外侧内嗅皮层是早期阿尔茨海默病状态中局部和全局功能障碍的中心

F. Mandino, Ling Yun Yeow, Renzhe Bi, Lee Sejin, H. Bae, S. Baek, C. Lee, H. Mohammad, C. Horien, C. L. Teoh, Jasinda H. Lee, Mitchell KP Lai, Sangyong Jung, Yu Fu, M. Olivo, J. Gigg, J. Grandjean
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引用次数: 3

摘要

功能网络活动的改变是阿尔茨海默病(AD)的最早标志之一,在淀粉样变和牛头病之前检测到。更好地了解这种网络改变的神经元基础可以为阿尔茨海默病的进展提供机制上的见解。在这里,我们检查了一个小鼠模型(3xTgAD小鼠),再现了早期AD阶段。我们发现腹侧网络(包括内嗅皮层)的静息功能连通性丧失与人类报道的牛头病的空间分布一致。出乎意料的是,与休息时连通性下降相反,3xTgAD小鼠在光遗传学激活内嗅皮层后,在几个投射区域内显示出增强的fMRI信号。我们通过证明腹侧神经网络内的神经元易化和投射目标的突触高兴奋性证实了这一发现。因此,3xTgAD小鼠显示出两种低连接:静息型和高反应性:活跃型表型。受影响区域之间的这种强同伦性支持了这种病理生理模型在tau相关的人类早期ad缺陷中的可翻译性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The lateral entorhinal cortex is a hub for local and global dysfunction in early Alzheimer’s disease states
Functional network activity alterations are one of the earliest hallmarks of Alzheimer’s disease (AD), detected prior to amyloidosis and tauopathy. Better understanding the neuronal underpinnings of such network alterations could offer mechanistic insight into AD progression. Here, we examined a mouse model (3xTgAD mice) recapitulating this early AD stage. We found resting functional connectivity loss within ventral networks, including the entorhinal cortex, aligning with the spatial distribution of tauopathy reported in humans. Unexpectedly, in contrast to decreased connectivity at rest, 3xTgAD mice show enhanced fMRI signal within several projection areas following optogenetic activation of the entorhinal cortex. We corroborate this finding by demonstrating neuronal facilitation within ventral networks and synaptic hyperexcitability in projection targets. 3xTgAD mice, thus, reveal a dichotomic hypo-connected:resting versus hyper-responsive:active phenotype. This strong homotopy between the areas affected supports the translatability of this pathophysiological model to tau-related, early-AD deficits in humans.
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