Brivaracetam, but not ethosuximide, reverses memory impairments in an Alzheimer’s disease mouse model

乙磺酰亚胺 转基因小鼠 转基因 记忆障碍 神经科学 淀粉样前体蛋白 药理学 长时程增强 癫痫 医学 阿尔茨海默病 抗惊厥药 心理学 疾病 生物 认知 病理 受体 内科学 生物化学 基因
作者
Haakon B. Nygaard,A Kaufman,Tomoko Sekine-Konno,Linda Huh,Hilary Going,Susan C. Feldman,Mikhail A. Kostylev,Stephen M. Strittmatter
出处
期刊:Alzheimer's Research & Therapy [BioMed Central]
卷期号:7 (1) 被引量:73
标识
DOI:10.1186/s13195-015-0110-9
摘要

Recent studies have shown that several strains of transgenic Alzheimer's disease (AD) mice overexpressing the amyloid precursor protein (APP) have cortical hyperexcitability, and their results have suggested that this aberrant network activity may be a mechanism by which amyloid-β (Aβ) causes more widespread neuronal dysfunction. Specific anticonvulsant therapy reverses memory impairments in various transgenic mouse strains, but it is not known whether reduction of epileptiform activity might serve as a surrogate marker of drug efficacy for memory improvement in AD mouse models.Transgenic AD mice (APP/PS1 and 3xTg-AD) were chronically implanted with dural electroencephalography electrodes, and epileptiform activity was correlated with spatial memory function and transgene-specific pathology. The antiepileptic drugs ethosuximide and brivaracetam were tested for their ability to suppress epileptiform activity and to reverse memory impairments and synapse loss in APP/PS1 mice.We report that in two transgenic mouse models of AD (APP/PS1 and 3xTg-AD), the presence of spike-wave discharges (SWDs) correlated with impairments in spatial memory. Both ethosuximide and brivaracetam reduce mouse SWDs, but only brivaracetam reverses memory impairments in APP/PS1 mice.Our data confirm an intriguing therapeutic role of anticonvulsant drugs targeting synaptic vesicle protein 2A across AD mouse models. Chronic ethosuximide dosing did not reverse spatial memory impairments in APP/PS1 mice, despite reduction of SWDs. Our data indicate that SWDs are not a reliable surrogate marker of appropriate target engagement for reversal of memory dysfunction in APP/PS1 mice.

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