Synthesis and .alpha.2-adrenoceptor effects of substituted catecholimidazoline and catecholimidazole analogs in human platelets

Journal of Medicinal Chemistry
1990.0

Abstract

It is known that the steric requirements for the interactions of catecholamines and catecholimidazolines with alpha 1- and alpha 2-adrenoceptors are different. New analogues of desoxycatecholimidazoline (1), desoxycatecholimidazole (3), benzylic hydroxyl substituted imidazole (4), and the aromatic fluorine substitution analogues of 1 at the 2 (5), 5 (6), and 6 (7) positions, and a set of asymmetric 4-substituted catecholimidazolines, S-8 and R-8, were prepared and tested for interaction with alpha 2-adrenoceptors in human platelets. With the exception of 3, all compounds were selective for alpha-adrenoceptor-mediated responses in human platelets. Introduction of a double bond in imidazoline 1 to give an imidazole 3 or the introduction of a benzylic hydroxyl group to 3, as in 4, reduced the inhibition of platelet aggregation with a rank order potency of 1 greater than 3 greater than 4. Fluorine atom substitution at the 2-, 5-, or 6-positions only slightly modified the inhibitory activity of 1. Each analogue (1, 3-7) produced alpha 2-mediated inhibition of platelet adenylate cyclase and can be classified as a partial agonist. The inhibition potency of S-8 and R-8 against epinephrine-induced aggregatory responses were greatly different, and only R-8 and 4 were alpha 2-agonists on human platelet function. Our studies provide further evidence for the differential interaction of catecholamines and catecholimidazolines in alpha 1- and alpha 2-adrenoceptor systems.

Knowledge Graph

Similar Paper

Synthesis and .alpha.2-adrenoceptor effects of substituted catecholimidazoline and catecholimidazole analogs in human platelets
Journal of Medicinal Chemistry 1990.0
.alpha.-Adrenergic activities of some substituted 2-(aminomethyl)imidazolines
Journal of Medicinal Chemistry 1983.0
Indoline analogs of idazoxan: potent .alpha.2-antagonists and .alpha.1-agonists
Journal of Medicinal Chemistry 1988.0
Conformationally defined adrenergic agents. 2. Catechol imidazoline derivatives: biological effects at .alpha.1 and .alpha.2 adrenergic receptors
Journal of Medicinal Chemistry 1986.0
Bioisosteric phentolamine analogs as potent α-adrenergic antagonists
Bioorganic & Medicinal Chemistry Letters 2005.0
Synthesis and adrenergic activity of benzimidazole bioisosteres of norepinephrine and isoproterenol
Journal of Medicinal Chemistry 1978.0
Synthesis and structure-activity relationships among .alpha.-adrenergic receptor agonists of the phenylethanolamine type
Journal of Medicinal Chemistry 1980.0
Synthesis and biological activities of 2-[(heteroaryl)methyl]imidazolines
Bioorganic & Medicinal Chemistry 2012.0
.alpha.2-Adrenergic agonists/antagonists: the synthesis and structure-activity relationships of a series of indolin-2-yl and tetrahydroquinolin-2-yl imidazolines
Journal of Medicinal Chemistry 1987.0
Syntheses of (R)- and (S)-2- and 6-Fluoronorepinephrine and (R)- and (S)-2- and 6-Fluoroepinephrine:  Effect of Stereochemistry on Fluorine-Induced Adrenergic Selectivities
Journal of Medicinal Chemistry 2000.0