摘要
背景:已经表明,在笼中探索(活动状态)期间,C57野生型(WT)小鼠的θ(6-10Hz)和δ(1-6Hz)正在进行的脑电图(EEG)节律显示皮质觉醒的变化唤醒安静的行为(被动的条件; IMI PharmaCog项目,www.pharmacog.eu)。 目的:本研究的目的是测试老年PDAPP模型小鼠在印第安纳州V717F突变(他们显示异常神经传递,认知缺陷和脑积累Aβ1-42)阿尔茨海默病(AD)的这些EEG节律是否异常。 方法:15只PDAPP和23只WT C57雄性小鼠(平均年龄分别为22.8个月+0.4和0.3个标准差),采用额顶双极通道记录正在进行的EEG节律。计算脑电绝对功率(密度)。频率和振幅的个人三角洲和theta频率(IDF和ITF)高峰被认为是在被动和积极状态的觉醒。 结果:与WT组相比,PDAPP组在被动状态下表现出较高的IDF发生频率,在活动状态下ITF发生频率较低。此外,WT,但不是PDAPP组在顶额脑电图中显示出显着变化电源(IDF,ITF)处于被动状态。 结论:PDAPP小鼠表现为活动状态下的大脑唤醒变化较小,如通过额顶脑电图节律所显示的。 未来的研究将不得不交叉验证大型动物组目前的结果,阐明该效应的神经生理学基础,以及测试抗AD淀粉样变性的疾病修饰药物是否使PDAPP小鼠中的那些蛋白酶EEG生物标志物正常化
关键词: 脑电图(EEG),阿尔茨海默病(AD),PDAPP小鼠,清醒活跃状态,清醒被动状态,皮质唤醒。
Current Alzheimer Research
Title:Ongoing Electroencephalographic Activity Associated with Cortical Arousal in Transgenic PDAPP Mice (hAPP V717F)
Volume: 15 Issue: 3
关键词: 脑电图(EEG),阿尔茨海默病(AD),PDAPP小鼠,清醒活跃状态,清醒被动状态,皮质唤醒。
摘要: Background: It has been shown that theta (6-10 Hz) and delta (1-6 Hz) ongoing electroencephalographic (EEG) rhythms revealed variations in the cortical arousal in C57 Wild Type (WT) mice during cage exploration (active condition) compared to awake quiet behavior (passive condition; IMI PharmaCog project, www.pharmacog.eu).
Objective: The objective was to test if these EEG rhythms might be abnormal in old PDAPP mice modeling Alzheimer's disease (AD) with a hAPP Indiana V717F mutation (They show abnormal neural transmission, cognitive deficits, and brain accumulation of Aβ1-42).
Methods: Ongoing EEG rhythms were recorded by a frontoparietal bipolar channel in 15 PDAPP and 23 WT C57 male mice (mean age of 22.8 months ±0.4 and 0.3 standard error, respectively). EEG absolute power (density) was calculated. Frequency and amplitude of individual delta and theta frequency (IDF and ITF) peaks were considered during passive and active states in the wakefulness.
Results: Compared with the WT group, the PDAPP group showed higher frequency of the IDF during the passive condition and lower frequency of the ITF during the active state. Furthermore, the WT but not PDAPP group showed significant changes in the frontoparietal EEG power (IDF, ITF) during active over passive state.
Conclusion: PDAPP mice were characterized by less changes in the brain arousal during an active state as revealed by frontoparietal EEG rhythms. Future studies will have to cross-validate the present results on large animal groups, clarify the neurophysiological underpinning of the effect, and test if the disease modifying drugs against AD amyloidosis normalize those candiate EEG biomarkers in PDAPP mice
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Cite this article as:
Ongoing Electroencephalographic Activity Associated with Cortical Arousal in Transgenic PDAPP Mice (hAPP V717F), Current Alzheimer Research 2018; 15 (3) . https://dx.doi.org/10.2174/1567205014666170704113405
DOI https://dx.doi.org/10.2174/1567205014666170704113405 |
Print ISSN 1567-2050 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5828 |
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