, 6-F-TRP and L-valine (VAL) for passage across the BBB was demonstrated using two approaches. When administered concomitantly with TRP or 6-F-TRP to rats, VAL decreased brain uptake of TRP and 6-F-TRP and reversed their action on serotonin. In Oldendorf's model, 6-F-TRP and VAL decreased the brain uptake of TRP.

Animals

Pharmacokinetic studies of N-butyric acid mono- and polyesters derived from monosaccharides.

The pharmacokinetics of seven butyric esters derived from monosaccharides were studied after iv administration of a bolus dose to rabbits. Results obtained showed that a constant plasma level of butyric acid is maintained due to the slow disappearance of butyric acid esters from the plasma in contrast to the case of salts, such as arginine butyrate, which are rapidly cleared. The maintenance of these covalent compounds in the body can increase concentrations of n-butyric acid in the tumor area for more efficient chemotherapy. These results seem to be directly related to the in vitro anticellular activity of butyric esters and the prolonged therapeutic protection in tumor-bearing animals.

Animals

Adaptive computer program for determination of absorption profiles by numerical deconvolution: application to amoxicillin absorption.

We have developed a specific numerical deconvolution program for the Apple Macintosh microcomputer. After comparison with other methods, we used the program to evaluate the influence of nifedipine on the absorption and bioavailability of amoxicillin. The technique provided a model-independent approach. This study shows that the simultaneous administration of nifedipine with amoxicillin leads to a significant increase in both the total quantity of amoxicillin absorbed (+22%) and the rate of absorption. Parameters of clearance, volume of distribution, and elimination were unaffected. Numerical deconvolution analysis showed that nifedipine did not modify the absorption kinetics of amoxicillin, which are characterized by a lag time followed by a constant rate of absorption, suggesting zero-order kinetics with first-order kinetics at the end of the process. The results suggest the existence of a specialized, saturable transport molecule for this antibiotic.

Adult

Extrahepatic metabolism of propofol in man during the anhepatic phase of orthotopic liver transplantation.

We have investigated extrahepatic metabolism of propofol in 10 patients undergoing orthotopic liver transplantation (group 1) (mean age 38 yr, mean weight 60 (SD 7) kg) and compared it with that in 10 patients without liver dysfunction undergoing extrahepatic abdominal surgery (group 2) (mean age 56 yr, mean weight 68 (11) kg). A single i.v. bolus dose of propofol 0.5 mg kg-1 was injected into a peripheral vein 5 min after the beginning of the anhepatic phase in group 1 and 60 min after the induction of anaesthesia in group 2. Arterial blood samples were obtained at 5, 10, 15, 20, 30, 40, 50 and 60 min after injection and urine samples were collected every 15 min. Propofol concentrations in whole blood and urine were measured by high performance liquid chromatography with fluorescence detection. Propofol glucuronide was measured in urine by incubation with a specific beta-glucuronidase. The area under the time-blood concentration curve from 0 to 60 min was found to be significantly greater in group 1 (13743 (2830) micrograms litre-1 h-1) than in group 2 (7992 (4895) micrograms litre-1 h-1) (P less than 0.05). Unchanged propofol was not detected in the urine of either group. No significant difference was found in the amount of propofol glucuronide excreted by patients in group 1 (457 (269) micrograms) and in group 2 (921 (672) micrograms). The presence of a propofol metabolite in urine when the liver was excluded from the circulation suggests that extrahepatic metabolism occurred.

Adult

Modification of cefixime bioavailability by nifedipine in humans: involvement of the dipeptide carrier system.

