CAS 155471-08-2
:JWH-015
- (2-Methyl-1-Propyl-1H-Indol-3-Yl)-1-Naphthalenylmethanone
- (2-methyl-1-propyl-1H-indol-3-yl)(naphthalen-1-yl)methanone
- Methanone, (2-methyl-1-propyl-1H-indol-3-yl)-1-naphthalenyl-
- JWH 015
- JWH-015 (1.0mg/ml in Acetonitrile)
- Zinc02577049
- (2-methyl-1-propylindol-3-yl)-naphthalen-1-ylmethanone
JWH-015 ((2-Methyl-1-propylindol-3-yl)(naphthalen-1-yl)methanone) 1.0 mg/ml in Acetonitrile
CAS:Kontrolliertes ProduktFarbe und Form:Single SolutionJWH-015 ((2-Methyl-1-propylindol-3-yl)(naphthalen-1-yl)methanone) 0.1 mg/ml in Acetonitrile
CAS:Kontrolliertes ProduktFarbe und Form:Single SolutionJWH-015 ((2-Methyl-1-propylindol-3-yl)(naphthalen-1-yl)methanone)
CAS:Kontrolliertes ProduktFarbe und Form:YellowJWH-015
CAS:Kontrolliertes ProduktApplications A cannabimimetic indole derivative that acts as a CB2 receptor agonist with weak CB2 activity. It has been shown to possess immunomodulatory effects and may be useful in the treatment of pain and inflammation. Synthetic cannabinoids
References Aung, M.M. et al.: Drug Alc. Depend., 60, 133 (2000); Ghosh, S. et al.: Mol. Immunol., 43, 2169 (2006); Ehrhart, J. et al.: J. Neuroinflam., 2, 29 (2005); Romero-Sandoval, A. et al.: Anethesiol., 106, 787 (2007);Formel:C23H21NOFarbe und Form:NeatMolekulargewicht:327.42JWH-015 (1 mg/ml in Acetonitrile)
CAS:Kontrolliertes ProduktFormel:C23H21NOFarbe und Form:Single SolutionMolekulargewicht:327.42JWH 015
CAS:Kontrolliertes ProduktJWH 015 is a cannabinoid that binds to the CB2 receptor and activates it, which induces apoptosis in cancer cells. JWH 015 has been shown to be effective against bone cancer, but not against colon cancer. It has also been shown to inhibit the growth of colon cancer cells in vitro by inhibiting the proliferation of cells and inducing apoptosis. JWH 015 may have potential as a chemotherapeutic agent for treating colorectal cancers. It does not bind to the CB1 receptors found on neurons and so does not cause any psychoactive effects.
Formel:C23H21NOReinheit:Min. 95%Molekulargewicht:327.42 g/mol



