Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, MoE Key Laboratory for Biomedical Photonics, Huazhong University of Science and Technology, Wuhan, 430074, China.
Key Laboratory of Biomedical Engineering of Hainan Province, School of Biomedical Engineering, Hainan University, Haikou, 570228, China.
Nat Commun. 2022 Feb 22;13(1):998. doi: 10.1038/s41467-022-28493-4.
Short-term memory deficits have been associated with prefrontal cortex (PFC) dysfunction in Alzheimer's disease (AD) and AD mouse models. Extratelencephalic projection (ET) neurons in the PFC play a key role in short-term working memory, but the mechanism between ET neuronal dysfunction in the PFC and short-term memory impairment in AD is not well understood. Here, using fiber photometry and optogenetics, we found reduced neural activity in the ET neurons in the medial prefrontal cortex (mPFC) of the 5×FAD mouse model led to object recognition memory (ORM) deficits. Activation of ET neurons in the mPFC of 5×FAD mice rescued ORM impairment, and inhibition of ET neurons in the mPFC of wild type mice impaired ORM expression. ET neurons in the mPFC that project to supramammillary nucleus were necessary for ORM expression. Viral tracing and in vivo recording revealed that mPFC ET neurons received fewer cholinergic inputs from the basal forebrain in 5×FAD mice. Furthermore, activation of cholinergic fibers in the mPFC rescued ORM deficits in 5×FAD mice, while acetylcholine deficiency reduced the response of ET neurons in the mPFC to familiar objects. Taken together, our results revealed a neural mechanism behind ORM impairment in 5×FAD mice.
短期记忆缺陷与阿尔茨海默病(AD)和 AD 小鼠模型中的前额叶皮层(PFC)功能障碍有关。PFC 中的外端脑投射(ET)神经元在短期工作记忆中发挥关键作用,但 PFC 中 ET 神经元功能障碍与 AD 中的短期记忆损伤之间的机制尚不清楚。在这里,我们使用光纤光度法和光遗传学发现,5×FAD 小鼠模型中内侧前额叶皮层(mPFC)中的 ET 神经元的神经活动减少导致物体识别记忆(ORM)缺陷。激活 5×FAD 小鼠 mPFC 中的 ET 神经元可挽救 ORM 损伤,而抑制野生型小鼠 mPFC 中的 ET 神经元则会损害 ORM 的表达。投射到视上核的 mPFC ET 神经元是 ORM 表达所必需的。病毒追踪和体内记录显示,5×FAD 小鼠中 mPFC ET 神经元从基底前脑接收的胆碱能输入较少。此外,mPFC 中的胆碱能纤维的激活可挽救 5×FAD 小鼠中的 ORM 缺陷,而乙酰胆碱缺乏则降低了 mPFC 中 ET 神经元对熟悉物体的反应。总之,我们的结果揭示了 5×FAD 小鼠中 ORM 损伤的神经机制。