ArticleMolecular psychiatry2025
MiR-186-5p inhibition restores synaptic transmission and neuronal network activity in a model of chronic stress.
Article in Molecular psychiatry, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed.
- Unveiling the enigma of anxiety disorders and depression: from pathogenesis to treatment.Science China. Life sciences · 2026Review
- Standardized chronic restraint stress protocols reveal dynamic evolution of behavioral adaptations in male mice: implications for translational neuroscience.Molecular psychiatry · 2026Article
- Article
- Neddylation Targets and Stabilizes NLRP3 to Augment Inflammasome-Mediated Colitis and Mood Disorder.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Addictive drug abuse and depression-a focus on epigenetics.Communications biology · 2026Review
- Opposing roles of microglial and macrophagic C3ar1 signaling in stress-induced synaptic and behavioral changes.Molecular psychiatry · 2025Article
- Autonomic modulation of neuroplasticity in spinal cord injury rehabilitation: insights from a narrative review.Frontiers in neurologyReview
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Authors and funding
16 authors.
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Abstract
Chronic stress exerts profound negative effects on cognitive and emotional behaviours and is a major risk factor for the development of neuropsychiatric disorders. However, the molecular links between chronic stress and its deleterious effects on neuronal and synaptic function remain elusive. Here, using a combination of in vitro and in vivo approaches, we demonstrate that the upregulation of miR-186-5p triggered by chronic stress may be a key mediator of such changes, leading to synaptic dysfunction. Our results show that the expression levels of miR-186-5p are increased both in the prefrontal cortex (PFC) of mice exposed to chronic stress and in cortical neurons chronically exposed to dexamethasone. Additionally, viral overexpression of miR-186-5p in the PFC of naïve mice induces anxiety- and depressive-like behaviours. The upregulation of miR-186-5p through prolonged glucocorticoid receptor activation in vitro, or in a mouse model of chronic stress, differentially affects glutamatergic and GABAergic synaptic transmission, causing an imbalance in excitation/inhibition that leads to altered neuronal network activity. At glutamatergic synapses, we observed both a reduction in synaptic AMPARs and synaptic transmission, whereas GABAergic synaptic transmission was strengthened. These changes could be rescued in vitro by a miR-186-5p inhibitor. Overall, our results establish a novel molecular link between chronic glucocorticoid receptor activation, the upregulation of miR-186-5p and the synaptic changes induced by chronic stress, that may be amenable to therapeutic intervention.
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