Zhang Shi-Hong, Sun Hong-Liu, Fang Qi, Zhong Kai, Wu Deng-Chang, Wang Shuang, Chen Zhong
Institute of Neuroscience, School of Medicine, Zhejiang University, Hangzhou 310058, China.
Neurosci Lett. 2009 May 8;455(1):51-5. doi: 10.1016/j.neulet.2009.03.041. Epub 2009 Mar 17.
Neuromodulation with low-frequency stimulation (LFS), of brain structures other than epileptic foci, is effective in inhibiting seizures in animals and patients, whereas selection of targets for LFS requires further investigation. The hippocampal CA(3) subfield is a key site in the circuit of seizure generation and propagation. The present study aimed to illustrate the effects of LFS of the CA(3) region on seizure acquisition and generalization in the rat amygdaloid kindling model of epilepsy. We found that LFS (monophasic square-wave pulses, 1Hz, 100 microA and 0.1ms per pulse) of the CA(3) region significantly depressed the duration of epileptiform activity and seizure acquisition by retarding progression from focal to generalized seizures (GS). Moreover, GS duration was significantly shortened and its latency was significantly increased in the LFS group demonstrating an inhibition of the severity of GS and the spread of epileptiform activity. Furthermore, LFS prevented the decline of afterdischarge threshold (ADT) and elevated GS threshold indicating an inhibition of susceptibility to GS. These results suggest that LFS of the hippocampal CA(3) subfield is anti-epileptogenic and anti-ictogenic. Neuromodulation of CA(3) activity using LFS may be an alternative potential approach for temporal lobe epilepsy treatment.
对癫痫病灶以外的脑结构进行低频刺激(LFS)神经调节,在抑制动物和患者癫痫发作方面是有效的,而LFS靶点的选择仍需进一步研究。海马CA(3)亚区是癫痫发作产生和传播回路中的关键部位。本研究旨在阐明CA(3)区LFS对大鼠杏仁核点燃癫痫模型中癫痫发作获得和泛化的影响。我们发现,CA(3)区的LFS(单相方波脉冲,1Hz,100微安,每个脉冲0.1毫秒)通过延缓从局灶性癫痫发作到全身性癫痫发作(GS)的进展,显著缩短了癫痫样活动的持续时间和癫痫发作的获得。此外,LFS组的GS持续时间显著缩短,其潜伏期显著延长,表明对GS严重程度和癫痫样活动传播有抑制作用。此外,LFS可防止放电后阈值(ADT)下降,并提高GS阈值,表明对GS易感性有抑制作用。这些结果表明,海马CA(3)亚区的LFS具有抗癫痫发生和抗癫痫发作作用。利用LFS对CA(3)活动进行神经调节可能是颞叶癫痫治疗的一种潜在替代方法。