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大麻二酚可降低耐药性癫痫患者大脑皮层V层锥体神经元的突触强度和神经元放电。

Cannabidiol reduces synaptic strength and neuronal firing in layer V pyramidal neurons of the human cortex with drug-resistant epilepsy.

作者信息

Martinez-Rojas Vladimir A, Márquez Luis A, Martinez-Aguirre Christopher, Sollozo-Dupont Isabel, López Preza Félix Iván, Fuentes Mejía Monserrat, Alonso Mario, Rocha Luisa, Galván Emilio J

机构信息

Departamento de Farmacobiología, Cinvestav Sur, Mexico City, Mexico.

Dominick P. Purpura Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY, United States.

出版信息

Front Pharmacol. 2025 Jul 22;16:1627465. doi: 10.3389/fphar.2025.1627465. eCollection 2025.

Abstract

The use of cannabidiol (CBD) as an alternative pharmacological approach for the symptomatic management of epilepsy has gained attention due to its potential efficacy, particularly in drug-resistant cases of epilepsy. Although multiple studies have described that CBD reduces neuronal hyperexcitability, the mechanistic basis of CBD remains a topic of ongoing research. In this study, we provide an electrophysiological portrayal of CBD's effects on the glutamatergic transmission and intrinsic excitability of layer V pyramidal neurons of the human neocortex resected from drug-resistant epilepsy patients. The perfusion of CBD transiently depressed the field excitatory potential amplitude elicited in layer I/II and recorded in layer V without altering the paired-pulse ratio, suggesting a postsynaptic locus of action for CBD. Cortical slices perfused with 4-aminopyridine exhibited an increased number of spontaneous synaptic events that were abolished in the presence of CBD. At the cellular level, whole-cell patch-clamp recordings showed that CBD decreased the excitability of layer V pyramidal neurons, as evidenced by changes in the somatic input resistance, the membrane time constant, the hyperpolarization-induced "sag" conductance, the rheobase current needed to elicit an action potential, and the firing discharge in response to depolarizing current steps. Consistent with the last observation, CBD decreased the amplitude of the TTX-sensitive inward currents without altering the kinetics of the macroscopic outwardly directed currents. CBD washout restored the passive and active electrophysiological properties of pyramidal neurons. Collectively, these experiments demonstrate that CBD decreases the neuronal excitability of human cortical neurons from patients with drug-resistant epilepsy.

摘要

大麻二酚(CBD)作为一种用于癫痫症状管理的替代药理学方法,因其潜在疗效而受到关注,尤其是在耐药性癫痫病例中。尽管多项研究表明CBD可降低神经元的过度兴奋性,但CBD的作用机制仍是一个正在研究的课题。在本研究中,我们对CBD对从耐药性癫痫患者切除的人类新皮层V层锥体神经元的谷氨酸能传递和内在兴奋性的影响进行了电生理描述。灌注CBD可短暂降低在I/II层诱发并在V层记录到的场兴奋性电位幅度,而不改变配对脉冲比率,这表明CBD的作用位点在突触后。用4-氨基吡啶灌注的皮质切片显示自发突触事件数量增加,而在存在CBD的情况下这些事件被消除。在细胞水平上,全细胞膜片钳记录显示CBD降低了V层锥体神经元的兴奋性,这可通过体细胞输入电阻、膜时间常数、超极化诱导的“下垂”电导、引发动作电位所需的阈电流以及对去极化电流阶跃的放电反应的变化来证明。与最后一项观察结果一致,CBD降低了TTX敏感内向电流的幅度,而不改变宏观外向电流的动力学。冲洗掉CBD可恢复锥体神经元的被动和主动电生理特性。总的来说,这些实验表明CBD降低了耐药性癫痫患者人类皮质神经元的神经元兴奋性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/890e/12321821/c9d37b6fd58b/fphar-16-1627465-g001.jpg

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