We studied the action of nifedipine on the bioavailability of cefixime, a molecule absorbed via the gut wall dipeptide carrier system in the rat, and on the bioavailability of D-xylose, which is absorbed via a pH (and Na(+)-)-dependent transporter. Each compound was administered alone or in combination with 20 mg of nifedipine to eight healthy male volunteers. Nifedipine significantly increased the absorption rate of cefixime (20.7 +/- 4.3 versus 16 +/- 3.5 mg/h in the absence of nifedipine). The absolute bioavailability of cefixime alone was 31% +/- 6% compared with 53% +/- 1% (P < 0.01) in the presence of nifedipine. The observed peak concentrations in serum were significantly different (2.5 +/- 0.3 mg/liter without nifedipine and 3.7 +/- 1.1 mg/liter with nifedipine; P < 0.02). In contrast, nifedipine induced no significant differences in the pharmacokinetic profile of xylose following oral administration. We conclude that (i) cefixime is absorbed in humans by an apparently active process which can be enhanced by a calcium channel blocker, in this case, nifedipine; and (ii) nifedipine does not modify the activity of the pentose transporter.

Administration, Oral

In vivo evidence for carrier-mediated brain uptake of a new 2-amino-2-oxazoline (COR3224) via the purine transport system in rat.

We studied the brain uptake of a new 2-amino-2-oxazolamines derivative (COR3224) in the rat by means of the rapid intracarotid injection technique described by Oldendorf. The brain uptake index (BUI) of labelled COR3224 decreased progressively from 10% to 5% when concentrations of unlabelled compound were increased. The effect of various compounds indicated that COR3224 is transported into the brain by the purine carrier. The affinity of COR3224 for this carrier (Km = 5.68 microM) was higher than that of adenine.

Animals

Determination of a new 2-amino-2-oxazoline (COR 3224) in plasma and brain tissue of the rat by high-performance liquid chromatography with electrochemical detection.

A reversed-phase (CN as stationary phase) liquid chromatographic method with electrochemical detection is described for the quantitation of COR 3224, a new 2-amino-2-oxazoline in plasma and brain tissue of the rat. Extraction was performed with dichloromethane and detection was achieved at a working electrode potential of +0.85 V versus an Ag/AgCl reference electrode. The recovery of the method is about 80 and 60% for plasma and brain, respectively. The limit of detection was less than 10 ng/ml for both plasma and brain, five times lower than that with ultraviolet detection.

Animals

Biogenic amines and GABA in the larval and adult forms of the nematode Nippostrongylus brasiliensis.

1. Simultaneous detection (HPLC and electrochemical detection) of biological extracts of larval and adult stages of Nippostrongylus brasiliensis was performed in order to assay biogenic amines. 2. Gamma-amino-butyric acid was assayed in the same samples. 3. Tryptophan, 5-hydroxyindoleacetic acid were at the same level in adults and larvae. 4. 5-Hydroxytryptophan, serotonin, dihydroxyphenylalanine and dopamine were significantly higher in larvae in which gamma-amino-butyric acid was not detected.

Aging

Biogenic amines in newly-ecdysed cockroaches.

1. Simultaneous quantification (HPLC and electrochemical detection) of biological extracts have shown dopamine, N-acetyl dopamine, tryptophan, 5-hydroxytryptamine, a 5-hydroxyindolacetic acid-like substance in nervous tissue and hemolymph of Blaberus craniifer and Periplaneta americana. 2. 5-Hydroxytryptophan was only detected in head and thoraco-abdominal nerve cord. 3. Octopamine, but not N-acetyl-5-HT was quantified in the hemolymph.

3,4-Dihydroxyphenylacetic Acid

Effect of L-dopa loading on 5-HTP decarboxylation in rat brain areas.

The time course of 5-hydroxytryptophan (5-HTP), serotonin (5-HT), and 5-hydroxyindoleacetic acid (5-HIAA) concentrations in four rat brain areas (hypothalamus, hippocampus, striatum and olfactory bulbs) were investigated after treatment with L-dopa (125 mg/kg, ip) + benserazide (50 mg/kg, ip). 5-HTP levels increased as early as 0.5 h, showed maximum accumulation at 1.5 h and returned to control levels within 4 h, while 5-HT was markedly decreased in all four structures, with a maximum effect at 1.5 h (approximately -70%) in the four areas. The decrease in 5-HT was not accompanied by changes in 5-HIAA levels. In agreement with previous studies, these data demonstrate that L-dopa loading interferes with serotonin metabolism in the rat brain. However, in addition to the releasing action of newly-synthesized dopamine, the accumulation of 5-HTP and the parallel decrease in 5-HT indicate a reduction in 5-HT synthesis. This inhibition could be explained by a competitive effect of L-dopa for aromatic aminoacid decarboxylase activity.

