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Biomedical subjects

G Fabre

Publications and source records attributed to G Fabre.

At least 37 records · Page 2Linked to original sources

Importance of the paracellular pathway for the transport of a new bisphosphonate using the human CACO-2 monolayers model.

The transport of a new bisphosphonate, Tiludronate, was investigated on the human adenocarcinoma cell line, CACO-2. Experiments were performed 7-16 days after cells achieved confluence, conditions under which they form well-differentiated monolayers joined by tight junctions. Tiludronate transport rate across CACO-2 monolayers was independent of the temperature (4 degrees versus 37 degrees), of the polarity of the cell membrane (apical-to-basolateral versus basolateral-to-apical), and of the presence of metabolic poisons (sodium azide). Its transport was enhanced by either the presence of EGTA in the incubation buffer, i.e. when extracellular Ca2+ concentration was reduced, or by the pretreatment of monolayers with EGTA, i.e. when the intercellular spaces and the tight junctions were widened. Based on these different observations, we could suggest that Tiludronate mainly used the paracellular pathway to cross the intestinal epithelium. An increase in the Tiludronate permeability coefficient was also observed following treatment of cells with high Tiludronate concentrations, as a consequence of the direct effect of this compound on the extracellular Ca2+ ions. Hence, for high drug concentrations, i.e. 20 mM, we observed a decrease in free extracellular Ca2+ concentration, an increase in the transepithelial electrical resistance and an increase in the transport of [14C]polyethyleneglycol ([14C]PEG400), a probe for the paracellular pathway. The results indicate that Tiludronate is transported across CACO-2 monolayers by the paracellular route. Moreover, it can affect its own transport by its concentration-dependent effect on tight junction widening.

Azides↗

Delta 2-valproate biotransformation using human liver microsomal fractions.

The metabolism of 2-n-propyl-2-pentenoate (delta 2-VPA) was evaluated in human hepatic microsomal fractions. Two biotransformation pathways have been particularly investigated. In the presence of the cytochrome P-450 co-factor, NADPH, the main metabolites recovered were delta 3-VPA, delta 2,4-VPA and VPA. The glucuronidation of delta 2-VPA was also studied on various hepatic microsomal fractions using Brij 35 as activator and UDP-glucuronic acid as co-factor. A large interindividual variability occurred in this metabolic pathway. Km and Vmax were 0.85 mmol/l and 1.75 nmol.min-1.mg-1, respectively, for delta 2-VPA and 1.11 mmol/l and 5.71 nmol.min-1.mg-1 for VPA, respectively. The good correlation (r = 0.82; p less than 0.001) observed between the glucuronidation of VPA and delta 2-VPA as well as the mutual inhibition of each other's glucuronidation strongly suggests that (a) common single UDP-glucuronosyltransferase isoenzyme(s) was (were) involved in this glucuronidation step. The glucuronidation of specific substrates for various UDP-glucuronosyltransferase isoenzymes showed a good relationship between the glucuronidations of delta 2-VPA and morphine, a substrate for UDP-glucuronosyltransferase-2B. Moreover, morphine competitively inhibits delta 2-VPA glucuronidation. It seems the same isoenzyme or, at least, (a) very closely related isoenzyme(s) belonging to UDP-glucuronosyltransferase-2 isoenzyme, is involved in delta 2-VPA glucuronidation.

Anticonvulsants↗

Purification of two cytochrome P450 isozymes related to CYP2A and CYP3A gene families from monkey (baboon, Papio papio) liver microsomes. Cross reactivity with human forms.

Two cytochrome P450 isozymes, FA and FI, were isolated and characterized from liver microsomes of phenobarbital-induced baboons (Papio papio). The cytochrome FA possesses the same N-terminal amino acid sequence as P450 MK2 from crab-eating monkeys (Macaca irus) and closely resembles the human P450 3A isozymes. This cytochrome was able to oxidize nifedipine and hydroxylate testosterone at the 6 beta position. The second baboon cytochrome (FI) is closely related to the P450 2A subfamily and has the same N-terminal sequence as human P450 2A7. Like human P450 2A forms, it is highly active as a coumarin 7-hydroxylase. Antibodies against P450 FA and FI cross-react with two human liver proteins of 51 kDa and 49 kDa, respectively. The concentration of the first protein in the human samples, was five-times greater than the second. However, the latter showed marked interindividual variation. In primary cultures of human hepatocytes, rifampicin is a strong inducer of the 51-kDa protein and a moderate inducer of the 49-kDa protein, while phenobarbital has the opposite effect on the two proteins.

