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N Fraeyman

Publications and source records attributed to N Fraeyman.

6 recordsLinked to original sources

Pharmacological characterization of a beta 3-receptor agonist (BRL 37,344) and a partial agonist (CGP 12,177A) in neonatal rat liver plasma membranes.

The pharmacological properties of BRL 37,344 (sodium-4-(2'-[2-hydroxy-2- (3-chloro-phenyl)ethylamino]-propyl)phenoxyacetatesesquihydrate), a beta 3-selective agonist, and CGP 12,177A) (-)-4-(3-t-butyl amino-2-hydroxypropoxy) benzimidazole-2-one], a non-selective beta-antagonist, recently characterized as a partial beta 3-agonist in rat adipose tissue, were studied in comparison with isoproterenol, a non-selective beta-agonist, in plasma membranes prepared from the livers of newborn rats. Competition binding curves obtained with [125I]iodocyanopindolol ([125I]CYP) as ligand and isoproterenol or BRL 37,344 as competitor were characterized by the presence of a high and a low affinity binding site; the high affinity binding site was no longer detectable when guanidylimidobisphosphate (GppNHp) was present in the incubation mixture. Competition curves with CGP 12,177A were monophasic and independent of GppNHp. In the presence of 10(-7) M of the beta 2-selective antagonist ICI 118,551 [erythro-(+/-)-1-(7-methylindan-4-yloxy)-3-isopropylamino butan-2-ol], a concentration which blocks most of the beta 2-receptors, ligand binding was reduced to 32% of its maximum. Under these conditions, isoproterenol further displaced the ligand, and competition curves still displayed the high and the low affinity binding sites; BRL 37,344, however, caused no further displacement of ligand, except at the highest concentrations. This suggests that BRL 37,344 occupies only the ICI 118,551-sensitive binding sites, i.e. beta 2-receptors. Isoproterenol and BRL 37,344 both stimulated adenylate cyclase (EC 4.6.1.1) activity concentration dependently, although the stimulating effect of BRL 37,344 was about half of what was found for isoproterenol. Furthermore, BRL 37,344 inhibited concentration dependently the isoproterenol-induced stimulation of adenylate cyclase, and the inhibition was dependent on the concentration of isoproterenol. The stimulating effect of isoproterenol and BRL 37,344 on adenylate cyclase was blocked by ICI 118,551, whereas the beta 1-selective antagonist CGP 20,712A ((+/-)-(2-(3-carbamoyl-4-hydroxyphenoxy)-ethylamino)-3-[4-(1-methy l-4- trifluoromethyl-2-imidazolyl)-phenoxy]-2-propanolmethane sulphonate) was ineffective. CGP 12,177A failed to stimulate adenylate cyclase activity. From these results we suggest that BRL 37,344 acts as a beta 2-partial agonist in rat liver. The results obtained with CGP 12,177A are typical for a non-selective beta-antagonist. We therefore conclude that there is no pharmacological evidence for the presence of beta 3-receptors in livers from newborn rats.

Adenylyl Cyclase Inhibitors

Influence of age on the beta 1- and beta 2-adrenergic receptors in rat liver.

The influence of maturation and aging on beta receptors in rat liver was studied. Competition binding experiments with the nonselective beta-antagonist propranolol and the subtype selective antagonists ICI 118,551 (beta 2) ICI 89,406 (beta 1), and CGP 20,712A (beta 1) revealed the presence of a mixed beta 1 and beta 2 receptor population in crude plasma membrane preparations from livers of newborn, mature, and senescent rats. The percentage of beta 1 receptors was lowest in livers from newborn rats and was increased in livers from mature and senescent rats. This increase is caused by a decrease in beta 2 receptor density on maturation, although the beta 1 receptor density is nearly constant throughout the life span of the rat. Isoproterenol-stimulated adenylate cyclase activity was inhibited in livers from senescent rats by propranolol and ICI 118,551 and to a lesser extent by ICI 89,406 and CGP 20,712A. The isoproterenol-stimulated glucose output in hepatocytes from senescent rats was inhibited concentration dependently by propranolol, ICI 118,551, ICi 89,406, and CGP 20,712A. From these results we conclude that beta 1 and beta 2 receptors are present in livers from rats of the three age groups and that the beta 1 to beta 2 receptor ratio is increased in livers from mature and senescent rats compared with newborn rats. Both beta receptor subtypes are linked to the cAMP second messenger system in newborn and senescent rats; beta 1 and beta 2 receptors are equally involved in the regulation of glycogenolysis in hepatocytes from senescent rats.

