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miR-146a-5p mitigates ethanol-induced neuroinflammation by targeting Btg2-dependent microglial activation


Bo Cheng
Yan Wang
Ping Huang
Zikuo Dong
Junya Zhou
Guoqing Kang
Chengzhu Wang
Zhenkun Yan

Abstract

Background
Chronic alcohol exposure leads to progressive neurodegeneration, primarily driven by sustained neuroinflammation and microglial
activation. While microRNAs are key regulators of neuroimmune responses, the specific role of miR-146a-5p and its downstream
targets in ethyl alcohol (EtOH)-induced neuroinflammatory injury remain poorly understood.
Methods
A chronic EtOH exposure model was established in C57BL/6 mice and BV-2 microglial cells. Neuroinflammatory damage was
assessed using behavioral tests (Morris water maze), apoptosis assays, cytokine quantification, and immunostaining. The
regulatory relationship between miR-146a-5p and its target gene Btg2 was investigated using luciferase reporter and RNA pull-
down assays, combined with gain-of-function approaches. Results
EtOH exposure significantly downregulated miR-146a-5p expression in both mouse hippocampal tissue and BV-2 cells.
Overexpression of miR-146a-5p in vivo improved spatial learning and memory, reduced neuronal apoptosis, and attenuated
microglial activation and pro-inflammatory cytokine (IL-1β, IL-6, TNF-α) production. Mechanistically, Btg2 was identified as a
direct target of miR-146a-5p. EtOH-induced Btg2 upregulation was reversed by miR-146a-5p overexpression in vitro.
Importantly, restoring Btg2 expression abolished the anti-inflammatory and anti-apoptotic effects of miR-146a-5p in EtOH-
treated BV-2 cells.
Conclusion
This study identifies the miR-146a-5p/Btg2 axis as a critical regulator of EtOH-induced microglial activation and
neuroinflammation. Targeting this pathway may offer a promising therapeutic strategy for alcohol-related neurodegeneration.


Journal Identifiers


eISSN: 1995-7262
print ISSN: 1995-7270