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M Caron

Publications and source records attributed to M Caron.

At least 109 records · Page 6Linked to original sources

Characterization of the radioiodinated analogue of SCH 23390: in vitro and in vivo D-1 dopamine receptor binding studies.

A new radioiodinated molecule, 125I-SCH 38840 (previously referred to as 125I-SCH 23982), has been recently reported to be a D-1 dopamine receptor ligand. The current study confirms and expands the characterization of both the radiolabeled and unlabeled forms of this compound, as well as describing the development of an in vivo D-1 receptor binding assay utilizing the 125I-SCH 38840. The binding of 125I-SCH 38840 to rat striatal membranes, in vitro, was saturable and exhibited a KD of 1.47 nM. Competition studies using 125I-SCH 38840 exhibited a pharmacological profile consistent with the proposal that 125I-SCH 38840 was binding to the D-1 receptor. Further studies with the unlabeled SCH 38840 demonstrated that it inhibited dopamine-stimulated adenylate cyclase with a KI of 66.1 nM, indicating that SCH 38840 was acting as a D-1 antagonist. Behavioral studies demonstrated that SCH 38840 (MED = 1.0 mg/kg, s.c.) blocked conditioned avoidance responding in rats, a measurement considered predictive of anti-psychotic activity in man. In vivo binding of 125I-SCH 38840 to rat striatum following s.c. administration was specific. Peak striatal levels were observed 1 h after injection, with measurable binding observed out to 8 h post-treatment. The displacement of the in vivo binding by unlabeled standards again suggested a D-1 selective interaction. The half-life of the in vivo binding of 125I-SCH 38840 was approximately 1.25 h, and was nearly equivalent to the half-life of the anti-CAR activity of unlabeled SCH 38840. These results clearly demonstrate the D-1 nature of SCH 38840's behavioral activity and strengthen the anti-psychotic potential of a D-1 antagonist.

Adenylyl Cyclase Inhibitors↗

[Regulation of glucose metabolism by insulin: dual role of protein kinase C].

The role that protein kinase C (PKC) may play on insulin regulation of glucose metabolism was investigated in rat adipocytes and Zajdela hepatoma cultured (ZHC) cells which are two cell types highly responsive to insulin. In rat adipocytes, 4 beta-phorbol 12 beta-myristate, 13 alpha-acetate (PMA, 0.1-1,000 ng/ml), a potent tumor promoter acting as a substitute for diacylglycerol which directly activates PKC, stimulated basal 2-deoxyglucose (2-DG) transport in a time- and dose-dependent manner, but decreased the activation of this process elicited by submaximal concentrations of insulin. PMA (0.1-1,000 ng/ml) also stimulated basal lipogenesis from [3-3H] glucose in a dose-dependent manner. Maximal PMA and insulin effects on both processes were not additive. The specificity of the insulin-like effects of PMA was assessed by the finding that 4 beta-phorbol 12, 13 dibutyrate (PDBu), mezerein, 1-oleyl-2-acetyl glycerol (OAG) and 1, 2 diolein, know as PKC activators, also markedly stimulated glucose metabolism whereas 4 alpha-phorbol 12, 13 didecanoate (4 alpha-PDD) and 4 beta-phorbol 13-monoacetate, shown not to activate PKC, were ineffective. PMA and insulin biological effects exhibited several similarities: both agents stimulated glucose transport and lipogenesis in a calcium-dependent manner, both activated glucose transport through an energy-requiring process, and the effects of both were markedly decreased by mellitin, a PKC inhibitor. Finally, fat cells made PKC-deficient by a chronic treatment with PMA exhibited a marked decrease in insulin responsiveness for stimulation of glucose transport and lipogenesis, with no change in either the hormone sensitivity or the insulin receptor affinity.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue↗

Purification and some characteristics of a beta-galactoside binding soluble lectin from amphibian ovary.

