Department of Pharmacobiology, Center for Research and Advanced Studies, Mexico City, Mexico, USA.
Hippocampus. 2012 Jan;22(1):98-105. doi: 10.1002/hipo.20868. Epub 2010 Sep 29.
Hippocampal high frequency electrical stimulation (HFS) at 130 Hz has been proposed as a therapeutical strategy to control neurological disorders such as intractable temporal lobe epilepsy (TLE). This study was carried out to determine the effects of hippocampal HFS on the memory process and the probable involvement of amino acids. Using the autoshaping task, we found that animals receiving hippocampal HFS showed augmented short-term, but not long-term memory formation, an effect blocked by bicuculline pretreatment and associated with enhanced tissue levels of amino acids in hippocampus. In addition, microdialysis experiments revealed high extracellular levels of glutamate, aspartate, glycine, taurine, and alanine during the application of hippocampal HFS. In contrast, GABA release augmented during HFS and remained elevated for more than 1 h after the stimulation was ended. HFS had minimal effects on glutamine release. The present results suggest that HFS has an activating effect on specific amino acids in normal hippocampus that may be involved in the enhanced short-term memory formation. These data further provide experimental support for the concept that hippocampus may be a promising target for focal stimulation to treat intractable seizures in humans.
高频电刺激(HFS)在 130 Hz 已经被提议作为一种治疗策略来控制神经紊乱,如难治性颞叶癫痫(TLE)。本研究旨在确定海马高频电刺激对记忆过程的影响,以及可能涉及的氨基酸。使用自动塑形任务,我们发现接受海马高频电刺激的动物表现出增强的短期记忆形成,但没有长期记忆形成,这种效应被bicuculline 预处理阻断,并与海马组织中氨基酸水平的增强有关。此外,微透析实验显示,在海马高频电刺激期间,细胞外谷氨酸、天冬氨酸、甘氨酸、牛磺酸和丙氨酸水平升高。相反,在高频电刺激期间 GABA 释放增加,并在刺激结束后持续升高超过 1 小时。高频电刺激对谷氨酰胺释放的影响很小。本研究结果表明,高频电刺激对正常海马中的特定氨基酸具有激活作用,这可能与增强的短期记忆形成有关。这些数据进一步为海马可能成为治疗人类难治性癫痫的局灶刺激的有前途的靶点这一概念提供了实验支持。