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Biomedical subjects

A Barbier

Publications and source records attributed to A Barbier.

At least 55 records · Page 3Linked to original sources

Magnesium-deficient hairless rat: spleen cells mitogenic responses and variations in hormonal status.

Hairless rats with dermatosis induced with a poor magnesium diet were previously shown to bear biochemical and immunological abnormalities. It was therefore felt of interest to investigate the spleen cells proliferative responses from these rats, both in the rash and the remission phases, when testosterone and parathormone plasma levels were also determined. Results showed that proliferative responses to mitogens and PTH levels were inversely related to the intensity of the dermatosis, whereas testosterone levels were more or less decreased. The role of 1.25 dihydroxyvitamin D3 in these modifications is questionable.

Animals↗

Dermatosis in magnesium-deficient hairless rats: effects of steroidal and non-steroidal anti-inflammatory drugs.

Dermatosis in magnesium-deficient hairless rats has been described as a reproducible model of skin inflammation. It was therefore felt of interest to search for the effects of various anti-inflammatory compounds on this model. Results showed that 1) Dexamethasone acetate completely abolished the rash, 2) Indomethacin, a Non-Steroidal Anti-Inflammatory Drug (NSAID), inhibitor of the cyclooxygenase pathway was quite inactive, 3) Benoxaprofen, a NSAID inhibitor of both cyclooxygenase and lipoxygenase pathways only slightly modified the development of the pathology. Activity of steroidal anti-inflammatory drugs on this model may be related to their immunosuppressive effects.

Animals↗

Recovery of monkey brain after prolonged ischemia. II. Protein synthesis and morphological alterations.

Recovery of protein synthesis following 1 h of complete ischemia of the monkey brain was assessed by 3H-labeled amino acid incorporation in vivo at various postischemic periods between 1.5 and 24 h. The regional autoradiographic patterns obtained were compared on the basis of precursor-product relationships determined biochemically at the end of the tracer incorporation studies. Shortly after ischemia, protein synthesis was severely inhibited, but it gradually recovered with increasing recirculation times. In the cerebellum it returned to almost normal levels within 3 h and in the cortex within 24 h. Hippocampal and thalamic regions, however, did not recover control levels of protein synthesis at 24 h. Histoautoradiographic evaluation of amino acid incorporation in individual neurons revealed recovery of pyramidal neurons in the CA1 and CA3 sectors of the hippocampus within 6 h of recirculation, which, however, was followed by secondary inhibition after longer recirculation. Neurons in cortical layer 5 steadily recovered to near control within 24 h, with the exception of those located in arterial border zones, which returned to only 50% of control at 24 h. Incomplete recovery was also observed in thalamic neurons and Purkinje cells. The regional and histoautoradiographic pattern of protein synthesis correlated with the morphological appearance of cells. Ischemic cell changes (mainly of the dark type with microvacuolization and perineuronal glial swelling) were marked after short recirculation times but gradually disappeared in parallel with the return of protein synthesis in most regions of the brain. Only in pyramidal cells of the hippocampus, thalamic neurons, and Purkinje cells were changes not reversed during the observation period. The results obtained corroborate the electrophysiological observations reported in the first part of this investigation and support the notion that the majority of the neurons of monkey brain survive complete cerebrocirculatory arrest of 1 h for at least 1 day.

Amino Acids↗

Studies on the chronic phase of adjuvant arthritis: effect of SR 41319, a new diphosphonate.

We studied the course of adjuvant arthritis in rats by measuring clinical, biochemical, and histological parameters on day 36 after induction (representing the secondary reaction) and on day 171, which is at the stage of permanent deformity. The effect of SR 41319, a new diphosphonate, was evaluated on days 36 and 171, after three weeks of treatment (days 14-35 inclusive). In the absence of treatment all the measured parameters were markedly abnormal on day 36, indicating the presence of lesions that were still evolving. On day 171 clinical parameters and the lesion histological index remained the same, whereas the biochemical parameters and disease activity histological index had returned to normal, indicating that the lesions at this stage although severe were not inflammatory and consequently not progressing. SR 41319 treatment reduced the severity and progression of the disease both on day 36 and on day 171. We conclude that SR 41319 may be a potentially useful drug for the treatment of rheumatoid arthritis.

