STEREOCHEMICAL REQUIREMENTS FOR CENTRAL AND PERIPHERAL MUSCARINIC AND ANTIMUSCARINIC ACTIVITY OF SOME ACETYLENIC COMPOUNDS RELATED TO OXOTREMORINE
Richard Dahlbom, Donald J. Jenden, Bahram Resul, Björn Ringdahl
Abstract
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Richard Dahlbom, Donald J. Jenden, Bahram Resul, Björn Ringdahl
Abstract
Open-access reader
1 The enantiomers of some analogues of the central muscarinic agent, oxotremorine, were prepared and investigated for tremorogenic and tremorolytic activity in intact mice and for muscarinic and antimuscarinic activity on the isolated ileum of the guinea-pig. 2 The R-isomers were more potent than the S-isomers both in vivo and in vitro regardless of whether the compounds are agonists, partial agonists or competitive antagonists. 3 It is suggested that in the oxotremorine series, agonists and antagonists interact with a common receptor site, in contrast to classical muscarinic antagonists which are believed to bind also to accessory receptor areas, located close to the agonist binding site.
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1 The enantiomers of some analogues of the central muscarinic agent, oxotremorine, were prepared and investigated for tremorogenic and tremorolytic activity in intact mice and for muscarinic and antimuscarinic activity on the isolated ileum of the guinea-pig. 2 The R-isomers were more potent than the S-isomers both in vivo and in vitro regardless of whether the compounds are agonists, partial agonists or competitive antagonists. 3 It is suggested that in the oxotremorine series, agonists and antagonists interact with a common receptor site, in contrast to classical muscarinic antagonists which are believed to bind also to accessory receptor areas, located close to the agonist binding site.
Key concepts: Oxotremorine, Muscarinic acetylcholine receptor, Chemistry, Muscarinic agonist, Agonist, Muscarinic acetylcholine receptor M1, Pharmacology, Muscarinic acetylcholine receptor M2