Turkanis S A, Karler R
Pharmacol Biochem Behav. 1986 Jul;25(1):89-94. doi: 10.1016/0091-3057(86)90235-2.
Intracellular recording techniques were used on spinal motoneurons in the cat in order to define the synaptic pharmacology of cannabidiol (CBD). The cannabinoid produces only depression of electrophysiological responses of the motoneurons: For instance, the drug decreases the amplitude of excitatory postsynaptic potentials (EPSPs); this reduction does not appear to be the result of a change in the afferent input. In addition, CBD raises the firing threshold and decreases the amplitude of motoneuron action potentials; the effects on action potentials are related to changes in postsynaptic membrane conductances, probably involving at least sodium conductance. The spinal motoneuron effects provide potential electrophysiological mechanisms for CBD's central depressant actions.
为了确定大麻二酚(CBD)的突触药理学,对猫的脊髓运动神经元采用了细胞内记录技术。大麻素仅对运动神经元的电生理反应产生抑制作用:例如,该药物会降低兴奋性突触后电位(EPSP)的幅度;这种降低似乎不是传入输入变化的结果。此外,CBD会提高放电阈值并降低运动神经元动作电位的幅度;对动作电位的影响与突触后膜电导的变化有关,可能至少涉及钠电导。脊髓运动神经元效应为CBD的中枢抑制作用提供了潜在的电生理机制。