Impairments of spatial memory in an Alzheimer's disease model via degeneration of hippocampal cholinergic synapses

海马胆碱能突触退化导致阿尔茨海默病模型中的空间记忆受损

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作者:Houze Zhu, Huanhuan Yan, Na Tang, Xinyan Li, Pei Pang, Hao Li, Wenting Chen, Yu Guo, Shu Shu, You Cai, Lei Pei, Dan Liu, Min-Hua Luo, Hengye Man, Qing Tian, Yangling Mu, Ling-Qiang Zhu, Youming Lu

Abstract

Choline acetyltransferase neurons in the vertical diagonal band of Broca (vChATs) degenerate in the early stage of Alzheimer's disease (AD). Here, we report that vChATs directly innervate newly generated immature neurons (NGIs) in the dorsal hippocampus (dNGIs) of adult mice and regulate both the dNGIs survival and spatial pattern separation. In a mouse model that exhibits amyloid-β plaques similar to AD patients, cholinergic synaptic transmission, dNGI survival and spatial pattern separation are impaired. Activation of vChATs with theta burst stimulation (TBS) that alleviates the decay in cholinergic synaptic transmission effectively protects against spatial pattern separation impairments in the AD mice and this protection was completely abolished by inhibiting the dNGIs survival. Thus, the impairments of pattern separation-associated spatial memory in AD mice are in part caused by degeneration of cholinergic synaptic transmission that modulates the dNGIs survival.

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