Haghdoost Mehdi, DePorre Yvonne, Figi Max, Young Scott, Krebs Caitlyn, Bonn-Miller Marcel O
Nalu Bio Inc., 38 Keyes Avenue, Suite 117, San Francisco, California 94129, United States.
Charlotte's Web, 700 Tech Court, Louisville, Colorado 80027, United States.
J Nat Prod. 2025 Jan 24;88(1):58-66. doi: 10.1021/acs.jnatprod.4c00977. Epub 2025 Jan 15.
Cannabicyclol ((±)-CBL), a minor phytocannabinoid, is largely unexplored, with its biological activity previously undocumented. We studied its conversion from cannabichromene (CBC) using various acidic catalysts. Montmorillonite (K30) in chloroform at room temperature had the highest yield (60%) with minimal byproducts. Key reaction conditions, such as solvent, temperature, and time, significantly impacted the yield. The structure of (±)-CBL was confirmed via X-ray crystallography. Stability studies showed that (±)-CBL and its MCT oil dilution remain stable at 25-40 °C for three months. Radioligand binding assays revealed high affinity of CBL for the 5-HT receptor but weak interaction with CB and CB receptors. At 10 μM and 1 μM, (±)-CBL inhibited [H]-8-hydroxy-DPAT binding to 5-HT by 75% and 20%, respectively. Functional assays showed that (±)-CBL acts as a weak agonist at high concentrations but a potent positive allosteric modulator of serotonin-induced activation at low concentrations. At 4 μM, (±)-CBL increased serotonin-induced β-arrestin recruitment from 20% to 80%. This unique modulatory profile highlights the potential of (±)-CBL in drug discovery targeting serotonin receptors.
大麻环醇((±)-CBL)是一种次要的植物大麻素,在很大程度上尚未被研究,其生物活性此前也未被记录。我们使用各种酸性催化剂研究了它从大麻色烯(CBC)的转化过程。室温下在氯仿中的蒙脱石(K30)产率最高(60%),副产物最少。关键反应条件,如溶剂、温度和时间,对产率有显著影响。(±)-CBL的结构通过X射线晶体学得到证实。稳定性研究表明,(±)-CBL及其中链甘油三酯油稀释液在25 - 40°C下可稳定三个月。放射性配体结合试验表明,CBL对5 - HT受体具有高亲和力,但与CB和CB受体的相互作用较弱。在10 μM和1 μM时,(±)-CBL分别抑制[H]-8 - 羟基 - DPAT与5 - HT的结合达75%和20%。功能试验表明,(±)-CBL在高浓度时作为弱激动剂,但在低浓度时是血清素诱导激活的强效正变构调节剂。在4 μM时,(±)-CBL将血清素诱导的β - 抑制蛋白募集从20%提高到80%。这种独特的调节特性突出了(±)-CBL在针对血清素受体的药物发现中的潜力。