Department of Biochemistry, Federal University of Rio Grande do Sul, Porto Alegre, RS 90035, Brazil.
Exp Neurol. 2010 Feb;221(2):296-306. doi: 10.1016/j.expneurol.2009.11.013. Epub 2009 Dec 4.
Quinolinic acid (QA) is an N-methyl-D-aspartate receptor agonist that also promotes glutamate release and inhibits glutamate uptake by astrocytes. QA is used in experimental models of seizures studying the effects of overstimulation of the glutamatergic system. The guanine-based purines (GBPs), including the nucleoside guanosine, have been shown to modulate the glutamatergic system when administered extracellularly. GBPs were shown to inhibit the binding of glutamate and analogs, to be neuroprotective under excitotoxic conditions, as well as anticonvulsant against seizures induced by glutamatergic agents, including QA-induced seizure. In this work, we studied the electrophysiological effects of guanosine against QA-induced epileptiform activity in rats at the macroscopic cortical level, as inferred by electroencephalogram (EEG) signals recorded at the epidural surface. We found that QA disrupts a prominent basal theta (4-10 Hz) activity during peri-ictal periods and also promotes a relative increase in gamma (20-50 Hz) oscillations. Guanosine, when successfully preventing seizures, counteracted both these spectral changes. MK-801, an NMDA-antagonist used as positive control, was also able counteract the decrease in theta power; however, we observed an increase in the power of gamma oscillations in rats concurrently treated with MK-801 and QA. Given the distinct spectral signatures, these results suggest that guanosine and MK-801 prevent QA-induced seizures by different network mechanisms.
喹啉酸 (QA) 是一种 N-甲基-D-天冬氨酸受体激动剂,它还能促进谷氨酸的释放并抑制星形胶质细胞摄取谷氨酸。QA 被用于研究谷氨酸能系统过度刺激对癫痫发作的影响的实验模型中。嘌呤类碱基 (GBPs),包括核苷鸟苷,已被证明在外周给予时可以调节谷氨酸能系统。GBPs 被证明可以抑制谷氨酸和类似物的结合,在兴奋毒性条件下具有神经保护作用,并且可以对抗包括 QA 诱导的癫痫发作在内的谷氨酸能药物引起的癫痫发作。在这项工作中,我们研究了鸟苷在宏观皮质水平上对 QA 诱导的大鼠癫痫样活动的电生理效应,这是通过记录硬膜外表面的脑电图 (EEG) 信号推断出来的。我们发现 QA 在发作间期破坏了明显的基础θ(4-10 Hz)活动,并且还促进了γ(20-50 Hz)振荡的相对增加。当成功预防癫痫发作时,鸟苷拮抗了这两种频谱变化。MK-801,一种用作阳性对照的 NMDA 拮抗剂,也能够抵消θ功率的降低;然而,我们观察到同时用 MK-801 和 QA 治疗的大鼠γ振荡的功率增加。鉴于其独特的频谱特征,这些结果表明,鸟苷和 MK-801 通过不同的网络机制预防 QA 诱导的癫痫发作。