Amino Acid Sequence↗

Evolution of hepatitis A antibodies prevalence in young French military recruits.

Hepatitis A antibodies (anti-HAV) were surveyed in 1000 French recruits during 1990. The prevalence of anti-HAV in this group was 21.35%. Compared to a 1985 survey a 9% fall in the anti-HAV prevalence rate was observed. Living in a coastal area, low educational level, stay overseas were the main risk factors, as already noted in 1985.

Adolescent↗

Regulation of cytochrome P450IA1 gene expression in a human intestinal cell line, Caco-2.

The expression and inducibility of cytochrome P450IA1 isozyme was investigated in the human carcinoma cell line Caco-2 cultured between days 7 and 35 in the absence or the presence of various enzyme inducers such as 3-methylcholanthrene, beta-naphthoflavone (beta NF), dioxin, isosafrole, rifampycin, dexamethasone or phenobarbital. 7-Ethoxyresorufin O-deethylase activity (EROD) was maximal at day 25 when the differentiation of Caco-2 cells, characterized by the level of the brush border associated enzymes such as sucrase isomaltase and alkaline phosphatase, was higher. The inducibility of this enzyme activity was found to be maximal when cells were treated between days 7 and 10. After a 3-day treatment of Caco-2 cells with 50 microM beta NF, EROD achieved 36.6 +/- 14.6 pmol/min/mg compared to 2.5 +/- 1.1 pmol/min/mg in untreated cells. This enzyme activity appeared to be supported only by P450IA1 isozyme because: 1) EROD was quantitatively inhibited by alpha-naphthoflavone, a P450IA1-specific inhibitor; otherwise, phenacetin O-deethylation was completely abolished in the presence of alpha-naphthoflavone and not by furafylline, a P450IA2-specific inhibitor; 2) EROD was induced after treatment with 3-methylcholanthrene, beta NF and dioxin, which are P450IA1 inducers, but not by isosafrole, a P450IA2-specific inducer; 3) cytochrome P450IA1 apoprotein could be immunodetected by antibodies directed against rabbit cytochrome P450-LM6, orthologous to P450IA1, in polycyclic hydrocarbon-treated cells; 4) under the latter conditions, P450IA1 mRNA accumulation was specifically detected, but not P450IA2 mRNA.(ABSTRACT TRUNCATED AT 250 WORDS)

Benzoflavones↗

[The transfusion card: value, limitations].

The transfusion-sheet is an important document which appears first in the French legislation on May 1985 the 17. Its aim is to keep a close watch over transfusion of red blood cells, platelet concentrates and fresh frozen plasma and also immunohematologic evolution of data for every patient. In spite of its importance for everyone in charge of transfusion practice (physicians, biologists, transfusion center,...), a lot of problems may be observed in the strict and complete updating of the document. Informatisation of all the steps of the medical and biological practice appears of crucial interest to perfect its use.

Blood Transfusion↗

Interspecies variability in mitoxantrone metabolism using primary cultures of hepatocytes isolated from rat, rabbit and humans.

Metabolism of mitoxantrone was studied in primary cultures of hepatocytes freshly obtained from rat, rabbit and humans. Metabolic pattern was evaluated by a high performance liquid chromatographic method which specifically resolved mitoxantrone from its mono- and dicarboxylic acid derivatives. Studies were carried out over 48 hr and at [14C]mitoxantrone concentrations ranging between 1 and 20 microM. In all species studied, metabolism occurred: extracellular unchanged mitoxantrone concentrations represented around 50, 25 and 20% of total extracellular radiolabel at 48 hr in rat, rabbit and humans, respectively. Although minor interspecies variability was observed in total amount of drug biotransformed by hepatocytes, large variability in the metabolic pattern occurred between the different species: hence, in rats the main derivatives were two polar compounds and only trace amounts of the mono- and dicarboxylic acid metabolites were present. In both rabbits and humans however, these polar derivatives represented minor metabolic pathways and the main metabolites were the mono- and dicarboxylic acid derivatives. While the percentage of total biotransformation was similar in these two latter species, the monocarboxylic acid derivative was the main metabolite in rabbits while the dicarboxylic acid was predominant in humans. Only small interindividual differences (N = 4) were observed in the metabolism of mitoxantrone by human hepatocytes in primary culture. These data demonstrated that: (i) in all species, mitoxantrone was biotransformed into metabolites which rapidly effluxed in the extracellular compartment, (ii) there were low interspecies differences between rat, rabbit and humans in terms of total biotransformed drug, but (iii) large interspecies variability was demonstrated in the qualitative (rat versus both rabbit and human) and relative (rabbit versus man) patterns of the metabolites. Furthermore, the metabolism of mitoxantrone was linear over a wide range of concentrations (i.e. 1-20 microM). In conclusion, rabbit appears to be the animal species most closely related to humans in terms of mitoxantrone metabolism.

