内嗅皮质
神经科学
抑制性突触后电位
变性(医学)
光遗传学
兴奋性突触后电位
海马体
帕尔瓦布明
机制(生物学)
谷氨酸的
心理学
生物
医学
病理
谷氨酸受体
物理
量子力学
受体
生物化学
作者
Xin Yang,Chen Yao,Tina Tian,Li X,Yan H,Jing Wu,Li H,Lei Pei,Liu D,Qing Tian,Zhu Lq,Ye Lu
摘要
The entorhinal cortex (EC) is one of the most vulnerable brain regions that is attacked during the early stage of Alzheimer's disease (AD). Here, we report that the synaptic terminals of pyramidal neurons in the EC layer II (ECIIPN) directly innervate CA1 parvalbumin (PV) neurons (CA1PV) and are selectively degenerated in AD mice, which exhibit amyloid-β plaques similar to those observed in AD patients. A loss of ECIIPN-CA1PV synapses disables the excitatory and inhibitory balance in the CA1 circuit and impairs spatial learning and memory. Optogenetic activation of ECIIPN using a theta burst paradigm rescues ECIIPN-CA1PV synaptic defects and intercepts the decline in spatial learning and memory. These data reveal a novel mechanism of memory loss in AD mice via the selective degeneration of the ECIIPN-CA1PV pathway.
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