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Development of selective, fluorescent cannabinoid type 2 receptor ligands based on a 1,8-naphthyridin-2-(1H)-one-3-carboxamide scaffold.


ABSTRACT: Cannabinoid type 2 (CB2) receptor has been implicated in several diseases and conditions, however no CB2 receptor selective drugs have made it to market. The aim of this study was to develop fluorescent ligands as CB2 receptor tools, to enable an increased understanding of CB2 receptor expression and signalling and thereby accelerate drug discovery. Fluorescent ligands have been successfully developed for other receptors, however none with adequate subtype selectivity or imaging properties have been reported for CB2 receptor. A series of 1,8-naphthyridin-2-(1H)-one-3-carboxamides with linkers and fluorophores appended in the N1 and C3-positions were developed. Molecular modelling indicated the C3 cis-cyclohexanol-linked compounds directed the linker out of the CB2 receptor between transmembrane helices 1 and 7. Herein we report fluorescent ligand 32 (hCB2 pK i = 6.33 ± 0.02) as one of the highest affinity, selective CB2 receptor fluorescent ligands reported. Despite 32 displaying poor specific labelling of CB2 receptor, the naphthyridine scaffold with this linker remains highly promising for future development of CB2 receptor tools.

SUBMITTER: Cooper AG 

PROVIDER: S-EPMC6301273 | biostudies-literature | 2018 Dec

REPOSITORIES: biostudies-literature

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Development of selective, fluorescent cannabinoid type 2 receptor ligands based on a 1,8-naphthyridin-2-(1<i>H</i>)-one-3-carboxamide scaffold.

Cooper Anna G AG   Oyagawa Caitlin R M CRM   Manning Jamie J JJ   Singh Sameek S   Hook Sarah S   Grimsey Natasha L NL   Glass Michelle M   Tyndall Joel D A JDA   Vernall Andrea J AJ  

MedChemComm 20181023 12


Cannabinoid type 2 (CB<sub>2</sub>) receptor has been implicated in several diseases and conditions, however no CB<sub>2</sub> receptor selective drugs have made it to market. The aim of this study was to develop fluorescent ligands as CB<sub>2</sub> receptor tools, to enable an increased understanding of CB<sub>2</sub> receptor expression and signalling and thereby accelerate drug discovery. Fluorescent ligands have been successfully developed for other receptors, however none with adequate sub  ...[more]

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