Achenbach John C, Hill Jessica, Hui Joseph P M, Morash Michael G, Berrue Fabrice, Ellis Lee D
Aquatic and Crop Resource Development Research Center, National Research Council of Canada , Halifax, Canada .
Zebrafish. 2018 Aug;15(4):349-360. doi: 10.1089/zeb.2017.1541. Epub 2018 Apr 10.
The Cannabis sativa plant contains numerous phytocannabinoids and terpenes with known or potential biological activity. For decades, plant breeders have been breeding the Cannabis plant to control for a desired ratio of the major cannabinoids. A high-throughput in vivo model to understand the relationship between the chemical composition of different strains and their therapeutic potential then becomes of value. Measuring changes in the behavioral patterns of zebrafish larvae is an established model with which to test the biological activity of neuroactive compounds. However, there is currently little information regarding the uptake kinetics and metabolism of compounds by larvae. In this study, we chose to compare the uptake kinetics and metabolism of Δ-tetrahydrocannabinol (THC) and cannabidiol (CBD) alone or in combination with their effects on larval behavior. We have shown that both compounds have distinct behavioral patterns and concentration response profiles. Additionally, the uptake kinetics observed for each compound appears to correlate with the change in behavior observed in the behavioral assays. When combinations of THC and CBD were tested there were shifts in both the behavioral activity and the uptake kinetics of each compound compared with when they were tested alone. Finally, the THC/CBD-derived metabolites detected in the larvae are similar to those found in mammalian systems. This study thus provides a model for further testing of additional cannabinoids and potentially plant extracts.
大麻植物含有多种具有已知或潜在生物活性的植物大麻素和萜类化合物。几十年来,植物育种者一直在培育大麻植株,以控制主要大麻素的理想比例。因此,一个用于理解不同菌株化学成分与其治疗潜力之间关系的高通量体内模型变得很有价值。测量斑马鱼幼体行为模式的变化是一种用于测试神经活性化合物生物活性的成熟模型。然而,目前关于幼体对化合物的摄取动力学和代谢的信息很少。在本研究中,我们选择比较Δ-四氢大麻酚(THC)和大麻二酚(CBD)单独或联合使用时的摄取动力学和代谢,以及它们对幼体行为的影响。我们已经表明,这两种化合物都有独特的行为模式和浓度反应曲线。此外,观察到的每种化合物的摄取动力学似乎与行为试验中观察到的行为变化相关。当测试THC和CBD的组合时,与单独测试时相比,每种化合物的行为活性和摄取动力学都发生了变化。最后,在幼体中检测到的源自THC/CBD的代谢物与在哺乳动物系统中发现的代谢物相似。因此,本研究为进一步测试其他大麻素和潜在的植物提取物提供了一个模型。