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Drug Test Anal ; 13(7): 1412-1429, 2021 Jul.
Article in English | MEDLINE | ID: mdl-33908179

ABSTRACT

The present work is the last of a three-part study investigating a panel of 30 systematically designed synthetic cannabinoid receptor agonists (SCRAs) including features such as the 4-pentenyl tail and varying head groups including amides and esters of l-valine (MMB, AB), l-tert-leucine (ADB), and l-phenylalanine (APP), as well as adamantyl (A) and cumyl moieties (CUMYL). Here, we evaluated these SCRAs for their capacity to activate the human cannabinoid receptor 1 (CB1 ) via indirect measurement of G protein recruitment. Furthermore, we comparatively evaluated the results obtained from three in vitro assays, based on the recruitment of ß-arrestin 2 (ßarr2 assay) or Gαi protein (mini-Gαi assay), or binding of [35 S]-GTPγS. The observed efficacies (Emax ) varied depending on the conducted assay. Statistical analysis suggests that the population means of the relative intrinsic activity (RAi ) significantly differ for the [35 S]-GTPγS assay and the other two assays, but the population means of the ßarr2 and mini-Gαi assays were not statistically different. Our data suggest that differences observed between the ßarr2 and mini-Gαi assays are the best predictor for 'biased agonism' towards ßarr or G protein recruitment in our study. SCRAs carrying an ADB or MPP moiety as a head group tended to produce elevated Emax values in the ßarr2 assay, which might result in a tendency of these compounds to cause pronounced tolerance in users-a hypothesis that should be evaluated further by future studies. In general, a comparison of efficacies derived from different assays is difficult and should only be conducted very cautiously.


Subject(s)
Cannabinoid Receptor Agonists/pharmacology , Cannabinoids/pharmacology , GTP-Binding Proteins/metabolism , Receptor, Cannabinoid, CB1/metabolism , Cannabinoid Receptor Agonists/chemical synthesis , Cannabinoid Receptor Agonists/chemistry , Cannabinoids/chemical synthesis , Cannabinoids/chemistry , Humans , Indazoles/chemical synthesis , Indazoles/chemistry , Indazoles/pharmacology , Indoles/chemical synthesis , Indoles/chemistry , Indoles/pharmacology , Structure-Activity Relationship , beta-Arrestin 2/metabolism
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