突触可塑性
微量注射
氯胺酮
抗抑郁药
神经科学
化学
下调和上调
神经可塑性
药理学
NMDA受体
长时程增强
AMPA受体
突触
精神分裂症(面向对象编程)
海马体
趋化因子
信号转导
生物
受体
神经传递
皮质酮
血清素
突触疲劳
树突棘
医学
作者
Yong‐Yu Yin,Si‐Rui Sun,Hui‐Ying Zhang,Peng-Wei Bi,Jia-Ning Zhao,Hao Cheng,Yunfeng Li
标识
DOI:10.1038/s41398-026-04242-9
摘要
Ketamine, a non-competitive N-methyl-D-aspartate acid (NMDA) receptor antagonist, produces rapid and sustained antidepressant actions, but the underlying molecular mechanism remains unclear. The CX 3 CL1/CX 3 CR1 signaling is closely related to mood disorders, and this study aims to investigate its role in ketamine’s antidepressant actions. We pharmacologically (AZD8797, a selective CX 3 CR1 antagonist) and genetically (intra-mPFC microinjection with AAV-CX 3 CR1-siRNA) manipulated the CX 3 CL1/CX 3 CR1 signaling and investigated their effects on ketamine’s antidepressant-like effects in mice treated with corticosterone (Cort), and observed changes in synaptic plasticity in response to these manipulations. We found that 24 h after drug injection, ketamine (10 mg/kg, i.p.) significantly reversed the Cort-induced depression-like behaviors, and inhibited the overexpression of pro-inflammatory cytokines and microglial activation. Ketamine significantly improved the Cort-induced impairment in the dendritic complexity and spine densities. In addition, our ELISA results showed that ketamine significantly inhibited the activation of CX 3 CL1/CX 3 CR1 signaling, and ketamine attenuated the upregulation of CX 3 CR1 and CX 3 CL1 expression in Cort-treated HT22 and BV2 cells in vitro. Furthermore, pretreatment with AZD8797 (0.8 mg/kg, i.p., twice a week) completely blocked ketamine’s antidepressant-like behavioral effects and eliminated ketamine-induced enhancement in the synaptic plasticity; intra-mPFC microinjection with AAV-CX 3 CR1-siRNA also prevented ketamine’s behavioral effects and beneficial effects on the synaptic plasticity. These findings demonstrated that CX 3 CL1/CX 3 CR1 signaling-mediated synaptic plasticity played essential roles in ketamine’s antidepressant-like effects, which opened a new door to targeting chemokines to improve depression symptoms.
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