Soluble extracts of Bufo ovaries agglutinate sialidase-treated rabbit erythrocytes. Unlike other amphibian lectins this agglutination activity does not require the presence of calcium ions. It is specifically inhibited by D-galactose and its derivatives. Thiodi-D-galactoside is the most potent saccharide inhibitor followed by lactose and methyl-beta-D-galactoside, respectively. D-Fucose, D-glucose and D-mannose do not inhibit the activity at concentrations at or above 100 mM. The lectin has been purified 500-fold to apparent homogeneity from the ovaries by salt extraction and affinity chromatography on lactose-aminophenyl-agarose, with a yield of about 0.2%. The molecular mass determined by gel filtration under native conditions was 30 kDa; polyacrylamide gel electrophoresis in SDS gave a molecular mass of 15 kDa, suggesting that the lectin is a dimer. The lectin has an isoelectric point of 40 and contains a high proportion of acidic amino acids.

Amino Acids↗

Purification and characterization of a beta-galactoside-binding soluble lectin from rat and bovine brain.

A beta-galactoside-binding activity has been detected in mammalian brain extracts using a hemagglutination test and a nerve cell aggregation assay. Inhibition studies suggested the involvement of lectin-carbohydrate interactions in these processes. In an attempt to explore further the biological role of brain lectins, the beta-galactoside-binding activity has been purified to apparent homogeneity from bovine and rat brain by salt extraction of the brain tissue and affinity chromatography on asialofetuin-agarose. The molecular weights determined by gel filtration, under native conditions on Ultrogel AcA-34, were 30,000 for the bovine brain lectin and 32,000 for the rat brain lectin; polyacrylamide gel electrophoresis in SDS gave molecular weights of 15,000 and 16,000, respectively, suggesting that the two brain lectins are dimers. Both lectins have an isoelectric point of 3.9. Amino acid composition data indicate that both lectins contain high proportions of glycine and acidic amino acids. The lectins are specific for beta-D-galactosides and related sugars and the configuration of carbon atoms 1, 2 and 4 seems of primary importance. Moreover, the nerve cell aggregation-promoting activity of the purified lectin is 300-fold that of the crude extracts.

Amino Acids↗

Brain lectin-mediated agglutinability of dissociated cells from embryonic and postnatal mouse brain.

Brain extracts contain a soluble lectin which enables the agglutination of dissociated mouse brain cells via saccharidic receptors. The ability of the brain cells to be agglutinated depends on their stage of development in vivo. Furthermore, after birth, the mechanism of the lectin-promoted agglutination is complicated by the appearance of a self-aggregation of the dissociated cells. Lactose and galactosides are inhibitors of lectin-mediated agglutination as well as of the dissociated cells' self-aggregation.

Agglutination↗

The Kapandji technique and its evolution in the treatment of fractures of the distal end of the radius. Report on a series of 159 cases.

The authors analyse the results of treatment of 159 fractures of the distal end of the radius by the "Kapandji Technique". Of these 159 fractures, 129 were extra-articular, 27 intra-articular and 3 fractures affected both the two bones of the forearm. The technique should be applied strictly, with primary reduction and direct control of the tendinous and nervous elements through the incisions. A third pin is sometimes necessary. A 5 years postoperative period is sufficient to get a meaningful analysis of the results which were very good or good in 93% of our cases. The only real problem was anterior over-reduction due to progressive secondary displacement which necessitated regular postoperative follow-up.

Bone Nails↗

Decreased insulin responsiveness in fat cells rendered protein kinase C-deficient by a treatment with a phorbol ester.

Insulin stimulation of 2-deoxyglucose transport and lipogenesis from glucose was examined in fat cells in which protein kinase C had been down-modulated by a 3 h pretreatment with 5 X 10(-7) M 4 beta-phorbol 12 beta-myristate, 13 alpha-acetate (PMA). As compared to control fat cells, the down-modulated cells exhibited a 55-65% decrease in insulin responsiveness with no change in either the hormone sensitivity or the insulin receptor affinity. The present study shows that fat cells made protein kinase C-deficient by chronic treatment with PMA exhibit an insulin-resistant state, distal to the initial step of hormone binding.