5-Hydroxytryptophan

Kinetics and brain uptake of COR3224, a new 2-amino-2-oxazoline, in rats.

COR3224, a new 2-amino2 oxazoline derivative, shows antidepressant activity in the rat. This study was designed to analyse the influence of dose ranging on the brain/plasma concentration ratio of this drug. Adult male rats (250-300gr, Sprague Dawley) were given orally 10, 40 and 160 mg/Kg radiolabelled 14C-COR3224 (30 microCi/kg) in aqueous solution and were sacrificed at 0.25; 0.5; 0.75; 1; 2; 4; 6; 8; 12; 16; 24; and 30 hours post dose (5 rats per time). Plasma and brain samples were analysed for total radioactivity (T.R.) by liquid scintillation and for COR3224 (U.P.) by reversed-phase liquid chromatography and electrochemical detection. A linear relationship was found between AUC and doses administered for both TR and UP plasmatic determinations. In opposite, cerebral AUC for TR and U.P were not proportional to dose, and the evolution of the brain/plasma concentration ratios showed higher values for the 10mg/kg dose than for the 40 and 160mg/kg doses.

Animals

High-performance liquid chromatography of a new 2-amino-2-oxazoline: application to pharmacokinetic studies in dogs.

5-(1'-Phenyl-4'-piperazinomethyl)-2-amino-2-oxazoline (1; COR3224), a derivative of 2-amino-2-oxazolines with antidepressant properties in rats, was assayed in plasma by high-performance liquid chromatography. After back extraction, 1 and a ortho-O-methyl derivative of 1 as the internal standard were separated by reversed-phase liquid chromatography and measured by UV detection (235 nm). The method is rapid and specific: the detection was linear in the range 125-1000 micrograms.L-1, with a detection limit of 50 micrograms.L-1. This method allowed the determination of pharmacokinetic parameters in six beagle dogs after intravenous and oral administration of 14C-labeled 1 ([14C]1) in a crossover study. The comparison of the results obtained from total radioactivity counting and unchanged product evaluated by HPLC-UV suggest the presence of metabolites.

Administration, Oral

Acebutolol and diacetolol plasma levels in patients undergoing myocardial revascularization with hypothermic cardiopulmonary bypass.

Cardiopulmonary bypass (CPB) has been reported to alter the disposition of numerous drugs and consequently to modify their plasma levels. The present study was designed to delineate the time course of acebutolol (a cardioselective beta-blocker) and diacetolol (its main metabolite) plasma levels in seven patients undergoing myocardial revascularization with hypothermic CPB. All patients were given oral acebutolol twice daily until 3 hours before surgery. Initiation of CPB produced an immediate and significant, but transient, decrease in acebutolol and diacetolol plasma concentrations. Cessation of CPB was not associated with an increase in plasma beta-blocker levels. It is concluded that CPB does not induce major alterations in the time course of acebutolol and diacetolol plasma concentrations.

Acebutolol

Nifedipine enhances amoxicillin absorption kinetics and bioavailability in humans.

Intestinal absorption of aminopenicillins in vitro uses the dipeptide carrier system. Recent experiments have reported calcium ion to be a cellular mediator of the regulation of electrolyte transport through the enterocyte membrane, especially the Na/H exchange which is partly responsible for the proton gradient energizing the carrier system. In order to assess the in vivo relevance of these data, we studied, in healthy volunteers, the influence of nifedipine, a calcium channel blocking agent, on the intestinal uptake of amoxicillin, a commonly prescribed and well-absorbed aminopenicillin. Results obtained show that 1) intestinal absorption kinetics of amoxicillin follows a zero-order process, which further substantiates the existence of a saturable carrier-mediated process for this antibiotic in humans and 2) calcium channel blockade significantly enhances both absorption rate (by 70%) and bioavailability of amoxicillin (by 21.4%) without modifying its distribution or elimination. These findings might suggest that nifedipine could enhance amoxicillin intestinal uptake by stimulating its active transport.

