ArticleMolecular neurobiology2026
Inhibition of miR-25-3p Alleviates Neuroinflammation in Alzheimer's Disease By Targeting ADAM10.
Article in Molecular neurobiology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
As a neurodegenerative disorder, Alzheimer's disease (AD) is defined by progressive cognitive decline and involves intricate pathological mechanisms. This study aimed to investigate the clinical role and regulatory mechanism of miR-25-3p in AD. This investigation enrolled 115 AD patients and 110 healthy control subjects. Serum levels of miR-25-3p were quantified using quantitative real-time PCR (qRT-PCR), and the diagnostic performance of miR-25-3p for AD was assessed via receiver operating characteristic (ROC) analysis. In vitro, cellular models of AD were established by treating SH-SY5Y and HMC3 cells with amyloid-beta peptide 25-35 (Aβ25-35). Cellular proliferation and apoptosis were evaluated using the CCK-8 assay and flow cytometry, respectively. ELISA was employed to measure the concentrations of pro-inflammatory and anti-inflammatory cytokines. Furthermore, the direct targeting relationship between miR-25-3p and ADAM10 was confirmed through dual-luciferase reporter assays. miR-25-3p was significantly upregulated in the serum of AD patients and Aβ25-35-induced AD cell models, suggesting its potential diagnostic relevance for AD. Inhibition of miR-25-3p attenuated Aβ25-35-mediated neurotoxicity and neuroinflammation, whereas ADAM10 knockdown abrogated the neuroprotective effects of the miR-25-3p inhibitor in SH-SY5Y and HMC3 cells, which suggests that inhibition of miR-25-3p may alleviate the disease progression of AD by targeting ADAM10. Therefore, inhibition of miR-25-3p may alleviate the disease progression of AD by targeting ADAM10, providing a novel potential regulatory axis for AD intervention.
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