Adipose Tissue↗

Investigation on the occurrence of soluble lectins in mammalian nervous tissue extracts.

Five brain or retina crude extracts obtained from adult mammalians and nine fractions of brain extracts prepared by chromatography were screened for their lectin activities. All crude extracts and several fractions contained agglutinins reacting with neuraminidase-treated rabbit red blood cells. Hemagglutination activity varied widely with the method of preparation of the extracts. Hemagglutination inhibition tests were carried out to look for possible differences in the specificities of the agglutinins. All were found to be D-galactosyl specific. Each crude extract was found to contain a second lectin activity, which was detected using ethanol-treated rabbit erythrocytes known to react with heparin-binding lectins. Hemagglutination and inhibition studies showed that they completely differ from the galactoside-binding lectins detected previously. The possible functions of these lectins are discussed.

Animals↗

Alteration by concanavalin A of the slow dissociable component in the human growth hormone-receptor interaction.

In mice liver plasma membranes (PM), the binding affinity of receptors for [125I] human growth hormone (hGH) was dependent on the association time: after 18 hours, a high affinity receptor form with KA = 6.8 X 10(9) M-1 accumulated and, as compared to after 1 hour, an increase up to 88%, in a slow dissociating component was observed. Preincubation of PM with concanavalin A (Con A) or other lectins from Lens culinaris (LCA), Ricinus communis (RCA I), Wheat germ agglutinin (WGA) specifically inhibited the binding of hGH to receptors by 54, 28, 50 and 25%, respectively. Furthermore, PM pretreatment with Con A concomitantly increased the rate of dissociation of the hormone-receptor (H-R) complex to 92 or 65% after association for 1 or 18 hours. These Con A-induced alterations resulted from a reduced fraction of the slow dissociable component together with an increased rate constant. The treatment of PM with Con A subsequent to incubation with the hormone did not decrease hormone binding but caused the conversion of the class of hGH receptors exhibiting fast dissociation kinetics towards a form exhibiting slow ones. These data strongly suggest a role for glycoproteins of the N-acetyllactosaminic type in the affinity state of liver membrane hGH receptors.

Animals↗

Insulin stimulation of glucose metabolism in rat adipocytes: possible implication of protein kinase C.

The hypothesis that insulin stimulation of glucose and lipid metabolism in rat adipocytes may involve the activation of protein kinase C was evaluated. 4 beta-Phorbol 12 beta-myristate, 13 alpha-acetate (PMA, 0.1-1000 ng/ml), a potent tumor promoter acting as a substitute for diacylglycerol to activate protein kinase C, stimulated 2-deoxyglucose transport in a time- and dose-dependent manner, without affecting passive glucose diffusion. PMA (0.1-1000 ng/ml) also elicited a dose-dependent activation of lipogenesis from [3-3H] glucose. Maximal PMA effects (100 ng/ml) on both processes were 60% of insulin maximal effects. In contrast, PMA (1-1000 ng/ml) failed to mimic the ability of insulin to stimulate lipogenesis from [3H]acetate. 4 beta-Phorbol 12,13 dibutyrate, mezerein, 1-oleyl-2-acetyl-glycerol, 1,2 diolein, known as protein kinase C activators, also markedly stimulated glucose metabolism whereas 4 alpha-phorbol 12,13 didecanoate and 4 beta-phorbol 13-monoacetate, shown not to activate protein kinase C, were ineffective. Mellitin, a cytotoxin-inhibiting protein kinase C, markedly decreased both PMA and insulin stimulation of glucose metabolism. PMA decreased insulin submaximal effects on 2-deoxyglucose transport without inhibiting insulin binding. Maximal PMA and insulin effects on 2-deoxyglucose transport and lipogenesis from [3-3H]glucose were not additive. Both PMA and insulin activated each metabolic process in a calcium-dependent manner. PMA, like insulin, no longer stimulated 2-deoxyglucose transport in fat cells treated with 2,4-dinitrophenol. These data show that PMA exhibited specific insulin-like properties on glucose metabolism in fat cells, without any effect on lipid synthesis from acetate. They indicate that PMA and insulin bioeffects may share a common step implicating a calcium- and energy-dependent process, distal to the initial insulin binding event. Our results suggest that protein kinase C may play a role in insulin regulation of glucose metabolism.

