Propofol Alleviates Depression‐Like Behavior and Cognitive Disorder in Learned Helplessness Model Mice via Regulating Synaptic Function

谷氨酸受体 海马结构 习得的无助感 神经科学 突触可塑性 异丙酚 齿状回 海马体 莫里斯水上航行任务 尾部悬挂试验 行为绝望测验 药理学 抗抑郁药 神经保护 神经发生 神经传递 荷包牡丹碱 医学 心理学 NMDA受体 谷氨酸 内分泌学 再摄取 突触疲劳 水迷宫 内科学 5-羟色胺再摄取抑制剂 生物 谷氨酸脱羧酶 长时程增强
作者
Jiarong Wang,Jinchen Xiang,Xuemei Han,Jing Liang,Xueliang Shang
出处
期刊:Journal of Neuroscience Research [Wiley]
卷期号:103 (12): e70096-e70096
标识
DOI:10.1002/jnr.70096
摘要

Propofol, an anesthetic known for its safety, efficacy and neuroprotective properties, has potential novel antidepressant effects. However, its specific mechanisms still require further elucidation. Presently, we established a learned helplessness (LH) depression model to investigate the effects of propofol treatment on depression-like impairment. Thirty adult male C57BL/6j mice were randomly divided into three groups: control group (CON), model group (LH), and propofol group (PRO), with 10 mice per group. Behavioral analyses were conducted using weight measurement, sucrose preference test (SPT), forced swim test (FST), tail suspension test (TST), and Morris water maze test (MWM). Subsequently, HE staining was performed to examine pathological changes in the hippocampal region. Western blotting was conducted to assess changes in Notch signaling pathway components, synaptic plasticity-related proteins, and proteins in the glutamate system. Immunofluorescence was used to detect expression changes of NICD, SYP, and DCX. Hippocampal glutamate concentration was determined using a glutamate assay kit. Consequently, stressed mice exhibited pronounced depressive behaviors and decreased spatial learning and memory, accompanied by significant neuronal death in the dentate gyrus of the hippocampal region and reduced levels of neuronal regeneration as well as synaptic plasticity. Additionally, glutamate reuptake function was impaired in depression, manifested specifically as increased glutamate concentrations in the hippocampal region and neuronal glutamate transmission levels. Meaningfully, propofol upregulated Notch signaling pathway activity and improved glutamate reuptake function significantly resulting in enhanced adult hippocampal neurogenesis and synaptic plasticity. These findings demonstrated the effectiveness of propofol as a potential antidepressant and contributed to discovering novel antidepressant drugs.
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