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丘脑前核在戊四氮全身性癫痫发作中的介导作用。

Anterior thalamic mediation of generalized pentylenetetrazol seizures.

作者信息

Mirski M A, Ferrendelli J A

出版信息

Brain Res. 1986 Dec 10;399(2):212-23. doi: 10.1016/0006-8993(86)91511-8.

Abstract

The effects of microinjection of various neuroactive compounds into the anterior thalamic nucleus (AN) and other selected subcortical regions of guinea pig brain on the expression of pentylenetetrazol (PTZ)-induced behavioral and electrical seizure activity were examined. Excitatory agents, kainic acid (KA), bicuculline (BIC) or PTZ, injected into the AN or other thalamic nuclei, striatum, but not the mammillary bodies (MB), facilitated the EEG convulsant action of systemically administered PTZ. Injection of muscimol into the AN protected against the expression of PTZ-induced repetitive high-voltage EEG seizure discharges and inhibited the facilitatory effects of subcortically applied KA or BIC. Injection of muscimol into the AN was also able to terminate established ongoing seizure discharges. Unilateral application of muscimol to the AN did not prevent the repetitive hypersynchronous EEG discharges following systemic PTZ but did result in the delay in the onset of cortical hypersynchrony in the ipsilateral hemisphere. Muscimol injections into other thalamic nuclei, MB, cortex, striatum or directly into the CSF space had no anticonvulsant effect, however. Microinjection of gamma-vinyl-gamma-aminobutyric acid, a selective GABA transaminase inhibitor, resulted in protection from the behavioral convulsant action and lethal effects of PTZ when administered into the thalamus, especially the AN, but not when injected into the striatum or CSF. These data demonstrate that the AN is an important subcortical nucleus for the mediation of both cortical EEG synchrony and behavioral seizure expression induced by PTZ. In light of previous results establishing a role for the brainstem and diencephalon in PTZ seizure expression, the AN may serve, in part, as a gating mechanism for the propagation of paroxysmal activity between subcortical areas and the cerebral cortex.

摘要

研究了向豚鼠脑的前丘脑核(AN)和其他选定的皮质下区域微量注射各种神经活性化合物对戊四氮(PTZ)诱导的行为和电惊厥活动表达的影响。向AN或其他丘脑核、纹状体而非乳头体(MB)注射兴奋性药物,如 kainic 酸(KA)、荷包牡丹碱(BIC)或PTZ,可促进全身给药PTZ的脑电图惊厥作用。向AN注射蝇蕈醇可预防PTZ诱导的重复性高电压脑电图癫痫放电的表达,并抑制皮质下应用KA或BIC的促进作用。向AN注射蝇蕈醇也能够终止已确立的正在进行的癫痫放电。单侧向AN应用蝇蕈醇并不能预防全身PTZ后的重复性超同步脑电图放电,但确实导致同侧半球皮质超同步化发作的延迟。然而,向其他丘脑核、MB、皮质、纹状体或直接向脑脊液间隙注射蝇蕈醇没有抗惊厥作用。向丘脑,特别是AN注射选择性GABA转氨酶抑制剂γ-乙烯基-γ-氨基丁酸,可预防PTZ的行为惊厥作用和致死效应,但注射到纹状体或脑脊液中则无此作用。这些数据表明,AN是介导PTZ诱导的皮质脑电图同步化和行为癫痫发作表达的重要皮质下核。鉴于先前的结果表明脑干和间脑在PTZ癫痫发作表达中起作用,AN可能部分作为皮质下区域和大脑皮质之间阵发性活动传播的门控机制。

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