2,4-Dinitrophenol↗

Biochemical markers in the assessment of protein-calorie malnutrition in premature neonates.

We studied 135 premature newborns of 26 to 36 weeks gestation, divided into three groups: the control group, 66 premature infants with uncomplicated course; 51 premature neonates with appropriate birth weight for gestational age (AGA), who suffered from clinical problems that delayed oral feeding; and 18 premature infants with small birth weight for gestational age (SGA). When neonates of the same postnatal age were compared, prealbumin concentrations were the lowest in the SGA group at the third and fourth postnatal week. Although the AGA group had the most infants with serious illnesses and the lowest protein-calorie intakes, their prealbumin concentrations did not differ significantly from those of the control group. But when the infants of each group were subdivided on the basis of intakes and weight gain regardless of postnatal age, those with greater intakes showed significantly higher prealbumin values; however, in all groups, the infants with higher intakes were also significantly older. Total proteins and albumin showed similar changes in all groups. Prealbumin concentrations showed great interindividual variability in infants of the same postnatal age. We conclude that prealbumin, albumin, and serum total proteins are not sufficiently sensitive biochemical markers to assess alterations of the nutritional status of premature infants.

Anthropometry↗

Further evidence for the involvement of a membrane proteolytic step in insulin action.

The hypothesis that insulin action involves a membrane proteolytic step was further explored, by using isolated rat adipocytes and liver plasma membranes. (1) The maximal insulin stimulation of 2-deoxyglucose transport and lipogenesis in fat-cells was selectively inhibited (73-88%) by N alpha-p-tosyl-L-lysine chloromethyl ketone (Tos-Lys-CH2Cl; active-site inhibitor of trypsin; 30-125 microM), p-nitrophenyl p'-guanidinobenzoate (active-site inhibitor of serine proteinases; 30-125 microM) and p-tosyl-L-arginine methyl ester (arginine ester substrate analogue of proteinases; 1-2 mM), under conditions where neither the basal rate of each metabolic process nor insulin binding nor cellular ATP content were affected. In contrast, N-acetyl-L-alanyl-L-alanyl-L-alanine methyl ester (alanine ester substrate analogue of proteinases; 1-2 mM) was ineffective. (2) Endoproteinase Arg-C (0.25-40 micrograms/ml) exerted dose-dependent insulin-like effects on both 2-deoxyglucose transport and lipogenesis in fat-cells, whereas endoproteinase Lys-C (5-100 micrograms/ml) was ineffective. The maximal activation by endoproteinase Arg-C of both processes (200 and 177% of control values respectively) was shown to occur under conditions where membrane integrity (assessed by measurement of lactate dehydrogenase leakage and passive glucose diffusion) was preserved. This effect was inhibited by Tos-Lys-CH2Cl (125 microM) and was not additive with the maximal insulin effect. (3) Insulin (1-100 ng/ml) produced a dose-dependent increase in the trichloroacetic acid-soluble 125I radioactivity released after a 30 min incubation at 37 degrees C of 125I-labelled liver plasma membranes, but was ineffective on 125I-labelled bovine serum albumin. Insulin effects on both radio-labelled proteins were reproduced by wheat-germ agglutinin (20 micrograms/ml), an insulin mimicker shown to act through the insulin receptor. These data provide further evidence for the hypothesis that insulin bioeffects involve the activation of a membrane serine proteinase with arginine specificity.

