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大麻二酚和δ9-四氢大麻酚对大鼠钴癫痫的影响。

The influence of cannabidiol and delta 9-tetrahydrocannabinol on cobalt epilepsy in rats.

作者信息

Chiu P, Olsen D M, Borys H K, Karler R, Turkanis S A

出版信息

Epilepsia. 1979 Aug;20(4):365-75. doi: 10.1111/j.1528-1157.1979.tb04816.x.

Abstract

The mechanisms of the anticonvulsant activity of cannabidiol (CBD) and the central excitation of delta 9-tetrahydrocannabinol (delta 9-THC) were investigated electrophysiologically with conscious, unrestrained cobalt epileptic rats. The well-known antiepileptics, trimethadione (TMO), ethosuximide (ESM), and phenytoin (PHT), were included as reference drugs. Direct measurements were made of spontaneously firing, epileptic potentials from a primary focus on the parietal cortex and convulsions were monitored visually. ESM and TMO decreased the frequency of focal potentials, but PHT and CBD exerted no such effect. Although CBD did not suppress the focal abnormality, it did abolish jaw and limb clonus; in contrast, delta 9-THC markedly increased the frequency of focal potentials, evoked generalized bursts of polyspikes, and produced frank convlusions. 11-OH-delta 9-THC, the major metabolite of delta 9-THC, displayed only one of the excitatory properties of the parent compound: production of bursts of polyspikes. In contrast to delta 9-THC and its 11-OH metabolite, CBD, even in very high doses, did not induce any excitatory effects or convulsions. The present study provides the first evidence that CBD exerts anticonvulsant activity against the motor manifestations of a focal epilepsy, and that the mechanism of the effect may involve a depression of seizure generation or spread in the CNS.

摘要

采用清醒、自由活动的钴致痫大鼠,通过电生理学方法研究了大麻二酚(CBD)的抗惊厥活性机制以及Δ9-四氢大麻酚(Δ9-THC)的中枢兴奋作用。将著名的抗癫痫药物三甲双酮(TMO)、乙琥胺(ESM)和苯妥英(PHT)作为参比药物。直接测量顶叶皮质原发性病灶的自发放电、癫痫电位,并通过肉眼监测惊厥情况。ESM和TMO降低了病灶电位的频率,但PHT和CBD没有这种作用。虽然CBD没有抑制病灶异常,但它确实消除了下颌和肢体阵挛;相反,Δ9-THC显著增加了病灶电位的频率,诱发了多棘波的全身性爆发,并引发了明显的惊厥。Δ9-THC的主要代谢产物11-OH-Δ9-THC仅表现出母体化合物的一种兴奋特性:产生多棘波爆发。与Δ9-THC及其11-OH代谢产物相反,即使是高剂量的CBD也不会诱发任何兴奋作用或惊厥。本研究首次证明,CBD对局灶性癫痫的运动表现具有抗惊厥活性,其作用机制可能涉及抑制中枢神经系统中癫痫发作的产生或传播。

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