首页> 美国卫生研究院文献>eNeuro >Novel Quantitative Analyses of Spontaneous Synaptic Events in Cortical Pyramidal Cells Reveal Subtle Parvalbumin-Expressing Interneuron Dysfunction in a Knock-In Mouse Model of Alzheimer’s Disease
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Novel Quantitative Analyses of Spontaneous Synaptic Events in Cortical Pyramidal Cells Reveal Subtle Parvalbumin-Expressing Interneuron Dysfunction in a Knock-In Mouse Model of Alzheimer’s Disease

机译:皮层锥体细胞自发性突触事件的新型定量分析揭示了阿尔茨海默氏病敲入小鼠模型中表达细小白蛋白表达的中间神经元功能异常

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摘要

Alzheimer’s disease (AD) is a neurodegenerative disorder that has become a compelling global public health concern. Besides pathological hallmarks such as extracellular amyloid plaques, intracellular neurofibrillary tangles (NFTs), and loss of neurons and synapses, clinical reports have shown that epileptiform activity, even seizures, can occur early in the disease. Aberrant synaptic and network activities as well as epileptiform discharges have also been observed in various mouse models of AD. The new AppNL-F mouse model is generated by a gene knock-in approach and there are limited studies on basic synaptic properties in AppNL-F mice. Therefore, we applied quantitative methods to analyze spontaneous excitatory and inhibitory synaptic events in parietal cortex layer 2/3 pyramidal cells. First, by an objective amplitude distribution analysis, we found decreased amplitudes of spontaneous IPSCs (sIPSCs) in aged AppNL-F mice caused by a reduction in the amplitudes of the large sIPSCs with fast rates of rise, consistent with deficits in the function of parvalbumin-expressing interneurons (PV INs). Second, we calculated the burstiness and memory in a series of successive synaptic events. Lastly, by using a novel approach to determine the excitation-to-inhibition (E/I) ratio, we found no changes in the AppNL-F mice, indicating that homeostatic mechanisms may have maintained the overall balance of excitation and inhibition in spite of a mildly impaired PV IN function.
机译:阿尔茨海默氏病(AD)是一种神经退行性疾病,已引起全球公众的关注。除了诸如细胞外淀粉样斑块,细胞内神经原纤维缠结(NFT)以及神经元和突触丧失等病理特征外,临床报告还显示,癫痫样活动,甚至癫痫发作都可以在疾病的早期发生。在各种AD小鼠模型中也观察到异常的突触和网络活动以及癫痫样放电。新的App NL-F 小鼠模型是通过基因敲入方法生成的,对App NL-F 小鼠的基本突触特性的研究很少。因此,我们应用定量方法来分析顶叶皮质层2/3锥体细胞中的自发性兴奋性和抑制性突触事件。首先,通过客观的幅度分布分析,我们发现年龄较大的App NL-F 小鼠自发IPSC(sIPSCs)的幅度减小是由于大型sIPSC幅度的减小并具有快速的上升速度所致,与表达小白蛋白的中间神经元(PV INs)功能缺陷一致。其次,我们计算了一系列连续突触事件的爆发性和记忆力。最后,通过使用一种新颖的方法来确定激发抑制比(E / I),我们发现App NL-F 小鼠没有变化,这表明稳态机制可能维持了整体尽管PV IN功能轻度受损,但在激发和抑制之间保持平衡。

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