Medical University of Lodz, ul.Mazowiecka 6/8, 92-215, Lodz, Poland.
Medical University of Lodz, ul.Mazowiecka 6/8, 92-215, Lodz, Poland.
Brain Res Bull. 2018 Sep;142:33-46. doi: 10.1016/j.brainresbull.2018.06.012. Epub 2018 Jun 25.
The endocannabinoid (eCB) signaling system is one of the most extensive of the mammalian brain. Despite the involvement of only few specific ligands and receptors, the system encompasses a vast diversity of triggered mechanisms and driven effects. It mediates a wide range of phenomena, including the regulation of transmitter release, neural excitability, synaptic plasticity, impulse spread, long-term neuronal potentiation, neurogenesis, cell death, lineage segregation, cell migration, inflammation, oxidative stress, nociception and the sleep cycle. It is also known to be involved in the processes of learning and memory formation. This extensive scope of action is attained by combining numerous variables. In a properly functioning brain, the correlations of these variables are kept in a strictly controlled balance; however, this balance is disrupted in many pathological conditions. However, while this balance is known to be disrupted by drugs in the case of addicts, the stimuli and mechanisms influencing the neurodegenerating brain remain elusive. This review examines the multiple factors and phenomena affecting the eCB signaling system in the brain. It evaluates techniques of controlling the eCB system to identify the obstacles in their applications and highlights the crucial interdependent variables that may influence biomedical research outcomes.
内源性大麻素(eCB)信号系统是哺乳动物大脑中最广泛的系统之一。尽管只涉及少数几种特定的配体和受体,但该系统包含了广泛的触发机制和驱动效应。它介导了广泛的现象,包括递质释放、神经兴奋性、突触可塑性、冲动传播、长期神经元增强、神经发生、细胞死亡、谱系分离、细胞迁移、炎症、氧化应激、痛觉和睡眠周期的调节。它也被认为参与了学习和记忆形成的过程。这种广泛的作用范围是通过结合许多变量来实现的。在正常运作的大脑中,这些变量的相关性保持在严格控制的平衡中;然而,在许多病理条件下,这种平衡被打破了。然而,虽然这种平衡被认为在成瘾者中被药物打破,但影响神经退行性大脑的刺激和机制仍然难以捉摸。这篇综述检查了影响大脑中 eCB 信号系统的多种因素和现象。它评估了控制 eCB 系统的技术,以确定其应用中的障碍,并强调了可能影响生物医学研究结果的关键相互依赖变量。