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卡马西平和N6-L-苯异丙基腺苷对家兔的抗惊厥活性。与中枢神经系统中腺苷受体的关系。

Anticonvulsant activity of carbamazepine and N6-L-phenylisopropyladenosine in rabbits. Relationship to adenosine receptors in central nervous system.

作者信息

Popoli P, Benedetti M, Scotti de Carolis A

机构信息

Laboratorio di Farmacologia, Istituto Superiore di Sanità, Roma, Italy.

出版信息

Pharmacol Biochem Behav. 1988 Mar;29(3):533-9. doi: 10.1016/0091-3057(88)90016-0.

Abstract

The present work deals with an EEG and behavioral study on the effects of carbamazepine (CBZ) and N6-L-phenylisopropyladenosine (L-PIA) against the convulsions due to caffeine and pentylenetetrazole (PTZ) in rabbits. Pretreatment with L-PIA (1, 3 and 4 mg/kg) caused a dose-related inhibition of the motor convulsions and the EEG "grand mal" ictal seizure induced by caffeine (75 mg/kg IV). On the contrary, L-PIA given at the high dose of 5 mg/kg IV partially inhibited the EEG and motor seizures elicited by PTZ (20 mg/kg IV). CBZ completely antagonized the EEG and motor convulsions induced by caffeine, while exerted only a protective action towards the EEG and motor convulsions due to PTZ. The administration of an ineffective dose of CBZ (5 mg/kg IV) was able to enhance the protective action of L-PIA towards caffeine-induced convulsions. This synergistic action between CBZ and L-PIA is also present towards the spike-and-wave complexes elicited by PTZ (10 mg/kg). These results confirm that the purinergic system plays an important role in the regulation of the CNS excitability. They suggest therefore, that the anticonvulsant properties of CBZ may be at least partially explained by an influence of this drug on the purinergic system.

摘要

本研究探讨了卡马西平(CBZ)和N6-L-苯基异丙基腺苷(L-PIA)对家兔咖啡因和戊四氮(PTZ)所致惊厥的脑电图及行为学影响。L-PIA(1、3和4mg/kg)预处理对咖啡因(75mg/kg静脉注射)诱发的运动性惊厥和脑电图“大发作”发作呈剂量依赖性抑制。相反,静脉注射高剂量5mg/kg的L-PIA可部分抑制PTZ(20mg/kg静脉注射)诱发的脑电图和运动性惊厥。CBZ可完全拮抗咖啡因诱发的脑电图和运动性惊厥,而对PTZ所致的脑电图和运动性惊厥仅发挥保护作用。给予无效剂量的CBZ(5mg/kg静脉注射)可增强L-PIA对咖啡因诱发惊厥的保护作用。CBZ与L-PIA之间的这种协同作用对PTZ(10mg/kg)诱发的棘慢复合波也存在。这些结果证实嘌呤能系统在调节中枢神经系统兴奋性中起重要作用。因此提示,CBZ的抗惊厥特性可能至少部分是由于该药物对嘌呤能系统的影响所致。

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