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首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >Changes in glucose metabolism and metabolites during the epileptogenic process in the lithium-pilocarpine model of epilepsy
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Changes in glucose metabolism and metabolites during the epileptogenic process in the lithium-pilocarpine model of epilepsy

机译:锂-毛果芸香碱癫痫模型中癫痫发生过程中葡萄糖代谢和代谢产物的变化

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Purpose: The metabolic and biochemical changes that occur during epileptogenesis remain to be determined. 18F-Fluorodeoxyglucose positron emission tomography (FDG-PET) and proton magnetic resonance spectroscopy ( 1H MRS) are noninvasive techniques that provide indirect information on ongoing pathologic changes. We, therefore, utilized these methods to assess changes in glucose metabolism and metabolites in the rat lithium-pilocarpine model of epilepsy as markers of epileptogenesis from baseline to chronic spontaneous recurrent seizures (SRS). Methods: PET and MRS were performed at baseline, and during the acute, subacute, silent, and chronic periods after lithium-pilocarpine induced status epilepticus (SE). Sequential changes in glucose metabolism on 18F-FDG PET using SPM2 and the ratios of percent injected dose per gram (%ID)/g of regions of interest (ROIs) in the bilateral amygdala, hippocampus, basal ganglia with the thalamus, cortex, and hypothalamus normalized to the pons were determined. Voxels of interest (VOIs) on 1H MRS were obtained at the right hippocampus and the basal ganglia. NAA/Cr levels and Cho/Cr at various time points were compared to baseline values. Key Findings: Of 81 male Sprague-Dawley rats, 30 progressed to SRS. 18F-FDG PET showed widespread global hypometabolism during the acute period, returning to baseline level during the subacute period. Glucose metabolism, however, declined in part of the hippocampus during the silent period, with the hypometabolic area progressively expanding to the entire limbic area during the chronic period. 1H MRS showed that the NAA/Cr levels in the hippocampus and basal ganglia were reduced during the acute period and were not restored subsequently from the subacute to the chronic period without any significant change in the Cho/Cr ratio throughout the entire experiment. Significance: Serial metabolic and biochemical changes in the lithium-pilocarpine model of epilepsy indirectly represent the process of human epileptogenesis. Following initial irreversible neural damage by SE, global glucose metabolism transiently recovered during the subacute period without neuronal recovery. Progressive glucose hypometabolism in the limbic area during the silent and chronic periods may reflect the important role of the hippocampus in the formation of ongoing epileptic network during epileptogenesis.
机译:目的:在癫痫发生过程中发生的代谢和生化变化尚待确定。 18F氟脱氧葡萄糖正电子发射断层扫描(FDG-PET)和质子磁共振波谱(1H MRS)是非侵入性技术,可提供有关正在进行的病理变化的间接信息。因此,我们利用这些方法评估了大鼠锂-毛果芸香碱癫痫模型中葡萄糖代谢和代谢产物的变化,以此作为从基线到慢性自发性癫痫发作(SRS)癫痫发生的标志。方法:PET和MRS在基线,在锂-毛果芸香碱诱发癫痫持续状态(SE)后的急性,亚急性,沉默和慢性期间进行。使用SPM2在18F-FDG PET上进行的葡萄糖代谢的顺序变化以及双侧杏仁核,海马体,丘脑,皮质和基底节的神经节的每克注射剂量百分比(%ID)/ g感兴趣区域(ROIs)的比率确定下丘脑标准化为pons。在右侧海马和基底神经节获得了有关1H MRS的感兴趣体素(VOI)。将不同时间点的NAA / Cr水平和Cho / Cr与基线值进行比较。主要发现:在81只Sprague-Dawley雄性大鼠中,有30只进展为SRS。 18F-FDG PET在急性期显示出广泛的全球代谢不足,在亚急性期恢复到基线水平。然而,在静默期,部分海马的葡萄糖代谢下降,在慢性期,低代谢区逐渐扩展到整个边缘区。 1H MRS显示,急性期海马和基底神经节中的NAA / Cr水平降低,随后从亚急性到慢性期未恢复,整个实验中Cho / Cr比率没有任何显着变化。意义:锂-毛果芸香碱癫痫模型中的系列代谢和生化变化间接代表了人类癫痫发生的过程。在SE最初引起不可逆的神经损伤后,亚急性期间全局葡萄糖代谢暂时恢复,而无神经元恢复。在静默和慢性期间,边缘区的进行性葡萄糖低代谢可能反映了海马在癫痫发生过程中在持续的癫痫网络形成中的重要作用。

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