Indol-3-yl-tetramethylcyclopropyl Ketones: Effects of Indole Ring Substitution on CB2 Cannabinoid Receptor Activity

Journal of Medicinal Chemistry
2008.0

Abstract

A series of potent indol-3-yl-tetramethylcyclopropyl ketones have been prepared as CB 2 cannabinoid receptor ligands. Two unsubstituted indoles ( 5, 32) were the starting points for an investigation of the effect of indole ring substitutions on CB 2 and CB 1 binding affinities and activity in a CB 2 in vitro functional assay. Indole ring substitutions had varying effects on CB 2 and CB 1 binding, but were generally detrimental to agonist activity. Substitution on the indole ring did lead to improved CB 2/CB 1 binding selectivity in some cases (i.e., 7- 9, 15- 20). All indoles with the morpholino-ethyl side chain ( 32- 43) exhibited weaker binding affinity and less agonist activity relative to that of their tetrahydropyranyl-methyl analogs ( 5- 31). Several agonists were active in the complete Freund's adjuvant model of chronic inflammatory thermal hyperalgesia ( 32, 15).

Knowledge Graph

Similar Paper

Indol-3-yl-tetramethylcyclopropyl Ketones: Effects of Indole Ring Substitution on CB<sub>2</sub> Cannabinoid Receptor Activity
Journal of Medicinal Chemistry 2008.0
Indol-3-ylcycloalkyl Ketones: Effects of N1 Substituted Indole Side Chain Variations on CB<sub>2</sub> Cannabinoid Receptor Activity
Journal of Medicinal Chemistry 2010.0
New 1,2,3,4-tetrahydropyrrolo[3,4-b]indole derivatives as selective CB2 receptor agonists
Bioorganic &amp; Medicinal Chemistry Letters 2007.0
Novel indole and azaindole (pyrrolopyridine) cannabinoid (CB) receptor agonists: Design, synthesis, structure–activity relationships, physicochemical properties and biological activity
European Journal of Medicinal Chemistry 2011.0
Alkyl indole-based cannabinoid type 2 receptor tools: Exploration of linker and fluorophore attachment
European Journal of Medicinal Chemistry 2018.0
C-3 Amido-Indole cannabinoid receptor modulators
Bioorganic &amp; Medicinal Chemistry Letters 2002.0
Rational Design and Synthesis of an Orally Active Indolopyridone as a Novel Conformationally Constrained Cannabinoid Ligand Possessing Antiinflammatory Properties
Journal of Medicinal Chemistry 2003.0
Novel pyridine derivatives as potent and selective CB2 cannabinoid receptor agonists
Bioorganic &amp; Medicinal Chemistry Letters 2009.0
1-Pentyl-3-phenylacetylindoles, a new class of cannabimimetic indoles
Bioorganic &amp; Medicinal Chemistry Letters 2005.0
Tricyclic pyrazoles. Part 8. Synthesis, biological evaluation and modelling of tricyclic pyrazole carboxamides as potential CB2 receptor ligands with antagonist/inverse agonist properties
European Journal of Medicinal Chemistry 2016.0