Adenylyl Cyclases

Receptor function in heart failure.

In patients with congestive heart failure, down-regulation of beta-adrenoceptors is present, probably as a result of sympathetic overstimulation. In end-stage dilated cardiomyopathy, beta 1-adrenoceptor density is markedly reduced, while beta 2-adrenoceptor density is normal. This latter finding does not necessarily imply normal sensitivity to beta 2-stimulation, due to possible alterations in the beta-adrenoceptor/adenylate cyclase complex beyond the receptor. In some disease states, such as ischemic cardiomyopathy and mitral valve disease, there seems to be a concomitant reduction of the beta 1- and beta 2-adrenoceptor density. The finding of beta-adrenoceptor down-regulation has stimulated the search for novel therapeutic approaches in heart failure patients. Beta-agonists could even further down-regulate beta receptors, and this perhaps explains why they seem not to be useful in long-term use. Agents that directly stimulate adenylate cyclase activity, such as forskolin, or that increase cyclic adenosine monophosphate degradation, such as the phosphodiesterase inhibitors, are being tested. Beta-adrenoceptor blocking agents were used in treatment of heart failure before beta-adrenoceptor down-regulation was recognized in these patients. It is tempting to speculate that the beneficial clinical and hemodynamic effects seen in these patients treated with metoprolol is indeed due to an antagonism of the beta-adrenoceptor down-regulation. Studies testing whether beta-adrenoceptor blocking agents can improve survival in congestive heart failure patients are on-going.

Down-Regulation

Effect of age on the kinetics of the binding of iodocyanopindolol to a membrane preparation of rat lungs.

The association (k+1) and dissociation (k-1) rate constants, and the equilibrium thermodynamic binding parameters (delta G0, delta H0 and delta S0) of the beta-adrenergic ligand [125Iodo]cyanopindolol (ICYP) were studied in a crude lung membrane preparation of rats of different ages. There was no difference in k+1-values for the different age groups, while the k-1-values were in all cases difficult to measure: almost no dissociation of ICYP from its binding site occurs. The thermodynamic properties were not affected by age. It is concluded that, in these experimental conditions, age has no effect on the kinetic parameters of the binding of ICYP to the beta-adrenoceptors in rat lung.

Aging

Characterization of the beta-adrenergic transduction system in spleen mononuclear leukocyte membranes of young and senescent rats.

The effect of aging on some of the properties of the beta-adrenergic transduction system was determined in a membrane fraction of spleen mononuclear leukocytes from young (2-3 months) and old (24-25 months) rats. Receptor density was unchanged and the percentage of receptors in the high affinity configuration for isoproterenol was reduced with increasing age. Adenylate cyclase activity, either unstimulated or stimulated with forskolin, GTP or isoproterenol was not affected by aging. This suggests the presence of compensatory mechanisms in the beta-adrenergic signal transduction system of rat spleen mononuclear cells in order to ensure equal cAMP production for equal agonist stimulation.

Adenylyl Cyclases

The beta-adrenergic transduction system in kidneys from young and senescent rats.

beta-Adrenoceptor density, ligand affinity, high-affinity agonist binding, basal adenylate cyclase activity and cAMP synthesis upon stimulation with either forskolin, F-, guanine nucleotides (GTP or GppNHp) or isoproterenol in the presence of the nucleotides were studied in membranes prepared from kidneys of young (2-3 month) and old (24-25 month) male Wistar rats. There is a significant (P less than 0.01) 62% increase in beta-receptor density, a significant (P less than 0.05) 115% decrease in ligand affinity, a significant (P less than 0.05) 33% decrease of high-affinity binding sites for (-)-isoproterenol and a significant (P less than 0.01) 151% decrease of the affinity of the high-affinity agonist binding site. Basal adenylate cyclase activity and the activity after stimulation with guanine nucleotides and forskolin were significantly higher in old animals as compared to young (P less than 0.01). Stimulation of the system with isoproterenol in the presence of GTP was more effective in old animals, although the P less than 0.05 level of significance was barely reached. It is suggested that age-dependent changes of the beta-adrenoceptors in rat kidney are similar to those described for lungs: changes at the different levels of the beta-adrenergic transduction chain associated with age are compensatory so as to ensure equal cAMP synthesis for a given agonist stimulation.

Adenylyl Cyclase Inhibitors