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Biomedical subjects

P Galtier

Publications and source records attributed to P Galtier.

At least 19 recordsLinked to original sources

Ontogenic development of liver progesterone metabolism in female sheep. Contribution of cytochrome P4502B and P4503A subfamilies.

Age-related changes in progesterone hepatic metabolism were measured in Lacaune ewes in the foetal, neonatal (1 and 4 weeks), growing (7 months), pregnant (11 months) and adult (6 years) stages. 6 beta-Hydroxylation and 20 alpha-reduction were found to be the most efficient metabolic process in ovine microsomes. These activities were detected in 3-month-old foetuses and they increased rapidly during the first month of life, in a similar manner to the developmental expression of the cytochrome P4503A subfamily. 16 alpha- and 21-hydroxylation of progesterone were characterized by low, constant turn over in sheep liver microsomes during development. The hepatic ovine P4502B isozyme was purified to electrophoretic homogeneity by means of successive DEAE cellulose, hydroxylapatite and CM cellulose chromatographic separations. This hemoprotein had an apparent molecular weight of 51 kDa and was characterized by spectral data, NH2-terminal amino-acid sequence, immunological and catalytic properties. The relative contribution of this form and of the previously purified ovine P4503A subfamily was investigated in liver progesterone metabolism by immunoinhibition studies using polyclonal antibodies raised in rabbits and from the existence of induction and of significant correlations between microsomal activity and specific P450 content. In sheep liver microsomes, it would appear that cytochrome P4502B is involved in progesterone 21-hydroxylation whereas P4503A participates in the 6 beta- and 16 alpha-hydroxylation and possibly in the reductive conversion of progesterone in its 20 alpha-hydroxy derivative.

Aging

Inducing effect of oxfendazole on cytochrome P450IA2 in rabbit liver. Consequences on cytochrome P450 dependent monooxygenases.

Male New Zealand rabbits were dosed with either 0.9, 4.5 or 22.5 mg/kg/day of oxfendazole by gastric intubation for 10 days. Oxfendazole administered at the therapeutic dose (4.5 mg/kg) and at the highest dose (22.5 mg/kg) increased 1.54- and 2.36-fold the total liver microsomal cytochrome P450 and more particularly the isoenzyme P450IA2 (95 and 184% increases) as demonstrated by western blotting. Increases in ethoxyresorufin O-deethylation and hydroxylations of benzopyrene and acetanilide occurred in livers of the same animals without any change in N-demethylation of aminopyrine, benzphetamine or erythromycin. Because of the unchanged level of mRNA specific to cytochrome P450IA2, as shown by northern blot analysis of poly mRNA, an enzyme stabilization rather than a transcriptional activation of IA2 genes should be involved in the P450IA2 regulation mechanisms. Oxfendazole bound strongly to cytochrome P450, giving rise to a type II spectrum, and inhibited noncompetitively the ethoxyresorufin O-deethylase and acetanilide hydroxylase activities, this confirmed that oxfendazole interacts only with the P450IA2 family. On the basis of a comparison of the enzymatic activities induced by various imidazole drugs, it was concluded that oxfendazole, like omeprazole and albendazole, behaved as a 3-methylcholanthrene-type inducer. These three benzimidazoles did not all belong to the same category of cytochrome P450 inducers as the antifungal drugs miconazole, clotrimazole and ketoconazole.

Animals

Simultaneous pharmacokinetic modeling of a drug and two metabolites: application to albendazole in sheep.

Albendazole pharmacokinetic parameters were determined in lambs after iv, oral, and intraruminal single administrations. The parent drug and two metabolites, albendazole sulfoxide and albendazole sulfone, were simultaneously determined in whole blood, plasma, and urine using an HPLC method. The parent drug was only recovered in plasma when injected intravenously. For other routes, only the two metabolites were detectable; they were present in red blood cells and plasma at equal concentrations. The pharmacokinetic parameters were determined by using compartmental models which simultaneously described the two oxidative steps and the urinary excretion of the sulfoxide derivative. Dose-dependent pharmacokinetics was studied in the dose range 0.95-3.8 mg/kg. The results showed that clearance remained constant within the tested dose range since the area under the curve normalized to the dose was similar in the cases of sulfoxide and sulfone metabolites, whatever the route of administration. The drug appeared to be extensively metabolized in the body regardless of the route of administration. Sulfoxidation probably took place in liver, but other tissues seemed to be responsible for the formation of the sulfoxide which has been described as the major anthelmintic derivative of albendazole.

Administration, Oral

Pharmacokinetics of ampicillin and pentobarbital in the course of subclinical fascioliasis in sheep.

