莫里斯水上航行任务
神经炎症
安普克
PI3K/AKT/mTOR通路
海马体
小胶质细胞
巴恩斯迷宫
细胞生物学
药理学
化学
神经科学
生物
信号转导
磷酸化
医学
内科学
炎症
蛋白激酶A
空间学习
作者
Yingchao Liu,Pengcheng Xia,Shuai Zong,Ni Zheng,Xiaolin Cui,Cuicui Wang,Miaomiao Wang,Xueying Wang,Shuyi Yu,Huajun Zhao,Zhiming Lu
标识
DOI:10.1016/j.ejphar.2024.176432
摘要
This study aimed to examine the therapeutic effects and response mechanisms of 4-OI in Alzheimer's disease (AD). In this study, network pharmacology was employed to analyze potential targets for AD drug therapy. Immunofluorescence and quantitative reverse transcription polymerase chain reaction (qRT-PCR) techniques were utilized to detect inflammatory phenotypes in a 4-OI-resistant mouse microglia cell line (BV2). We conducted four classical behavioral experiments, namely the open field test, new object recognition test, Y maze test, and Morris water maze, to assess the emotional state and cognitive level of APPswe/PS1dE9 (referred to as APP/PS1) mice after 4-OI treatment. Hematoxylin and eosin (HE) staining, along with immunofluorescence staining, were performed to detect amyloid (Aβ) deposition in mouse brain tissue. To explore the potential molecular mechanisms regulating the effects of 4-OI treatment, we performed RNA-SEQ and transcription factor prediction analyses. Additionally, mouse BV2 cells underwent Western blotting analysis to elucidate potential molecular mechanisms underlying the observed effects. We discovered that 4-OI exerts an inhibitory effect on neuroinflammation by promoting autophagy. This effect is attributed to the activation of the AMPK/mTOR/ULK1 pathway, achieved through enhanced phosphorylation of AMPK and ULK1, coupled with a reduction in mTOR phosphorylation. Furthermore, 4-OI significantly enhances neuronal recovery in the hippocampus and diminishes Aβ plaque deposition in APP/PS1 mice, improved anxiety in mice, and ultimately led to improved cognitive function. Overall, the results of this study demonstrated that 4-OI improved cognitive deficits in AD mice, confirming the therapeutic effect of 4-OI on AD.
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