Synthesis and biological evaluation of ...
Type de document :
Article dans une revue scientifique: Article original
DOI :
PMID :
URL permanente :
Titre :
Synthesis and biological evaluation of ferrocene-based cannabinoid receptor 2 ligands
Auteur(s) :
Sansook, Supojjanee [Auteur]
Tuo, Wei [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Bollier, Melanie [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Barczyk, Amélie [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Dezitter, Xavier [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Klupsch, Frederique [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Chavain, Natascha [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Farce, Amaury [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Tizzard, Graham J. [Auteur]
Coles, Simon J. [Auteur]
Spencer, John [Auteur]
Millet, Régis [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Tuo, Wei [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Bollier, Melanie [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Barczyk, Amélie [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Dezitter, Xavier [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Klupsch, Frederique [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Chavain, Natascha [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Farce, Amaury [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Tizzard, Graham J. [Auteur]
Coles, Simon J. [Auteur]
Spencer, John [Auteur]
Millet, Régis [Auteur]
Lille Inflammation Research International Center - U 995 [LIRIC]
Titre de la revue :
Future Medicinal Chemistry
Nom court de la revue :
Future Med Chem
Numéro :
10
Date de publication :
2018-03
ISSN :
1756-8927
Mot(s)-clé(s) en anglais :
isoxazole
cannabinoids
FAAH
ferrocene
cannabinoids
FAAH
ferrocene
Discipline(s) HAL :
Sciences du Vivant [q-bio]
Résumé en anglais : [en]
Ferrocene analogs of known fatty acid amide hydrolase inhibitors and CB2 ligands have been synthesized and characterized spectroscopically and crystallographically. The resulting bio-organometallic isoxazoles were assayed ...
Lire la suite >Ferrocene analogs of known fatty acid amide hydrolase inhibitors and CB2 ligands have been synthesized and characterized spectroscopically and crystallographically. The resulting bio-organometallic isoxazoles were assayed for their effects on CB1 and CB2 receptors as well as on fatty acid amide hydrolase. None had any fatty acid amide hydrolase activity but compound 3, 5-(2-(pentyloxy)phenyl)-N-ferrocenylisoxazole-3-carboxamide, was found to be a potent CB2 ligand (Ki = 32.5 nM).Lire moins >
Lire la suite >Ferrocene analogs of known fatty acid amide hydrolase inhibitors and CB2 ligands have been synthesized and characterized spectroscopically and crystallographically. The resulting bio-organometallic isoxazoles were assayed for their effects on CB1 and CB2 receptors as well as on fatty acid amide hydrolase. None had any fatty acid amide hydrolase activity but compound 3, 5-(2-(pentyloxy)phenyl)-N-ferrocenylisoxazole-3-carboxamide, was found to be a potent CB2 ligand (Ki = 32.5 nM).Lire moins >
Langue :
Anglais
Audience :
Internationale
Vulgarisation :
Non
Établissement(s) :
CHU Lille
Inserm
Université de Lille
Inserm
Université de Lille
Date de dépôt :
2024-01-30T10:27:24Z
2024-03-18T13:38:36Z
2024-03-18T13:38:36Z