Synthesis of 6-substituted .beta.-carbolines that behave as benzodiazepine receptor antagonists or inverse agonists

Journal of Medicinal Chemistry
1987.0

Abstract

The synthesis of the first beta-carboline, 6-(benzylamino)-beta-carboline (1c), to be devoid of a substituent at the 3-position and that still binds to benzodiazepine receptors with potent affinity is described. Furthermore, 1c proved to be a partial inverse agonist when tested in mice. Addition of the benzylamino group at the 6-position of the beta-carboline nucleus is primarily responsible for the activity of beta-carbolines 1b and 1c. The importance of the Nb-nitrogen atom for binding affinity was also demonstrated since 3-(benzylamino)carbazole (6) exhibited little or no affinity for benzodiazepine receptors in vitro, in contrast to the activity of 1c.

Knowledge Graph

Similar Paper

Synthesis of 6-substituted .beta.-carbolines that behave as benzodiazepine receptor antagonists or inverse agonists
Journal of Medicinal Chemistry 1987.0
Synthesis of novel 3-substituted .beta.-carbolines as benzodiazepine receptor ligands: probing the benzodiazepine receptor pharmacophore
Journal of Medicinal Chemistry 1988.0
.beta.-Carbolines: synthesis and neurochemical and pharmacological actions on brain benzodiazepine receptors
Journal of Medicinal Chemistry 1982.0
Biomimetic approach to potential benzodiazepine receptor agonists and antagonists
Journal of Medicinal Chemistry 1984.0
.beta.-Carbolines as benzodiazepine receptor ligands. 1. Synthesis and benzodiazepine receptor interaction of esters of .beta.-carboline-3-carboxylic acid
Journal of Medicinal Chemistry 1983.0
Synthetic and computer-assisted analyses of the pharmacophore for the benzodiazepine receptor inverse agonist site
Journal of Medicinal Chemistry 1990.0
The agonist pharmacophore of the benzodiazepine receptor. Synthesis of a selective anticonvulsant/anxiolytic
Journal of Medicinal Chemistry 1991.0
6-Bromo-3′-nitroflavone, a new high affinity benzodiazepine receptor agonist recognizes two populations of cerebral cortical binding sites
Bioorganic & Medicinal Chemistry Letters 1997.0
Benzodiazepine receptor binding activity of 6,9-disubstituted purines
Journal of Medicinal Chemistry 1989.0
Synthesis and Binding Activity of Some Pyrazolo[1,5-c]quinazolines as Tools To Verify an Optional Binding Site of a Benzodiazepine Receptor Ligand
Journal of Medicinal Chemistry 1996.0