Adult

Quantitation of paf-acether by release of endogenous platelet serotonin assessed by liquid chromatography with electrochemical detection.

A new method to quantitate paf-acether (paf) was developed. It is based on the measurement of serotonin released from washed rabbit platelets challenged with paf. Platelets (1 X 10(8)/ml) were exposed with or without stirring to various concentrations of paf (26-130 pM) at 37 degrees C or at room temperature. Supernatants were submitted to a 4-min liquid chromatography run and serotonin was measured by electrochemical detection. We quantitated paf from three different biological sources, human neutrophils, mouse peritoneal macrophages, and cultured mast cells, comparing a classical method, i.e., platelet aggregation with the electrochemical detection of endogenous serotonin. We found similar results since, when compared with the aggregation method, the results differed by 12 to 47%. The sensitivity of both methods was 26 pM. The between-day variation coefficient was 23 and 14% (n = 12) for the aggregation method and the serotonin release, respectively, whereas the within-day variation coefficient for serotonin quantitation was less than 5% (n = 12). The superiority of the new method lies in its simplicity, the economy of platelets, and its possibility of automation. It can be applied to any agonist or any mechanism capable of releasing serotonin from platelets and more generally when a simple and fast method for measuring serotonin is desirable.

Animals

The systemic availability of meptazinol in man after oral and rectal doses.

We have studied the pharmacokinetics of the centrally-acting analgesic meptazinol after oral and rectal administration to 15 healthy men. Each subject took a standard 200 mg tablet orally and Witepsol H12 suppositories containing 75, 100, and 150 mg of the drug in a cross-over design. Meptazinol plasma concentrations were measured by HPLC using fluorescence detection and the pharmacokinetics determined. The tmax values for the 100 mg and 150 mg suppositories (median = 0.5 h) were statistically significantly shorter than for the tablet (median = 1.13 h), suggesting that meptazinol was more rapidly absorbed via the rectal route. Despite substantial intersubject variation in Cmax the plasma concentrations after rectal dosage were higher than after oral administration. There was a statistically significant (p less than 0.001) improvement in systemic availability for each of the suppository doses (mean approximately 15.5% compared with the oral tablet (mean approximately 4.5%).

Administration, Oral

Effects of food intake and body weight on a serotonergic turnover index in rat hypothalamus.

Absolute levels and ratio of serotonergic compounds in food-related hypothalamic nuclei were determined with a chromatographic method comparing for control (C) versus lean (L) versus obese (O) rats. In all three groups, a second parameter, i.e., fasting (F) versus satiation (S) was superimposed on the body weight factor. Indoleamine levels failed to show statistical differences depending on the body weight and/or the nutritional status. A significant negative correlation between an index of the serotonin turnover, the 5-HIAA/5-HT ratio, and body weight was found for the paraventricular (PVN) nucleus in the C and L groups as well as for the lateral (LH) nucleus for the C and O groups. A positive correlation was found for the ventromedian (VMH) nucleus in the O group. These data suggest that the body weight factor is implicated in the central serotonergic regulation more than the feeding parameter.

Animals

Comparison of tissular disposition of pentamidine mesylate in the rat after aerosol or parenteral administration.

The tissular distribution of pentamidine mesylate (4 mg/kg as free base) after intravenous, intramuscular, and aerosol administration in healthy rats was examined. Pentamidine levels in the plasma, lungs, liver, kidneys, and other organs were determined by high-performance liquid chromatography. Pentamidine was undetectable in the plasma after day 5. At day 1, the injected groups had high concentrations of the drug in the kidneys (32-34 micrograms/g) and spleen with much lower concentrations in the lungs and the liver (3.12-5.70 micrograms/g and 1.64-2.19 micrograms/g, respectively). Aerosol delivery of pentamidine produced negligible extrapulmonary drug levels (3.29 micrograms/g in kidneys at day 1) and high sustained pulmonary levels throughout the 60 d of the study (range 5.42-19.62 micrograms/g). The half-time of elimination was longer in the lungs and kidneys (29-45 d) than in the liver (1.4-7.0 d) regardless of the mode of administration.

Aerosols