化学
合成大麻素
大麻素受体2型
兴奋剂
大麻素受体
实验性自身免疫性脑脊髓炎
药理学
大麻酚
体内
大麻素
受体
虚拟筛选
立体化学
组合化学
大麻
多发性硬化
生物化学
药效团
医学
免疫学
生物技术
精神科
生物
作者
Wenwen Duan,Ying Sun,Meng Wu,Zhiyuan Zhang,Taotao Zhang,Huan Wang,Fei Li,Lingyun Yang,Yueming Xu,Zhi‐Jie Liu,Tian Hua,Hong Nie,Jianjun Cheng
标识
DOI:10.1016/j.ejmech.2021.113878
摘要
Cannabinoids are widely studied as therapeutic agents for the treatment of various diseases. Among them, THC and CBD are two important phytocannabinoids which have served as structural templates for the design of synthetic analogs. In this study, we designed and synthesized a variety of novel cannabinoids based on the structural backbones of THC and CBD using the carbon-silicon switch strategy. A dimethyl silyl group was introduced as the tail group and two series of novel compounds were designed and synthesized, which showed a wide range of binding affinity for CB1 and CB2 receptors. Among them, compound 15b was identified as a non-selective CB1 and CB2 agonist and 38b as a selective agonist for the CB2 receptor. Preliminary screening showed that both compounds have improved metabolic stability than their carbon analogs and good in vivo pharmacokinetic profiles. Furthermore, both 15b and 38b significantly alleviated the phenotype of experimental autoimmune encephalomyelitis (EAE) in mice.
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