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Modeling Dysplastic and Functional Lung Alveolar Repair after Influenza Infection
Published on: September 19, 2025
Hypoxia-inducible factor 1-alpha inhibition mitigates inflammatory responses induced by H9N2 avian influenza virus
Suying Zhu1, Beibei Li1, Yaqi Wang1
1College of Agriculture and Bioengineering, Heze University, Heze, China.
Abstract:
H9N2 avian influenza virus (AIV) poses significant threats to poultry and public health, with the potential to contribute to the emergence of more virulent influenza strains. Hypoxia-inducible factor 1-alpha (HIF-1α) plays a crucial role in viral pathogenesis, immune regulation, and inflammation, making it a promising target for therapeutic intervention. Here, we explored the involvement of HIF-1α in H9N2 AIV pathogenesis and associated inflammatory responses. Our data revealed that HIF-1α exacerbates inflammation induced by H9N2 AIV infection through its regulation of mitochondrial fitness. Additionally, we investigated Sotetsuflavone (Seo), a naturally derived flavonoid, for its potential to modulate inflammatory responses following H9N2 infection. Molecular docking coupled with surface plasmon resonance assays indicated that Seo exhibits robust binding affinity to HIF-1α, implying a direct inhibitory mechanism. Subsequent in vitro studies demonstrated that Seo greatly reduced the production of inflammatory cytokines, including IL-1β, IL-6, and TNF-α, through suppressing the HIF-1α signaling pathway in HD11 cells infected with H9N2 AIV. Correspondingly, in vivo experiments established that Seo administration significantly ameliorated pulmonary inflammation in H9N2-infected mice, while also enhancing alveolar epithelial repair, as evidenced by increased expression of type II alveolar epithelial cell markers Abca3 and Sftpb. Collectively, these findings identify Seo as a potent inhibitor of HIF-1α, highlighting its therapeutic potential in mitigating inflammation and lung damage associated with influenza virus infection.IMPORTANCEH9N2 avian influenza virus triggers inflammatory lung injury via hypoxia-inducible factor-1 alpha (HIF-1α)-mediated dysregulation of mitochondrial function. The natural flavonoid Sotetsuflavone (Seo) directly binds and inhibits HIF-1α, as confirmed by molecular docking and surface plasmon resonance assays. In H9N2-infected HD11 cells, Seo suppresses HIF-1α signaling, reducing IL-1β, IL-6, and TNF-α production. In vivo, Seo treatment attenuates pulmonary inflammation and enhances alveolar epithelial repair in mice, upregulating type II pneumocyte markers (Abca3 and Sftpb). These findings identify Seo as a promising HIF-1α-targeted therapeutic for influenza-associated immunopathology.
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