Authors
Xiaoxian Zhao, Chunye Zhang, Zhengyan Zhao, Ying Zhang, Lan Wu
Published in
Shanghai kou qiang yi xue = Shanghai journal of stomatology. Volume 35. Issue 3. Pages 252-257.
Abstract
To investigate the expression level of hypoxia-inducible factor-1α (HIF-1α) and its impact on macrophage polarization in the immune microenvironment during carcinogenesis of oral leukoplakia (OLK).
This study employed multiplex immunofluorescence to retrospectively analyze HIF-1α, inducible nitric oxide synthase (iNOS), and CD206 expression in 25 OLK and normal mucosal tissue samples. An in vitro co-culture system was conducted under hypoxic conditions with Leuk-1 and Raw 264.7 cells. Macrophage polarization dynamics were quantitatively assessed by detection of HIF-1α, iNOS, and CD206 expression levels. Subsequently, inhibitor of HIF-1α was used to validate its regulatory role.
In a cohort of 25 OLK and normal mucosal tissue samples, iNOS+ cells demonstrated initial elevation during mild dysplasia but significantly decreased in severe dysplasia and oral squamous cell carcinoma (OSCC). Conversely, CD206+ and HIF-1α+ cells exhibited progressive accumulation throughout OLK malignant transformation. Macrophage polarization analysis revealed M1 polarization (CD206/iNOS ratio: 0.68±0.22 to 0.69±0.41) was presented in mild-to-moderate dysplasia, with marked M2 polarization emerging in advanced stages (3.27±1.64 to 5.82±1.32). Correlation analyses identified progressively strengthened associations between HIF-1α and CD206, iNOS, and M2 polarization during disease progression. In vitro experiments under hypoxic conditions confirmed positive correlations between HIF-1α expression and CD206/iNOS levels as well as M2 polarization, while HIF-1α inhibition significantly attenuated M2 polarization. These findings suggest hypoxia-mediated HIF-1α signaling may orchestrate macrophage phenotypic switching during oral carcinogenesis.
During OLK malignant transformation, HIF-1α expression is progressively upregulated, driving the polarization shift of tissue macrophages from pro-inflammatory M1 to pro-tumorigenic M2 phenotypes.
PMID:
42736239
Bibliographic data and abstract were imported from PubMed on 15 Sep 2026.
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