Adenosine Triphosphate↗

Difference in blister fluid penetration after single and multiple doses of ceftriaxone.

Plasma and suction skin blister fluid concentrations of ceftriaxone were studied in 12 subjects after intravenous administration of 1 g of ceftriaxone every 12 h (q12h) and 2 g every 24 h (q24h) after single and multiple doses. Ceftriaxone concentrations were determined by high-pressure liquid chromatography. Mean peak plasma concentrations (at the end of the 5-min infusion) were 254.0 and 374.8 micrograms/ml after administration of 1 g q12h after single and multiple doses, respectively. Similarly, with 2 g q24h, maximum levels were 409.6 and 443.5 micrograms/ml. Forty-eight hours after the last dose of ceftriaxone, plasma concentrations were still detectable: 1.2 micrograms/ml after 1 g q12h and 3.0 micrograms/ml after 2 g q24h. Higher ceftriaxone concentrations were observed in blister fluid after multiple doses than after a single dose. Peak concentrations almost doubled in the blister fluid after multiple doses: 36.0 versus 67.0 micrograms/ml and 38.6 versus 68.9 micrograms/ml for 1 g q12h and 2 g q24h, respectively. Elimination half-life of ceftriaxone in the blister (8.3 and 11.5 h) was longer than plasma half-life (6.3 h). With the area under the concentration-time curve ratio, a 113% increase in tissue penetration was observed after multiple doses for the 1 g q12h regimen. The free plasma and blister fluid ceftriaxone concentrations observed at the end of the dosing interval of the 2 g q24h regimen were higher than the MIC for 90% of the susceptible microorganisms and justified the once-a-day use of ceftriaxone.

Adult↗

Evidence for surface glycoprotein involvement in the intracellular bioactivity of insulin in rat adipocytes.

Lectins specific for D-mannose (concanavalin A), N-acetyl-D-glucosamine (wheat-germ agglutinin) or D-galactose (Ricinus communis agglutinin I) inhibited insulin binding and activated glucose transport in rat adipocytes [Cherqui, Caron, Capeau & Picard (1982) Mol. Cell. Endocrinol. 28, 627-643]. In the present investigation, the intracellular activities of insulin and lectins on lipogenesis and protein synthesis were studied under conditions where neither agent had an effect on membrane transport processes. (1) When glucose transport was rate-limiting (0.5 mM-glucose), insulin (0.8 ng/ml) and lectins (20 micrograms/ml) increased lipogenesis by 2.4-3-fold. (2) When passive diffusion of glucose was amplified (10 mM-glucose), insulin (0.8 ng/ml) and lectins (20 micrograms/ml) increased lipogenesis by 1.6-1.8-fold even in the presence of 50 microM-cytochalasin B, which completely blocked glucose transport. (3) Insulin (6 ng/ml), concanavalin A and wheat-germ agglutinin (40 micrograms/ml) stimulated the incorporation of L-[U-14C]leucine into fat-cell protein 1.5-fold but did not modify alpha-aminoisobutyric acid uptake or 14C-labelled protein degradation. (4) Peanut and soya-bean agglutinins (specific for O-glycosidically-linked oligosaccharides), known not to alter insulin binding, were ineffective. (5) Lectin effects were dose-dependent and were markedly inhibited by specific monosaccharides (50 mM). (6) Insulin and lectin maximal effects were not additive and were completely abolished by neuraminidase treatment of fat-cells (0.05 unit/ml). These data indicate involvement of surface sialylated glycoproteins of the complex N-linked type in the insulin stimulation of glucose and amino acid intracellular metabolic processes. They suggest, together with our previous results, that the transmission of the insulin signal for both membrane and intracellular effects occurs via glycosylated effector entities of, or closely linked to, the insulin-receptor complex.

Adipose Tissue↗