Pharmacokinetics of two common veterinary drugs, ampicillin and pentobarbital, were determined in sheep before and four, eight, 12, 17 and 21 weeks after infestation of animals by an oral administration of 150 metacercariae of Fasciola hepatica. The parasite infestation was ascertained by clinical observation of the animals. The pharmacokinetics of ampicillin were not significantly affected by the liver parasitism but the disposition of pentobarbital changed. A significant increase in elimination half-life (around 180 per cent), volume of distribution (130 per cent) and mean residence time (154 to 170 per cent) was observed in sheep infected by the parasite for four to 12 weeks. In these animals, duration of narcosis caused by pentobarbital was prolonged 1.8-fold. The results suggested that both reduced elimination of pentobarbital and impaired distribution of the drug would be responsible for the prolonged duration of narcosis in infected animals.

Ampicillin

Differential inhibition of rat hepatic glutathione S-transferase isoenzymes in the course of fascioliasis.

The effects of a subclinical fascioliasis at various stages of its development (at week 3, 6 and 9 after infection by oral administration of 20 metacercariae of Fasciola hepatica) in rats were determined on the activity of enzymes involved in liver metabolism of glutathione and on the subunit pattern of cytosolic glutathione S-transferase. The parasitic pathology was ascertained by clinical observation of the rats and at autopsy. Hepatic microsomal cytochrome P-450 content was significantly decreased in infected rats by week 3 and 6 post-infection. Not correlatively, the catalytic activities of glutathione S-transferase towards 1-chloro-2,4-dinitrobenzene and 1,2-dichloro-4-nitrobenzene were significantly lowered in last stages of the experimental fascioliasis (by week 6 and 9 post-infection). These decreases were correlated to that of subunit 1 as determined by means of high-performance liquid chromatography of cytosolic proteins whereas subunit 6 could also be decreased. Fascioliasis did not alter cytosolic glutathione, glutathione reductase and glutathione peroxidase activities or plasma glutathione S-transferase activity accepting 1-chloro-2,4-dinitrobenzene as the substrate.

Animals

Plasma protein binding of nitroxynil in several species.

The binding of nitroxynil to total plasma proteins of cows, sheep and rabbits was characterized using equilibrium dialysis. The data indicate clearly that nitroxynil was highly (97-98%) bound to plasma protein of each animal. This linear binding would be due to the particular power exerted by serum albumin. The results are in good agreement with known pharmacokinetic properties of nitroxynil in domestic species.

Animals

Comparison of mucosal drug conjugative rates along the gastrointestinal tract of female sheep.

The comparative distribution of p-nitrophenol UDP-glucuronosyl-transferase, 1-chloro-2,4-dinitrobenzene glutathione-S-transferase and sulphamethazine N-acetyltransferase activities was studied along the gastrointestinal mucosa of female Lacaune sheep. Gastrointestinal mucosa was characterized by a very low and unequal N-acetyltransferase activity when activities were expressed per g of wet organ. The duodenum contained highest activities (4.1 nmol/g min). When results were expressed per mg of cytosolic protein, the duodenal activity (0.64 nmol/mg min) was sixfold higher than in liver (0.11 nmol/mg min). There was a lack in N-acetyltransferase activity accepting isoniazid as substrate. Glucuronosyltransferase activity was approximately threefold higher in microsomal fractions of the mucosal lining of gastric and colonic intestine (0.43-0.58 nmol/g min) than in small intestine or caecum (0.10-0.26 nmol/mg min). Concerning cytosolic glutathione S-transferase activity, two- to threefold higher activities were obtained in omasum, jejunum, duodenum and ileum (1021-2164 nmol/g min) than in other parts (341-799 nmol/g min) when results were expressed per g of wet organ. These data were compared with corresponding hepatic activities determined in the same six female sheep.

Acetates

Decrease in albendazole sulphonation during experimental fascioliasis in sheep.

1. The in vivo S-oxidation of albendazole was measured from the pharmacokinetic profile of albendazole sulphoxide and sulphone determined in young male sheep receiving oral albendazole (1.9 mg/kg). Studies were carried out before, and each month after, oral infestation by 150 metacercariae of Fasciola hepatica. 2. Parasitic pathology was ascertained by clinical observation of animals, and the increase in plasma antibodies directed against liver flukes. 3. Rate of conversion of sulphoxide to sulphone and rate of sulphone elimination, were respectively decreased by 47% and 87% at week 8 post-infection, whereas significant increases in the area under plasma sulphone concentrations versus time curve and mean residence time, occurred 4-12 weeks following the infestation. 4. A 58% decrease in albendazole sulphonation was demonstrated in liver microsomal preparations obtained from 8-week-infected sheep, while there was no change in the FAD-directed sulphoxidation of albendazole. 5. The transient impairment of albendazole sulphonation could be related to the decrease in liver microsomal cytochrome P450-dependent monooxygenases observed in sheep with a similar parasitic pathology.

Administration, Oral

Pharmacokinetics of ochratoxin A in animals.

