Tseng Kuei Y, Molla Hanna M
Department of Anatomy & Cell Biology, University of Illinois at Chicago - College of Medicine, Chicago, IL, USA.
Department of Psychiatry & Behavioral Neuroscience, University of Chicago, Chicago, Illinois, USA.
Mol Psychiatry. 2025 May 19. doi: 10.1038/s41380-025-03057-2.
As high-potency cannabis (with high Δ-Tetrahydrocannabinol content) becomes easily accessible and widespread, it is of extreme importance for public health that a scientific platform is used to implement practical guidelines, particularly for at-risk populations. Many reviews have been written in the past decade summarizing the impact of cannabis in the developing brain. One critical concept frequently mentioned but not discussed in detail is whether there are sensitive neurodevelopmental events driving the age-specific sensitivity to cannabis, particularly those mediated by cannabinoid type 1 receptor signaling. By integrating available data from humans and animal models, the goal of the present expert review article is to provide a mechanistic overview on how cannabis exposure during sensitive periods of neural circuit plasticity and development can result in lasting consequences. Here we used the frontal cortex as a proxy to align the trajectory of the brain cannabinoid system between humans and rodents. Both the strengths and limitations of available mechanistic studies on the effects of cannabis and cannabinoids were discussed using a developmental framework from which neural circuit adaptations during sensitive periods are considered. Such an approach is needed to align key neurodevelopmental variables through the lifespan, which in turn will provide valuable insights applicable to the human brain by defining the underpinning mechanisms of sensitive periods and how the impact of cannabis changes from childhood to adolescence, and thereafter through young adulthood.
随着高效能大麻(Δ-四氢大麻酚含量高)变得易于获取且广泛传播,利用科学平台来实施实用指南,特别是针对高危人群,对公共卫生极为重要。在过去十年中,已经有许多综述总结了大麻对发育中大脑的影响。一个经常被提及但未详细讨论的关键概念是,是否存在驱动特定年龄对大麻敏感的敏感神经发育事件,特别是那些由1型大麻素受体信号介导的事件。通过整合来自人类和动物模型的现有数据,本专家综述文章的目的是提供一个关于在神经回路可塑性和发育的敏感期接触大麻如何导致持久后果的机制概述。在这里,我们以前额叶皮质为代表来比对人类和啮齿动物大脑大麻素系统的轨迹。利用一个考虑敏感期神经回路适应性的发育框架,讨论了关于大麻和大麻素作用的现有机制研究的优势和局限性。需要这样一种方法来在整个生命周期中比对关键的神经发育变量,这反过来将通过定义敏感期的基础机制以及大麻的影响如何从儿童期到青春期,再到青年期发生变化,从而为适用于人类大脑提供有价值的见解。