Animals↗

Orthotopic liver transplantation in pigs without cold perfusion of the donor liver. Evaluation by quantitative liver function tests.

Orthotopic liver transplantation (OLT) was performed in 12 pigs and liver function assessed before and after transplantation. In 6 pigs OLT was carried out without cold perfusion of the donor liver, whereas in the other 6 animals the donor organ was perfused in situ. 5/6 animals without perfusion and 4/6 with cold perfusion survived for more than 10 days. Significantly better liver function was revealed by the aminopyrine breath test (ABT) and the indocyanine green (ICG) disappearance in the group with the cold perfusion of the liver, whereas no differences in routine liver function tests were seen between the two groups. Although OLT without cold perfusion of the donor liver is feasible and prolonged survival of animals is possible, the function of these organs is markedly reduced compared to the cold perfused organs. This method can, therefore, not be recommended. ABT and ICG disappearance are sensitive tests for the evaluation of the liver function in the post-transplant period.

Aminopyrine↗

Comparative study of etidronate and SR 41319, a new diphosphonate, on passive cutaneous anaphylaxis and phospholipase A2 activity.

Diphosphonates are known to affect calcium metabolism. It was therefore felt of interest to investigate the effects of SR 41319, a new Diphosphonate, comparatively to Etidronate disodium (EHDP) on Passive Cutaneous Anaphylaxis (PCA) and on Phospholipase A2 (PLA2) activity which are both mediated by calcium-dependent mechanisms. Results showed that: (1) intravenously, SR 41319 induced a dose-dependent inhibition of PCA more pronounced than the EHDP one; (2) in PLA2 assay, marked inhibition was obtained with SR 41319 whereas EHDP was slightly active. Decrease in Ca entry into mast cells and anti-PLA2 activity of SR 41319 might partly explain the SR 41319 inhibition of PCA.

Animals↗

Inhibition of testosterone metabolism and lipogenesis in animal sebaceous glands by progesterone.

The effect of progesterone on 14C-testosterone metabolism and on 14C-lipid synthesis was studied in two animal sebaceous gland models, hamster flank organ and rat ear skin. Unilateral topical application of progesterone to the female hamster flank organ topically treated with testosterone propionate resulted in localized inhibition of both in vitro 14C-lipogenesis and in vitro conversion of 14C-testosterone to 5 alpha-reduced radio-metabolites. Topical progesterone did not inhibit in vitro 14C-lipogenesis in the male hamster flank organ. Progesterone added in vitro inhibited 14-C-lipogenesis and 14C-testosterone metabolism in male rat ear sebaceous glands. These results lend support to the hypothesis that inhibition of sebaceous gland lipogenesis by progesterone is a consequence of its inhibitory effect on testosterone metabolism. Such a rationale provides a valid explanation for the clinical findings with progesterone reported by other investigators.

Animals↗

Deuterium oxide effects upon three parameters characterizing the activity of glycerol-extracted muscle: phosphate release, ATP-induced shortening, and 22Na+ distribution.

ATP splitting activity is progressively reduced with increasing heavy water (D2)) concentration. In contrast, sarcomere shorteining inhibition produced by D2O does not significantly depend on its concentration. Even at low concentration, the presence of D2O does reduce the excessive accumulation of radioactive sodium within glycerinated frog muscle. These heavy water effects on muscular contraction and soidum distribution can be interpreted to indicate adsorbed water within the cells. Evaluation of these experimental results in terms of Gibbs free enthalpy of binding at the adsorption sites of D20 or H20 is in good agreement with the data in the literature.

