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四氢大麻酚(THC)、大麻二酚(CBD)和次要大麻素大麻二酚戊酸酯(CBDV)对海马神经元放电的调节方式不同。

THC, CBD and minor cannabinoid CBDV differently modulate hippocampal neurons firing.

作者信息

Tomagra Giulia, Gandlevskiy Nikita, Rosso Elena, Bonardi Monica, Binello Arianna, Carabelli Valentina, Barge Alessandro

机构信息

Department of Drug and Science Technology, University of Turin, Italy; NIS Interdepartmental Centre, University of Turin, Italy.

Department of Drug and Science Technology, University of Turin, Italy.

出版信息

Neurotoxicology. 2025 May;108:180-190. doi: 10.1016/j.neuro.2025.04.004. Epub 2025 Apr 9.

Abstract

Cannabis sativa L. presents a very complex composition that includes several secondary metabolites besides the two main compounds, Δ-tetrahydrocannabinol (THC) and cannabidiol (CBD). Many of these minor cannabinoids are still under investigation and are arousing increasing interest for their biological effects and potential therapeutic roles. Cannabis sativa extracts, either properly purified and enriched with cannabinoids, were tested here on the neuronal activity, by monitoring the spontaneous firing rate and the bursts generation of cultured hippocampal neurons. In particular, we focused on the combined effect of THC, CBD and cannabidivarin (CBDV), a non-psychoactive homologue of CBD whose side chain has two fewer carbon atoms, and their related standard compounds. We found that standard THC, recognised for its psychoactive impact and side effects including anxiety and paranoia, significantly decreased the spontaneous firing discharge of cultured hippocampal neurons, whether applied alone or in combination with standard CBD at comparable concentrations. In contrast, the firing activity did not exhibit any significant alterations when CBD was administered alone. When C. sativa extracts were tested, we found that CBDV was able to reverse the inhibition of the firing discharge caused by the mixture of THC and CBD. Furthermore, when administered alone, CBDV significantly increased the firing discharge of hippocampal neurons. In all tested conditions, the effects exerted by standard compounds or extracts were restored to control conditions after 24 hours from administration. Overall, these data unravel a novel action of CBDV in reverting the detrimental effect exerted by the THC+CBD on neuronal firing activity.

摘要

大麻(Cannabis sativa L.)具有非常复杂的成分,除了两种主要化合物Δ-四氢大麻酚(THC)和大麻二酚(CBD)之外,还包括几种次生代谢产物。许多这些次要大麻素仍在研究中,因其生物学效应和潜在治疗作用而引起越来越多的关注。本文通过监测培养的海马神经元的自发放电率和爆发产生,对经过适当纯化并富含大麻素的大麻提取物的神经元活性进行了测试。特别是,我们重点研究了THC、CBD和大麻二萜酚(CBDV,CBD的一种非精神活性同系物,其侧链少两个碳原子)及其相关标准化合物的联合作用。我们发现,以其精神活性影响和包括焦虑及偏执狂在内的副作用而闻名的标准THC,无论单独使用还是与可比浓度的标准CBD联合使用,都会显著降低培养的海马神经元的自发放电。相比之下,单独给予CBD时,放电活动没有表现出任何显著变化。当测试大麻提取物时,我们发现CBDV能够逆转THC和CBD混合物对放电的抑制作用。此外,单独给药时,CBDV显著增加海马神经元的放电。在所有测试条件下,标准化合物或提取物施加的效应在给药24小时后恢复到对照条件。总体而言,这些数据揭示了CBDV在逆转THC + CBD对神经元放电活动产生的有害作用方面的新作用。

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