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Single and Synergistic Effects of Cannabidiol and Δ-9-Tetrahydrocannabinol on Zebrafish Models of Neuro-Hyperactivity

机译:卡那比二醇和Δ-9-四氢大麻酚对斑马鱼神经机能亢进模型的单一和协同作用

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In this study, we aimed to investigate the effect of the two main active cannabinoids extracted from cannabis: Δ-9-tetrahydrocannabinol (THC) and cannabidiol (CBD) on two distinct behavioral models of induced neuro-hyperactivity. We have taken advantage of two previously developed zebrafish models of neuro-hyperactivity: a chemically induced pentylenetetrazole model and a genetic model caused by loss-of-function mutations in the GABA receptor subunit alpha 1 ( GABRA1?/? ). Both CBD and THC have a significant effect on the behavioral changes induced by both models. Importantly, we have also shown that when applied together at different ratios of THC to CBD (1:1, 1:5, and 1:10), there was a synergistic effect at a ratio of 1:1. This was particularly important for the genetically induced neuro-hyperactivity as it brought the concentrations of THC and CBD required to oppose the induced behavioral changes to levels that had much less of an effect on baseline larval behavior. The results of this study help to validate the ability of THC and CBD to oppose neuro-hyperactivity linked to seizure modalities. Additionally, it appears that individually, each cannabinoid may be more effective against the chemically induced model than against the GABRA1 ?/? transgenic model. However, when applied together, the concentration of each compound required to oppose the GABRA1 ?/? light-induced activity was lowered. This is of particular interest since the use of cannabinoids as therapeutics can be dampened by their side-effect profile. Reducing the level of each cannabinoid required may help to prevent off target effects that lead to side effects. Additionally, this study provides a validation of the complimentary nature of the two zebrafish models and sets a platform for future work with cannabinoids, particularly in the context of neuro-hyperactivity disorders such as epilepsy.
机译:在这项研究中,我们旨在研究从大麻中提取的两种主要活性大麻素:Δ-9-四氢大麻酚(THC)和大麻二酚(CBD)对两种不同的诱导的神经机能亢进行为模型的影响。我们利用了两个先前开发的神经功能亢进斑马鱼模型的优势:化学诱导的戊四唑模型和由GABA受体亚基alpha 1(GABRA1?/?)的功能丧失突变引起的遗传模型。 CBD和THC都对两种模型引起的行为变化产生重大影响。重要的是,我们还表明,当以THC与CBD的不同比例(1:1、1:5和1:10)一起使用时,会产生1:1的协同效应。这对于遗传诱导的神经机能亢进尤为重要,因为它使抵抗诱导的行为变化所需的THC和CBD浓度达到对基线幼虫行为影响较小的水平。这项研究的结果有助于验证THC和CBD对抗与癫痫发作方式有关的神经功能亢进的能力。另外,似乎每种大麻素对化学诱导的模型可能比对GABRA1β/β更有效。转基因模型。但是,当一起使用时,与GABRA1相对应的每种化合物的浓度。光诱导的活性降低。这是特别令人感兴趣的,因为可以通过大麻素的副作用来抑制大麻素作为治疗剂的使用。降低所需的每种大麻素的水平可能有助于防止导致副作用的脱靶效应。此外,这项研究验证了两种斑马鱼模型的互补性,并为大麻素的未来研究奠定了平台,特别是在神经多动障碍(例如癫痫)的情况下。

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