Adenosine Triphosphatases↗

[Influence of the stratum corneum on transepidermal water loss and Bioavailability of a new topical steroid, difluprednate: clinical implications (author's transl)].

Comparative study of experimental and theoretical curves obtained by plotting transepidermal water loss against stratum corneum thickness in man, shows that every layer in the stratum corneum acts as part of the epidermal barrier to water loss. Another function of the stratum corneum is to decrease the cutaneous penetration of topical corticosteroids like difluprednate and to modify their bioavailability ('corticosteroid reservoir'). Our data suggest that variations in stratum corneum thickness between subjects explain variation of transepidermal water loss and sensitivity difluprednate, as there is a close relationship between these two parameters. It is then conceivable than the phototype has clinical implications is there really exists a relationship between phototype, stratum corneum thickness and sensitivity to steroids.

Administration, Topical↗

Modifications of ouabain inhibition of xenon accumulation in red blood cells. Implications regarding cell water structuring.

Ouabain is known to depress uptake of xenon by red blood cells, but it is now found that the depressive effects of phenolsulfonphthalein (PSP) or heavy water are even more marked. Ouabain partly reverses those effects in a manner suggesting it exerts a constant action on xenon exchange regardless of the presence or absence of PSP or D2O. Processes analogous to exchange diffusion between certain anesthetic substances and xenon were also observed. The theoretical consequences of the findings are discussed.

Cell Membrane Permeability↗

Biochemical changes in the rat brain associated with dinitrophenol-induced brain edema.

The present paper was designed to the study of cerebral edema induced by intracarotid infusion of dinitrophenol. The determinations included variations in three lysosomal enzymes (acid phosphatase, cathepsin C and beta-glucuronidase), Na+-K+-ATP-ase, changes in cerebral RNA and protein concentrations and the synthesis of these macromolecules in vitro. In experimental brain edema a drastic drop in the activity of lysosomal enzymes took place. The acid phosphatase decreased to less than 30% of controls. Cathepsin C and beta-glucuronidase were reduced about 30% and 50% of control levels respectively. Protein concentration in the cerebral tissue also decreased by more than 50%. The concentration of RNA, RNA synthesis, and the level of Na+-K+-ATP-ase remained unchanged. Protein synthesis was stimulated by 75% (against controls). All these phenomena were suppressed when the animals subjected to the action of dinitrophenol were concomitantly treated with the antiacidotic substance, tris (hydroxymethyl) aminomethane.

Acid Phosphatase↗

Potassium and sodium ions in the glycerinated skeletal muscle. Distribution changes induced by adenosine triphosphate and nondissociable anesthetic substances.

Investigation of the ionic behavior of glycerinated muscle fibers showed that the residual structures of this biologic cellular material, lacking functional membranes, are able to discriminate between alkaline ions. The characteristics of the ionic selectivity of the glycerinated fibers change with their functional state and with the presence in the medium of certain nonionic substances. Among the more important features of ionic distribution between the membrane-free fibers and the medium are the following: (1) There is evident adsorption of potassium on the fibers, in the absence of ATP. (2) This adsorption increases in contraction and decreases in relaxation. (3) At high ionic concentrations, in contrast to what occurs at low potassium concentrations, the glycerinated muscle prefers sodium to potassium, but even under these conditions both ions are accumulated in the fibers to far greater levels than in the medium. This strongly suggests a Donnan ionic equilibrium developing parallel to the adsorption process. (4) Nonionic substances of the general anesthetic group markedly alter the ionic selectivity of the glycerinated fibers, probably by their action on the water's physical state. A mechanism is proposed for the observed ionic adsorption specific of the muscle-a mechanism in which actin-myosin coupling plays the cardinal adsorption role. In the general interpretation of the data a synthetic concept is advanced according to which an entire set of processes and factors concurs with the distribution of ions between the muscle and the medium.

Adenosine Triphosphate↗