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Comparison of novel cannabinoid partial agonists and SR141716A in the guinea‐pig small intestine
Author(s) -
Coutts Angela A,
Brewster Nicola,
Ingram Tracey,
Razdan Raj K,
Pertwee Roger G
Publication year - 2000
Publication title -
british journal of pharmacology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.432
H-Index - 211
eISSN - 1476-5381
pISSN - 0007-1188
DOI - 10.1038/sj.bjp.0703094
Subject(s) - potency , partial agonist , agonist , chemistry , antagonist , stereochemistry , cannabinoid , cannabinoid receptor , receptor , pharmacology , biochemistry , biology , in vitro
The controversial nature of the CB 1 receptor antagonist, SR141716A, in the guinea‐pig small intestine was investigated by comparing it with four analogues of Δ 8 ‐tetrahydrocannabinol (Δ 8 ‐THC): O‐1184, O‐1238, O‐584 and O‐1315. These compounds (10–1000 n M ) inhibited the electrically‐evoked contractions with a rank order of potency of O‐1238>O‐1184>O‐584>O‐1315. Log concentration‐response curves for O‐1238, O‐1184 and O‐1315 were significantly shifted to the right by SR141716A and the maxima were significantly less than that of the CB 1 agonist, WIN55212‐2, an indication of partial agonism. Partial saturation of the triple bond in O‐1184 to a cis double bond (O‐1238) increased its potency as an agonist (p EC 50 from 6.42 to 7.63) and as an antagonist of WIN55212‐2, (p K B , from 8.36 to 9.49). Substitution of the terminal azide group by an ethyl group (O‐584) or removal of the phenolic hydroxyl group (O‐1315) had no significant effect on the agonist or antagonist potency. None of these analogues increased the twitch response in a manner resembling that of SR141716A. O‐1184 (10 and 100 n M ) shifted the log concentration‐response curve of WIN55212‐2 for inhibition of the twitch responses to the right with p K B values of 8.29 and 8.38, respectively. We conclude that these Δ 8 ‐THC analogues behave as partial agonists rather than silent antagonists at CB 1 binding sites in this tissue. There was no evidence of antagonism of endocannabinoids thus supporting the hypothesis that, in this tissue, SR141716A is an inverse agonist of constitutively active CB 1 receptors.British Journal of Pharmacology (2000) 129 , 645–652; doi: 10.1038/sj.bjp.0703094

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