Department of Pharmacology and Toxicology and Neuroscience Research Center, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Molecules. 2021 Sep 2;26(17):5354. doi: 10.3390/molecules26175354.
The cannabis-derived molecules, ∆ tetrahydrocannabinol (THC) and cannabidiol (CBD), are both of considerable therapeutic interest for a variety of purposes, including to reduce pain and anxiety and increase sleep. In addition to their other pharmacological targets, both THC and CBD are competitive inhibitors of the equilibrative nucleoside transporter-1 (ENT-1), a primary inactivation mechanism for adenosine, and thereby increase adenosine signaling. The goal of this study was to examine the role of adenosine A2A receptor activation in the effects of intraperitoneally administered THC alone and in combination with CBD or PECS-101, a 4'-fluorinated derivative of CBD, in the cannabinoid tetrad, elevated plus maze (EPM) and marble bury assays. Comparisons between wild-type (WT) and A2AR knock out (A2AR-KO) mice were made. The cataleptic effects of THC were diminished in A2AR-KO; no other THC behaviors were affected by A2AR deletion. CBD (5 mg/kg) potentiated the cataleptic response to THC (5 mg/kg) in WT but not A2AR-KO. Neither CBD nor THC alone affected EPM behavior; their combination produced a significant increase in open/closed arm time in WT but not A2AR-KO. Both THC and CBD reduced the number of marbles buried in A2AR-KO but not WT mice. Like CBD, PECS-101 potentiated the cataleptic response to THC in WT but not A2AR-KO mice. PECS-101 also reduced exploratory behavior in the EPM in both genotypes. These results support the hypothesis that CBD and PECS-101 can potentiate the cataleptic effects of THC in a manner consistent with increased endogenous adenosine signaling.
大麻衍生分子,Δ 四氢大麻酚(THC)和大麻二酚(CBD),在各种用途上都具有相当大的治疗兴趣,包括减轻疼痛和焦虑,增加睡眠。除了它们的其他药理学靶点外,THC 和 CBD 都是平衡核苷转运蛋白-1(ENT-1)的竞争性抑制剂,ENT-1 是腺苷的主要失活机制,从而增加了腺苷信号。本研究的目的是研究腺苷 A2A 受体激活在腹腔内给予 THC 单独以及与 CBD 或 PECS-101(CBD 的 4'-氟代衍生物)联合使用时对大麻四联体、高架十字迷宫(EPM)和大理石掩埋试验的影响。在野生型(WT)和 A2AR 敲除(A2AR-KO)小鼠之间进行了比较。THC 的镇静作用在 A2AR-KO 中减弱;A2AR 缺失对其他 THC 行为没有影响。CBD(5mg/kg)增强了 WT 中 THC(5mg/kg)的镇静反应,但在 A2AR-KO 中没有增强。CBD 或 THC 单独均未影响 EPM 行为;它们的组合在 WT 中产生了打开/关闭臂时间的显著增加,但在 A2AR-KO 中没有增加。THC 和 CBD 均可减少 A2AR-KO 而非 WT 小鼠埋藏的大理石数量。与 CBD 一样,PECS-101 增强了 WT 中 THC 的镇静反应,但在 A2AR-KO 中没有增强。PECS-101 还降低了两种基因型的 EPM 中的探索行为。这些结果支持这样的假设,即 CBD 和 PECS-101 可以以与内源性腺苷信号增加一致的方式增强 THC 的镇静作用。