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使用大麻隆促进酒精的刺激作用,并影响雄性大鼠额皮质内源性大麻素水平与酒精相关的变化。

Experience with dronabinol consumption facilitated a stimulant effect of alcohol and affected alcohol-related changes in frontal cortical endocannabinoid levels in male rats.

机构信息

Neuroscience Program, University of Illinois at Urbana-Champaign, USA.

Department of Psychology, University of Illinois at Urbana-Champaign, USA.

出版信息

Behav Brain Res. 2023 Aug 24;452:114587. doi: 10.1016/j.bbr.2023.114587. Epub 2023 Jul 17.

Abstract

Combined use of cannabis and alcohol is common in adolescents. However, the extent to which such polydrug exposure affects the brain and behaviors remains under-investigated in preclinical studies. This study tested the hypothesis that combined exposure of Δ-9-tetrahydrocannabinol (THC), the main psychoactive constituent of cannabis, and alcohol will have additive effects on cognitive impairments and altered endocannabinoid levels in the hippocampus and frontal cortex. Male Long Evans rats were provided with daily access to cookies laced with oil or dronabinol, a synthetic THC, during adolescence. Three days after discontinuation of edible THC, the effect of orally administered 3 g/kg alcohol on Barnes maze performance was assessed. The results showed that experience with edible THC facilitated the occurrence of increased moving speed on the maze induced by repeated alcohol administration. However, contrasting to the hypothesis, the combined THC and alcohol exposure did not lead to additive deficits in learning and memory on the Barnes maze. While little effect on endocannabinoid levels was observed in the hippocampus, acute abstinence from alcohol significantly reduced endocannabinoid levels in the frontal cortex. In particular, reduction of N-oleoyl ethanolamine (OEA) and N-stearoyl ethanolamine (SEA) were robust and had an interactive effect with discontinuation from edible THC. These findings add to the scarce literature on THC and alcohol associated changes in endocannabinoid levels and provide insights to future investigations on the roles of OEA and SEA on physiology and behaviors following THC and alcohol co-exposure during adolescence.

摘要

大麻和酒精的联合使用在青少年中很常见。然而,在临床前研究中,这种多药物暴露对大脑和行为的影响程度仍未得到充分研究。本研究检验了这样一个假设,即大麻的主要精神活性成分 Δ-9-四氢大麻酚(THC)与酒精联合暴露将对认知障碍和海马体和前额叶皮层内的内源性大麻素水平产生相加作用。雄性长耳大仓鼠在青春期期间每天都可以接触到涂有油或合成 THC 的曲马多饼干。在停止食用 THC 三天后,评估了口服 3g/kg 酒精对 Barnes 迷宫性能的影响。结果表明,食用 THC 的经验促进了反复给予酒精引起的迷宫中移动速度的增加。然而,与假设相反,联合使用 THC 和酒精并没有导致 Barnes 迷宫学习和记忆的相加缺陷。虽然在海马体中观察到对内源性大麻素水平几乎没有影响,但急性戒断酒精会显著降低前额叶皮层中的内源性大麻素水平。特别是,N-油酰乙醇胺(OEA)和 N-硬脂酰乙醇胺(SEA)的减少是明显的,并且与停止食用 THC 具有交互作用。这些发现增加了关于 THC 和酒精相关的内源性大麻素水平变化的文献,为未来研究 OEA 和 SEA 在青春期 THC 和酒精共暴露后对生理和行为的作用提供了启示。

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