Animals↗

Toxicological studies on a benzofuran derivative. III. Comparison of peroxisome proliferation in rat and human hepatocytes in primary culture.

Primary cultures of rat and human hepatocytes were used in our in vitro studies for investigating species differences in the response to a peroxisome proliferating benzofuran derivative, benzbromarone. Cyanide-insensitive palmitoyl coenzyme A oxidation (a marker of peroxisome fatty acid beta-oxidation) and electron microscopy were used to assess peroxisome proliferation. Hepatocytes were cultured essentially as described by Mitchell et al. (1984, Arch. Toxicol. 55, 239-246); clofibric acid and mono(2-ethylhexyl) phthalate (MEHP) were used as reference compounds, as they are well known to cause peroxisome proliferation in rat hepatocytes in primary culture. The benzofuran derivative, tested at drug concentrations ranging from 2.37 to 59.20 microM in rat hepatocyte primary cultures, induced, after 96 hr, a dose-related increase of the peroxisomal beta-oxidase activity correlated with an increased number of peroxisomes; this increase was much less marked than that obtained with clofibric acid or MEHP. By contrast, using the same range of concentrations, human hepatocytes in primary culture treated with benzbromarone revealed no enhancement of enzymatic activity and no concomitant statistically significant increase in the number of peroxisomes; the same observations were reported with clofibric acid and MEHP. These results demonstrate clearly that species differences in sensitivity to peroxisome proliferation with the benzofuran derivative do exist.

Animals↗

[Markers of viral hepatitis B and D and levels of alanine aminotransferase in military blood donors: a profile of 30,000 blood donations in 1989].

Serologic data for B and D viral hepatitis are studied on 30,000 military blood donors. Because of legal norms of blood products for transfusion 761 donations (2.53% have been destroyed). Exclusion criteria for viral B hepatitis and ALT are independent. In this study the prevalency of HBV infections is significantly lower than for other blood centers: probably in account of the young age of military blood donors.

Adult↗

[Primates in studies on the safety of drugs].

Primates are more and more frequently used in the evaluation of the safety aspects of drugs. Because of their similar phylogenic profile, these animals appear to be more predictive than other species (rat, mouse, rabbit or dog) used in toxicological studies. This relationship is confirmed by anatomical, metabolic and physiological observations. Primates are rarely used in teratogenesis studies, because the methods and materials involved are too complex. However, even in these studies, primates appear to be the most predictive species.

Animals↗

Excretion and metabolism of mitoxantrone in rabbits.

The hepatic clearance of mitoxantrone was evaluated in rabbits using both bile-duct cannulated animals and freshly isolated hepatocytes in suspension or in primary culture. Mitoxantrone metabolic behavior was assessed by high-performance liquid chromatography using a method which specifically resolved mitoxantrone from its mono- and dicarboxylic acid derivatives. Excretion of mitoxantrone in bile and urine was studied over a 6-h period of observation following i.v. bolus injection of 0.04, 0.20, and 1.0 mg [14C]mitoxantrone/kg. Bile route represented the main excretion pathway for mitoxantrone and its metabolites--mainly the monocarboxylic acid derivative. Biliary excretion was very rapid (maximum biliary concentration achieved 9 to 18 min following drug administration) and amounted to 29.5 +/- 9.3%, 27.6 +/- 7.9%, and 28.3 +/- 3.8% of administered drug, respectively. Urinary excretion amounted to 7.3 +/- 0.2%, 7.1 +/- 4.6%, and 6.0 +/- 1.5%, respectively. Both biliary and urinary excretions of mitoxantrone and its metabolites remained linear over the range of concentrations routinely used in clinic. Metabolism of mitoxantrone was first studied using rabbit hepatocytes in suspension. Since metabolic rate was slow under these incubation conditions (observation period, 1 h), mitoxantrone metabolism was investigated in primary cultures of rabbit hepatocytes. Mitoxantrone was rapidly accumulated within the cells and metabolized to its various metabolites which rapidly effluxed in the extracellular medium. After a 48-h exposure of hepatocytes to a broad range of mitoxantrone concentrations (1 to 20 microM), it could be seen that (a) drug accumulation and metabolism did not exhibit saturation processes, (b) mitoxantrone was the main intracellular form, while (c) metabolites rapidly effluxed in the extracellular compartment and (d) the monocarboxylic acid derivative represented the main extracellular metabolite. This data demonstrates the important role played by the liver in the pharmacokinetic behavior of mitoxantrone and suggests a careful drug monitoring in patients with severe liver dysfunction.

