Department of Chemistry, University of Hawaii at Manoa, 2545 The Mall, Honolulu, HI 96822, United States.
Department of Chemistry, University of Hawaii at Manoa, 2545 The Mall, Honolulu, HI 96822, United States.
Bioorg Med Chem Lett. 2021 Apr 15;38:127882. doi: 10.1016/j.bmcl.2021.127882. Epub 2021 Feb 24.
As a continuation of earlier work on classical cannabinoids bearing bulky side chains we report here the design, synthesis, and biological evaluation of 3'-functionalized oxa-adamantyl cannabinoids as a novel class of cannabinergic ligands. Key synthetic steps involve nucleophilic addition/transannular cyclization of aryllithium to epoxyketone in the presence of cerium chloride and stereoselective construction of the tricyclic cannabinoid nucleus. The synthesis of the oxa-adamantyl cannabinoids is convenient, and amenable to scale up allowing the preparation of these analogs in sufficient quantities for detailed in vitro evaluation. The novel oxa-adamantyl cannabinoids reported here were found to be high affinity ligands for the CB1 and CB2 cannabinoid receptors. In the cyclase assay these compounds were found to behave as potent and efficacious CB1 receptor agonists. Isothiocyanate analog AM10504 is capable of irreversibly labeling both the CB1 and CB2 receptors.
作为对具有庞大侧链的经典大麻素的早期工作的延续,我们在此报告了 3'-功能化氧杂金刚烷大麻素的设计、合成和生物学评估,作为一类新型大麻素配体。关键的合成步骤包括芳基锂在氯化铈存在下对环氧酮的亲核加成/反环化以及三环大麻素核的立体选择性构建。氧杂金刚烷大麻素的合成方便,适合规模化,允许这些类似物以足够的数量制备,以便进行详细的体外评估。本文报道的新型氧杂金刚烷大麻素被发现是 CB1 和 CB2 大麻素受体的高亲和力配体。在环化酶测定中,这些化合物被发现是有效的 CB1 受体激动剂。异硫氰酸酯类似物 AM10504 能够不可逆地标记 CB1 和 CB2 受体。