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◆ Translational Psychiatry2025-11-18· Locus coeruleus

Dexmedetomidine elicits a prolonged anxiolytic effect by inhibiting adrenergic neurons in the locus coeruleus in mice

Linhao Jiang, Jin Zhao, Miaoyun Xia, Yifan Song, Huateng Cao, Ying Wang, Shajin Huang, Qian Zhang, Hongjun Huang, Yan Luo, Zhe Zhang, Qianzi Yang

原始摘要(英文原文)· Original abstract
Anxiety disorders impose a substantial global burden, yet current pharmacotherapies often lack sustained efficacy and carry risks of dependence. Dexmedetomidine (Dex), a selective α2 adrenergic receptor agonist primarily used for sedation, demonstrates promising anxiolytic properties, but its long-term neural mechanisms remain unclear. Here, using a chronic restraint stress (CRS) mouse model, we reveal that tyrosine hydroxylase (TH)-positive neurons in the locus coeruleus (LC) are persistently hyperactivated during chronic anxiety states, driving elevated norepinephrine (NE) release in the medial prefrontal cortex (mPFC). A single low dose of Dex (50 µg/kg) produced anxiolytic effects lasting ≥3 days, evidenced by improved performance in open-field, light-dark box, and elevated plus maze tests. In vivo fiber photometry and chemogenetic approaches demonstrated that Dex suppresses LC-NE neuronal hyperactivity and normalizes mPFC NE levels. Crucially, neuron-specific knockdown of α2 receptors in the LC abolished Dex's anxiolytic effects, confirming their essential role. These findings elucidate a neural mechanism wherein Dex sustains anxiety relief via α2 receptor-mediated inhibition of the LC-NE-mPFC circuit, highlighting its potential as a novel long-acting therapeutic strategy for anxiety disorders.
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Dexmedetomidine elicits a prolonged anxiolytic effect by inhibiting adrenergic neurons in the locus coeruleus in mice — 科研速览 Science Skim