Animals↗

Blocking activity of mite-specific IgG antibodies studied by skin tests.

The aim of the study was to determine whether IgG antibodies from patients on specific immunotherapy could inhibit skin test reactivity of allergens when mixed with them prior to testing. In a preliminary double-blind study, mite extracts were incubated with glycero-saline solution or non-specific IgG and used in testing 15 patients. Wheal and flare diameters produced with the two mite extracts did not differ significantly. In a second double-blind study with 15 other patients, skin tests using mite extracts incubated with either non-specific IgG or specific IgG showed significantly decreased diameters when mite extracts were preincubated with specific IgG. This result, in vivo, confirms the antigen neutralizing capacity of specific IgG demonstrated in vitro.

Adolescent↗

The interaction between cyclosporin A and erythromycin studied by means of an isolated perfused rat liver model.

The isolated perfused rat liver model was successfully used to study the clinical interaction observed between cyclosporin A (CsA) and erythromycin (ER). Three experimental studies were performed. In a "Control group", isolated rat livers were perfused with 60 micrograms 3H-CsA for 20 min. In an "ER group", isolated rat livers were simultaneously perfused with 60 micrograms 3H-CsA and 6.0 mg ER. In an "ER ind group", rats were treated with ER for 5 days, conditions under which the P450IIIA gene subfamily, principally involved in CsA metabolism, was specifically induced, and isolated rat livers were perfused with 60 micrograms 3H-CsA for 20 min. Biological parameters of the liver model such as biliary flow, oxygen consumption and pH were similar whatever group of animals. Biliary excretion of total radiolabel (sum of CsA and all the metabolites = CsAT) was similar in both the "Control" and "ER" groups but significantly higher in the "ER ind" group with respectively 8.05 +/- 0.81%, 8.45 +/- 1.93% and 14.54 +/- 2.12% of the entire amount of infused drug excreted during 2 hr. Using a high performance liquid chromatography method which specifically resolves unchanged CsA from its metabolites, we demonstrated that, although similar amounts of radiolabelled material were excreted in both the "Control" and "ER" groups, the CsA/metabolite ratio was lower than 1.0 in the "Control group" and higher than 1.0 in the "ER group", suggesting an inhibition of CsA metabolism by ER in the "ER group". These data could explain the increase in CsA blood levels observed in the clinic following administration of high ER doses and the reversing effect when ER administration is stopped.

Animals↗

Characterization of midazolam metabolism using human hepatic microsomal fractions and hepatocytes in suspension obtained by perfusing whole human livers.

Isolated human hepatocytes provide a useful model for studying xenobiotic metabolism. However, in vitro studies using human hepatocytes are scarce due to the limited availability of this material. A new methodology is described for obtaining hepatocytes from a whole adult human liver. This procedure is based on (i) the rapid and intense in situ washing step of the organ with Eurocollins then glucose supplemented HEPES buffer (10 mM, pH 7.4) at 4 degrees in order to both minimize the warm ischemic period and remove erythrocytes, and (ii) a perfusion of collagenase solution (0.05% in 10 mM HEPES buffer at 37 degrees) throughout the portal vein according to a recirculated model. All perfused buffers are oxygenized. Hepatocyte viability averaged 85% as determined by Trypan Blue dye exclusion. The ability of these hepatocytes to catalyze certain metabolic transformations such as Phase I and Phase II reactions has been particularly investigated using the benzodiazepine drug, midazolam, as a substance probe. Freshly isolated human hepatocytes in suspension retained the ability to metabolize midazolam to its different hydroxylated derivatives--mainly the 1-hydroxy-midazolam--which was further conjugated with glucuronic acid. For a better understanding of the cytochrome P-450 mediated reactions, we studied the metabolism of midazolam in microsomal fractions prepared from twelve human livers. It was concluded that human microsomes (i) exhibited a Type I binding spectrum upon midazolam addition (Ks = 3.3 microM) and (ii) intensively metabolized the drug to its different derivatives. Furthermore, and since we demonstrated that midazolam was predominantly transformed by a single cytochrome P-450 enzyme, we could attribute the large inter-individual variations in midazolam metabolism to differences in human liver cytochrome P-450 content.

Cytochrome P-450 Enzyme System↗