The fate of ochratoxin A has been studied in laboratory rodents and in breeding animals. In rats, orally administered ochratoxin A is readily absorbed, and considerable amounts of the toxin are detected in plasma, where maximal concentrations occur 2-4 h after administration. Pharmacokinetic analysis of curves of plasma level versus time suggests its distribution in two distinct body compartments. The half-time of the toxin depends on both the dose and the animal species, varying from 0.7 h in fish to 840 h in monkeys. In plasma, the toxin is bound to albumin, like many acidic compounds. This interaction is competitively inhibited by phenylbutazone, ethylbiscoumacetate and sulfamethoxy-pyridazine and is decreased in albumin-deficient rats. The hydrolysis of ochratoxin A to an isocoumarin derivative (ochratoxin alpha) is the major metabolic pathway. This detoxication is brought about by animal and bacterial carboxypeptidases and takes place in the rumen and large intestine. 4-Hydroxyochratoxin A is the main hepatic metabolite, and its formation appears to be polymorphic, like debrisoquine 4-hydroxylation. The ratio of 4-hydroxyochratoxin A to ochratoxin A excreted in urine may be linked to the carcinogenic potential of the toxin, as the metabolite is almost as effective an immunosuppressor as ochratoxin A. After undergoing enterohepatic circulation, the toxin and ochratoxin alpha are excreted in faeces and urine as various unidentified metabolites. Transport of the mycotoxin in the kidney is mediated by the renal organic anion transport system, and renal metabolism may contribute to detoxification. Although dose-dependent placental transfer of ochratoxin A has been described in rodents, the toxin does not cross the placenta into fetuses of sows administered a low dose (0.38 mg/kg) orally. Its diffusion into the milk of female rabbits is seen after intravenous administration, but in cows given 50 mg of the mycotoxin, barely detectable amounts of ochratoxin alpha were recovered in milk. Ochratoxin A is preferentially distributed in liver, kidney, muscle and fat. The experimental data are in close accordance with several reports on the spontaneous occurrence of unchanged toxin residues in blood and kidneys of slaughter pigs.

Albumins

[Comparative pharmacokinetics of triclabendazole in camels and sheep].

The authors describe the compared pharmacokinetics of triclabendazole in three camels and four sheep which were given orally a single dose of 10 mg/kg liveweight. Plasma concentrations of triclabendazole and its main metabolites were determined by high performance liquid chromatography. No parental drug was detected in the blood plasma due to a hepatic first passage effect. It appeared that there was a major difference between the two species, triclabendazole sulfoxide concentrations being two times lower in camels than in sheep.

Animals

Purification of a sheep liver cytochrome P-450 from the P450IIIA gene subfamily. Its contribution to the N-dealkylation of veterinary drugs.

Oral administration of troleandomycin at a dose of 100 mg/kg/day for 6 days to three adult male Lacaune sheep produced a 1.6-fold increase in specific content of liver microsomal cytochrome P-450. In sodium dodecyl sulfate-polyacrylamide gel electrophoresis, microsomal preparations from treated animals exhibited a strong band in the zone of electrophoretic mobility of cytochromes P-450. This band corresponded to a cytochrome P-450 which cross-reacted with rabbit P450IIIA6 antibodies, as demonstrated by immunoblotting. The ovine isozyme was purified to electrophoretic homogeneity by means of successive DEAE cellulose, CM cellulose and hydroxylapatite chromatographic separations. This hemoprotein had an apparent molecular weight of 52 kD as determined by calibrated sodium dodecyl sulfate-polyacrylamide gel electrophoresis and was characterized in terms of spectral data, NH2-terminal amino acid sequence, immunologic and catalytic properties. This study revealed some interspecies differences with the orthologous rabbit isozyme. The contribution of this form to the N-demethylation of erythromycin and of three veterinary drugs: chlorpromazine, chlorpheniramine and bromhexine was demonstrated from inhibition by TAO, from immunoinhibition studies, using polyclonal antibodies raised in rabbit and from the existence of significant correlations between its microsomal level and these N-demethylase activities. In contrast, the results suggest that ovine P450IIIA could not be predominantly involved in the N-dealkylation of benzphetamine, ephedrine, ivermectine or spiramycin.

Administration, Oral

Effect of low doses of a trichothecene mycotoxin (diacetoxyscirpenol) on rat gastric glycoproteins: a histochemical study.

A histochemical study was carried out to evaluate the changes occurring in the glycoproteins of the stomach of the rat following short-term treatment with the trichothecene mycotoxin, diacetoxyscirpenol (DAS). Staining with alcian blue methods for detecting complex carbohydrates and with lectin conjugates (Con A, LTA, PNA, SBA and WGA) showed an increased alcianophilia at pH 2.6 and pH 1.0 for various parts of the fundic glands. With respect to lectin staining, DAS intoxication was characterized by enhanced labelling with LTA and SBA in the surface epithelium and in the foveolae, while WGA binding appeared in the lower mucous neck cells. These data suggest that the contents of the mucus-producing cells of the fundic glands of the rat stomach could be affected by low doses of diacetoxyscirpenol even following only 2 days of treatment.

