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阿尔茨海默病APPPS1模型中CA1锥体神经元兴奋性特性的年龄依赖性变化分析

Analysis of Age-Dependent Alterations in Excitability Properties of CA1 Pyramidal Neurons in an APPPS1 Model of Alzheimer's Disease.

作者信息

Vitale Paola, Salgueiro-Pereira Ana Rita, Lupascu Carmen Alina, Willem Michael, Migliore Rosanna, Migliore Michele, Marie Hélène

机构信息

Institute of Biophysics, National Research Council, Palermo, Italy.

Université Côte d'Azur, CNRS, IPMC, Valbonne, France.

出版信息

Front Aging Neurosci. 2021 Jun 11;13:668948. doi: 10.3389/fnagi.2021.668948. eCollection 2021.

Abstract

Age-dependent accumulation of amyloid-β, provoking increasing brain amyloidopathy, triggers abnormal patterns of neuron activity and circuit synchronization in Alzheimer's disease (AD) as observed in human AD patients and AD mouse models. Recent studies on AD mouse models, mimicking this age-dependent amyloidopathy, identified alterations in CA1 neuron excitability. However, these models generally also overexpress mutated amyloid precursor protein (APP) and presenilin 1 (PS1) and there is a lack of a clear correlation of neuronal excitability alterations with progressive amyloidopathy. The active development of computational models of AD points out the need of collecting such experimental data to build a reliable disease model exhibiting AD-like disease progression. We therefore used the feature extraction tool of the Human Brain Project (HBP) Brain Simulation Platform to systematically analyze the excitability profile of CA1 pyramidal neuron in the APPPS1 mouse model. We identified specific features of neuron excitability that best correlate either with over-expression of mutated APP and PS1 or increasing Aβ amyloidopathy. Notably, we report strong alterations in membrane time constant and action potential width and weak alterations in firing behavior. Also, using a CA1 pyramidal neuron model, we evidence amyloidopathy-dependent alterations in . Finally, cluster analysis of these recordings showed that we could reliably assign a trace to its correct group, opening the door to a more refined, less variable analysis of AD-affected neurons. This inter-disciplinary analysis, bringing together experimentalists and modelers, helps to further unravel the neuronal mechanisms most affected by AD and to build a biologically plausible computational model of the AD brain.

摘要

在人类阿尔茨海默病(AD)患者和AD小鼠模型中观察到,淀粉样β蛋白随年龄积累,引发越来越严重的脑淀粉样病变,进而触发AD中异常的神经元活动模式和回路同步。最近对模拟这种年龄依赖性淀粉样病变的AD小鼠模型的研究,确定了CA1神经元兴奋性的改变。然而,这些模型通常也过度表达突变的淀粉样前体蛋白(APP)和早老素1(PS1),并且神经元兴奋性改变与进行性淀粉样病变之间缺乏明确的相关性。AD计算模型的积极发展指出,需要收集此类实验数据以建立一个可靠的、呈现AD样疾病进展的疾病模型。因此,我们使用人类大脑计划(HBP)大脑模拟平台的特征提取工具,系统地分析了APPPS1小鼠模型中CA1锥体神经元的兴奋性特征。我们确定了与突变APP和PS1的过表达或Aβ淀粉样病变增加最相关的神经元兴奋性的特定特征。值得注意的是,我们报告了膜时间常数和动作电位宽度的强烈改变以及放电行为的微弱改变。此外,使用CA1锥体神经元模型,我们证明了淀粉样病变依赖性的改变。最后,对这些记录的聚类分析表明,我们可以可靠地将一条轨迹归到其正确的组中,为对受AD影响的神经元进行更精细、变化更小的分析打开了大门。这种跨学科分析将实验人员和建模人员聚集在一起,有助于进一步揭示受AD影响最大的神经元机制,并建立一个生物学上合理的AD大脑计算模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de30/8230571/294e8e8d950a/fnagi-13-668948-g001.jpg

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