Guo Y, Gao F, Wang S, Ding Y, Zhang H, Wang J, Ding M-P
Department of Neurology, Second Affiliated Hospital, School of Medicine, Zhejiang University, No. 88, Jiefang Road, Hangzhou, China 310009.
Neuroscience. 2009 Sep 15;162(4):972-9. doi: 10.1016/j.neuroscience.2009.05.041. Epub 2009 May 27.
Cerebral glucose hypometabolism is common in temporal lobe epilepsy (TLE). The temporospatial evolution of these metabolic changes during epileptogenesis remains to be determined. We measured the regional normalized cerebral metabolic rate for glucose (nCMRglc) with (18)F-fluorodeoxyglucose (FDG)-small animal positron emission tomography (microPET) in animals receiving systemic pilocarpine application. The microPET scan was performed on day 2 (early), day 7 (latent) and 42 days (chronic phase) after the initial status epilepticus. We found specific temporospatial changes in glucose utilization in rats during the course of epileptogenesis. In the early phase, the limbic structures underwent the largest decrease in glucose utilization. Most brain structures were still hypometabolic in the latent phase and recovered in the chronic phase. Conversely, the hippocampus and thalamus presented with persistent hypometabolism during epileptogenesis. The cerebellum and pons maintained normal glucose utilization during this process. We also found that severe glucose hypometabolism in the entorhinal cortex during the early phase was correlated with epileptogenesis, indicating the critical role of the entorhinal cortex in the early stages of TLE.
脑葡萄糖代谢减低在颞叶癫痫(TLE)中很常见。癫痫发生过程中这些代谢变化的时空演变仍有待确定。我们在接受全身性匹鲁卡品注射的动物中,使用(18)F-氟脱氧葡萄糖(FDG)-小动物正电子发射断层扫描(microPET)测量了局部标准化脑葡萄糖代谢率(nCMRglc)。在首次癫痫持续状态后的第2天(早期)、第7天(潜伏期)和第42天(慢性期)进行了microPET扫描。我们发现癫痫发生过程中大鼠葡萄糖利用存在特定的时空变化。在早期,边缘结构的葡萄糖利用下降最为明显。大多数脑结构在潜伏期仍代谢减低,并在慢性期恢复。相反,海马体和丘脑在癫痫发生过程中呈现持续性代谢减低。在此过程中,小脑和脑桥维持正常的葡萄糖利用。我们还发现,早期内嗅皮质严重的葡萄糖代谢减低与癫痫发生相关,表明内嗅皮质在TLE早期阶段起关键作用。