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  • 1
    ISSN: 1432-2072
    Keywords: SR 46559A ; Cholinergic syndrome ; Memory ; Diacylglycerol ; Muscarinic receptors
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract The cholinergic activities of SR 46559A, 3-[N-(2 diethyl-amino-2-methylpropyl)-6-phenyl-5-propyl] pyridazinamine sesquifumarate, have been investigated in vitro and in vivo, in rodents. Using rat brain cortical membranes, SR 46559A was a competitive ligand (Ki=112 nM) at muscarinic M1 receptors, its affinity for muscarinic M2 (cardiac) and M3 (glandular) receptors being 6–7 times lower. SR 46559A did not interact with brain nicotinic receptors and high affinity choline uptake sites nor did it inhibit brain acetylcholinesterase activity. In contrast to reference muscarinic agonists, SR 46559A (1 mM) did not inhibit the forskolin-induced activation of cAMP synthesis nor did it stimulate phosphoinositides breakdown in various brain preparations. However, this compound enhanced (+67% at 1 mM) diacylglycerol formation in rat striatal miniprisms, an effect fully reversed by atropine. As shown with reference agonists, SR 46559A inhibited (IC50=10 µM) the K+-evoked release of [3H]GABA from rat striatal slices and reduced at 0.5 and 1 µM, the population spike amplitude of the CA1 pyramidal cells induced by stimulation of the Schaffer's collateral commissural pathway in rat hippocampal slices. In mice, SR 46559A at a near lethal dose (200 mg/kg PO) did not induce the typical cholinergic syndrome nor did it modify at 30 mg/kg PO the oxotremorine-induced hypothermia. Like muscarinic agonists, SR 46559A (1 mg/kg PO) potentiated haloperidol-induced catalepsy in rats and inhibited (ED50=0.12 mg/kg PO) rotations induced in mice by intrastriatal injection of pirenzepine. SR 46559A prevented the scopolamine- or pirenzepine-induced deficit in passive avoidance learning, this compound being 3 times more potent on pirenzepine-induced amnesia. Moreover, using the social memory test, SR 46559A (0.1–3 mg/kg PO) enhanced short-term retention in adult rats and improved memory deficits observed in aged mice and in rats subjected to cerebral ischeamic insult. SR 46559A (1–3 mg/kg PO) also reversed the ischaemia-induced alterations of rats exploratory behaviour. Taken together, these results suggest that SR 46559A behaves as an atypical muscarinic compound which, at least in part, could stimulate muscarinic receptors coupled to phosphatidylcholine/phospholipases C or D signalling pathways. This drug has a marked ability to improve experimentally induced cognitive deficits in rodents without producing cholinergic symptomatology. Thus, SR 46559A could be a potential useful drug for the symptomatic treatment of Alzheimer's disease.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Journal of computer aided molecular design 1 (1987), S. 153-170 
    ISSN: 1573-4951
    Keywords: Benzodiazepine pharmacophore ; Cyclopyrrolones ; Triazolopyridazines ; β-Carbolines ; Pyrazoloquinolines
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Summary Applied to seven potent benzodiazepine-receptor ligands belonging to chemically different classes, the active analog approach allowed the stepwise identification of the pharmacophoric pattern associated with the recognition by the benzodiazepine receptor. A unique pharmacophore model was derived which involves six critical zones: (a) a π-electron rich aromatic (PAR) zone; (b) two electron-rich zones δ1 and δ2 placed at 5.0 and 4.5 Å respectively from the reference centroid in the PAR zone; (c) a freely rotating aromatic ring (FRA) region; (d) an out-of-plane region (OPR), strongly associated with agonist properties; and (e) an additional hydrophobic region (AHR). The model accommodates all presently known ligands of the benzodiazepine receptor, identifies sensitivity to steric hindrance close to the δ1 zone, accounts forR andS differential affinities and distinguishes requirements for agonist versus non-agonist activity profiles.
    Type of Medium: Electronic Resource
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