Animals

Comparison of hepatic drug metabolizing enzymes in three-month-old lambs and kids.

1. The comparative activity of hepatic cytochrome P-450 monooxygenase system, glucuronyl-transferase, glutathione S-transferase and N-acetyltransferase was studied in three-month-old male and female Lacaune lambs and male Saanen kids. 2. The study of mixed-function oxidase components showed that total cytochrome P-450 ranged from 0.54 in kids to 0.85-0.88 nmol/mg-1 in lambs. Male lambs had higher levels than kids (122-165%) for aminopyrine, benzphetamine, ethylmorphine and erythromycin demethylases or benzo(a)pyrene hydroxylase whereas NADPH-cytochrome c reductase was 1.19-fold lower in lambs. 3. Sex-related changes were observed in lambs in case of microsomal benzo(a)pyrene hydroxylase activity which appeared 1.31-fold more potent in male liver. Cytosolic N-acetyltransferase accepting sulfamethazine as substrate was about 8-fold higher in female than in male lambs. 4. The analysis of samples from various liver lobes, indicated the heterogenous distribution of microsomal proteins which is related to higher concentrations of both cytochrome b5, NADPH-cytochrome c reductase and p-nitrophenol glucuronyltransferase in left lobes.

Animals

The development of drug-metabolizing enzymes in female sheep livers.

The purpose of this investigation was to determine age-related changes of some hepatic drug-metabolizing activities in Lacaune ewes in the foetal, neonatal (1 and 4 weeks), growing (7 months), pregnant (11 months) and adult (6 years) stages. Although microsomal cytochrome P-450 was not detected in 3-month-old foetuses, it increased regularly from 1-week- to 11-month-old animals. Among mixed-function oxidases, the development of aminopyrine and ethylmorphine N-demethylases, benzo(alpha)pyrene hydroxylase and ethoxycoumarin O-deethylase were correlated to that of total cytochrome P-450. Due to their presence in foetal liver or their more rapid evolution, cytochrome b5, NADPH cytochrome c reductase, aniline hydroxylase, benzphetamine N-demethylase and erythromycin N-demethylase did not parallel the ontogenesis of cytochrome P-450. Hepatic transferases showed different developmental patterns from mono-oxygenases, so UDP glucuronyltransferase was detected in the foetus, reached maximum activity in all young ages up to the pregnant stage and subsequently fell in adult ewes. Concerning glutathione S-transferase accepting 1-chloro-2,4-dinitrobenzene as substrate, similar values were obtained in the foetus and all young animals, whereas five- to tenfold higher values were obtained in both pregnant and adult female sheep. N-acetyltransferase using sulphamethazine did not significantly change from foetuses to adults but there were large differences in the capacity of hepatic acetylation between animals belonging to the same group.

Aging

[Establishment of posology: the case of antiparasitic agents].

As generally observed for all veterinary drugs, the dosage regimen of anti-parasitic drugs must take into account both the therapeutic efficacy and the hygienic value of animal food products. However, the target of these drugs is not the host animal but parasites characterized by their particular life cycle stages. Consequently, anti-parasitic agents are generally either slowly eliminated or used as slow-release formulations both of which contribute to an extended tissular presence. The determination of the optimal drug dosage regimen is based on the study of a dose-efficacy relationship, the determination of the route and the frequency of administrations. Among factors affecting the anti-parasitic drug dosage regimen, differences could be related to physiological variations, such as interindividual variability, age- and species-related changes in drug distribution, metabolism or elimination, nutritional status, gestation and lactation stages. Finally, drug interactions due to associated therapy (anti-inflammatory or antibiotic drugs) or the existence of chronic diseases (eg, parasitism) could modify the normal fate of drugs with consequences on both their therapeutic effectiveness and the persistence of drug residues.

Animals

Simultaneous measurement of prednisone, prednisolone and hydrocortisone in plasma by high performance liquid chromatography.

The authors describe a normal phase liquid chromatographic assay suitable for therapeutic monitoring of prednisone, prednisolone, hydrocortisone in human and animal plasma. The compounds were extracted into dichloromethane using flumethasone as internal standard. The separation was obtained by using a silica normal phase (5 mu) and a mobile phase of dichloromethane, methanol, acetic acid (95.6; 4; 0.4 v/v/v). The absorbance of the compounds was monitored at 254 nm with a sensitivity limit of 2 ng/ml for all the products. This method was applied to pharmacokinetic studies in animal and therapeutic monitoring in man.

Chromatography, High Pressure Liquid