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首页> 外文期刊>Nature neuroscience >Orchestrated experience-driven Arc responses are disrupted in a mouse model of Alzheimer's disease
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Orchestrated experience-driven Arc responses are disrupted in a mouse model of Alzheimer's disease

机译:阿尔茨海默氏病小鼠模型中由经验驱动的精心策划的电弧响应被破坏

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摘要

Experience-induced expression of immediate-early gene Arc (also known as Arg3.1) is known to be important for consolidation of memory. Using in vivo longitudinal multiphoton imaging, we found orchestrated activity-dependent expression of Arc in the mouse extrastriate visual cortex in response to a structured visual stimulation. In wild-type mice, the amplitude of the Arc response in individual neurons strongly predicted the probability of reactivation by a subsequent presentation of the same stimulus. In a mouse model of Alzheimer's disease, this association was markedly disrupted in the cortex, specifically near senile plaques. Neurons in the vicinity of plaques were less likely to respond, but, paradoxically, there were stronger responses in those few neurons around plaques that did respond. To the extent that the orchestrated pattern of Arc expression reflects nervous system responses to and physiological consolidation of behavioral experience, the disruption in Arc patterns reveals plaque-associated interference with neural network integration.
机译:经验诱导的即早基因Arc(也称为Arg3.1)的表达对于巩固记忆非常重要。使用体内纵向多光子成像,我们发现响应结构化视觉刺激,在小鼠超视神经皮层中精心编排了活动依赖的Arc表达。在野生型小鼠中,单个神经元中Arc反应的幅度强烈预测了随后出现的相同刺激而重新激活的可能性。在阿尔茨海默氏病的小鼠模型中,这种关联在皮质中明显被破坏,特别是在老年斑附近。斑块附近的神经元反应的可能性较小,但是,自相矛盾的是,斑块周围的少数确实有反应的神经元的反应较强。在某种程度上,弧形表达的协调模式反映了神经系统对行为经验的反应和生理巩固,弧形模式的破坏揭示了斑块相关的神经网络整合干扰。

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