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大麻素对成年神经系统行为、寿命和创伤性损伤反应的影响。

The Influence of Cannabinoids on Behaviors, Longevity, and Traumatic Injury Responses of the Adult Nervous System.

机构信息

Shiley Bioscience Center, San Diego State University, San Diego, California, USA.

Biology Department, San Diego State University, San Diego, California, USA.

出版信息

Cannabis Cannabinoid Res. 2024 Jun;9(3):e886-e896. doi: 10.1089/can.2022.0285. Epub 2023 May 9.

Abstract

The legalization of cannabis products has increased their usage in the United States. Among the ∼500 active compounds, this is especially true for cannabidiol (CBD)-based products, which are being used to treat a range of ailments. Research is ongoing regarding the safety, therapeutic potential, and molecular mechanism of cannabinoids. (fruit flies) are widely used to model a range of factors that impact neural aging, stress responses, and longevity. Adult wild-type cohorts (/+) were treated with different Δ-tetrahydrocannabinol (THC) and CBD dosages and examined for neural protective properties using established neural aging and trauma models. The therapeutic potential of each compound was assessed using circadian and locomotor behavioral assays and longevity profiles. Changes to NF-κB pathway activation were assessed by measuring expression levels of downstream targets using quantitative real-time polymerase chain reaction analysis of neural cDNAs. Flies exposed to different CBD or THC dosages showed minimal effects to sleep and circadian-based behaviors or the age-dependent decline in locomotion. The 2-week CBD (3 μM) treatment did significantly enhance longevity. Flies exposed to different CBD and THC dosages were also examined under stress conditions, using the mild traumatic brain injury (mTBI) model (10×). Pretreatment with either compound did not alter baseline expression of key inflammatory markers (NF-κB targets), but did reduce neural mRNA profiles at a key 4-h time point following mTBI exposure. Locomotor responses were also significantly improved 1 and 2 weeks following mTBI. After mTBI (10×) exposure, the 48-h mortality rate improved for CBD (3 μM)-treated flies, as were global average longevity profiles for other CBD doses tested. While not significant, THC (0.1 μM)-treated flies show a net positive impact on acute mortality and longevity profiles following mTBI (10×) exposure. This study shows that the CBD and THC dosages examined had at most a modest impact on basal neural function, while demonstrating that CBD treatments had significant neural protective properties for flies following exposure to traumatic injury.

摘要

大麻素产品的合法化增加了它们在美国的使用。在大约 500 种活性化合物中,基于大麻二酚 (CBD) 的产品尤其如此,这些产品被用于治疗一系列疾病。目前正在研究大麻素的安全性、治疗潜力和分子机制。 (果蝇)被广泛用于模拟影响神经老化、应激反应和寿命的一系列因素。用不同的 Δ-四氢大麻酚 (THC) 和 CBD 剂量处理成年野生型 群体 (/+),并使用已建立的神经老化和创伤模型检查神经保护特性。使用昼夜节律和运动行为测定法和寿命谱评估每种化合物的治疗潜力。通过测量神经 cDNA 的定量实时聚合酶链反应分析来评估 NF-κB 途径激活的变化,以测量下游靶标的表达水平。 暴露于不同 CBD 或 THC 剂量的果蝇表现出对睡眠和昼夜节律行为或运动的年龄依赖性下降的最小影响。2 周 CBD(3 μM)治疗显著延长了寿命。还在应激条件下检查了暴露于不同 CBD 和 THC 剂量的果蝇,使用轻度创伤性脑损伤 (mTBI) 模型(10×)。预处理任一化合物均未改变关键炎症标志物(NF-κB 靶标)的基线表达,但在 mTBI 暴露后 4 小时关键时间点确实降低了神经 mRNA 谱。运动反应在 mTBI 后 1 和 2 周也显著改善。暴露于 mTBI(10×)后,3 μM CBD 处理的果蝇的 48 小时死亡率提高,其他测试 CBD 剂量的总体平均寿命曲线也得到改善。虽然不显著,但 THC(0.1 μM)处理的果蝇在暴露于 mTBI(10×)后显示出对急性死亡率和寿命曲线的净积极影响。 这项研究表明,在所检查的 CBD 和 THC 剂量中,对基础神经功能的影响最大,而 CBD 处理对暴露于创伤性损伤后的果蝇具有显著的神经保护特性。

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