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Neutrophils in nasal polyps exhibit transcriptional adaptation and proinflammatory roles that depend on local polyp milieu
Chen Zhang, … , Huan Wang, Xicai Sun
Chen Zhang, … , Huan Wang, Xicai Sun
Published October 3, 2024
Citation Information: JCI Insight. 2024;9(22):e184739. https://doi.org/10.1172/jci.insight.184739.
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Research Article Inflammation

Neutrophils in nasal polyps exhibit transcriptional adaptation and proinflammatory roles that depend on local polyp milieu

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Abstract

Chronic rhinosinusitis with nasal polyps (CRSwNP) is an inflammatory upper airway disease, divided into eosinophilic CRSwNP (eCRSwNP) and noneosinophilic CRSwNP (neCRSwNP) according to eosinophilic levels. Neutrophils are major effector cells in CRSwNP, but their roles in different inflammatory environments remain largely unclear. We performed an integrated transcriptome analysis of polyp-infiltrating neutrophils from patients with CRSwNP, using healthy donor blood as a control. Additional experiments, including flow cytometry and in vitro epithelial cell and fibroblast culture, were performed to evaluate the phenotypic feature and functional role of neutrophils in CRSwNP. Single-cell RNA-sequencing analysis demonstrated that neutrophils could be classified into 5 functional subsets, with GBP5+ neutrophils occurring mainly in neCRSwNP and a high proportion of CXCL8+ neutrophils in both subendotypes. GBP5+ neutrophils exhibited significant IFN-I pathway activity in neCRSwNP. CXCL8+ neutrophils displayed increased neutrophil activation scores and mainly secreted oncostatin M (OSM), which facilitates communication with other cells. In vitro experiments showed that OSM enhanced IL-13– or IL-17–mediated immune responses in nasal epithelial cells and fibroblasts. Our findings indicate that neutrophils display transcriptional plasticity and activation when exposed to polyp tissue, contributing to CRSwNP pathogenesis by releasing OSM, which interacts with epithelial cells and fibroblasts depending on the inflammatory environment.

Authors

Chen Zhang, Qianqian Zhang, Jiani Chen, Han Li, Fuying Cheng, Yizhang Wang, Yingqi Gao, Yumin Zhou, Le Shi, Yufei Yang, Juan Liu, Kai Xue, Yaguang Zhang, Hongmeng Yu, Dehui Wang, Li Hu, Huan Wang, Xicai Sun

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Figure 5

The level of OSM secreted by neutrophils is elevated in CRSwNP.

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The level of OSM secreted by neutrophils is elevated in CRSwNP.
(A) Heat...
(A) Heatmap showing the outgoing signaling patterns when neutrophils were selected as sender cells via the CellChat algorithm. (B) Heatmap showing the incoming signaling patterns when neutrophils were selected as sender cells via the CellChat algorithm. (C) Chord diagrams of the signaling pathway network displaying secreting and receiving cells of OSM signaling. (D) UMAP plot depicting the distribution of OSM in the scRNA-seq data. (E) Violin plot depicting the OSM expression level, and UMAP plot depicting the distribution of OSM in neutrophils of the scRNA-seq data. (F) Scatter dot plot depicting the protein levels of OSM in control uncinate tissue (UT) (n = 17), neCRSwNP (n = 27), and eCRSwNP (n = 34) groups in tissue homogenates evaluated with the Kruskal-Wallis test with Dunn’s post hoc test. (G) Violin plots showing the expression levels of the OSM receptors, including gp130 (IL6ST), LIFRα (LIFT), and OSMRβ (OSMR). (H) Representative images of OSMR, VWF (a biomarker of endothelial cells), E-CAD (a biomarker of epithelial cells), and COL1A1 (a biomarker of fibroblasts) immunofluorescent staining in nasal polyps. Scale bars: 5 μm. (I) Scatter dot plot displaying the OSMR mRNA level in control UTs and nasal polyps evaluated with the Kruskal-Wallis test with Dunn’s post hoc test (control, n = 9; neCRSwNP, n = 17; eCRSwNP, n = 19). (J) Heatmap presenting the correlation between the signature score of the response to LPS pathway and the expression level of common upregulated cytokines/chemokines in neCRSwNP and eCRSwNP neutrophils evaluated with Spearman’s rank test. (K) The GSEA plot showing the enrichment of response to LPS in the eCRSwNP or neCRSwNP neutrophils compared with the PB neutrophils. (L) The scatter dot plot depicting the protein levels of G-CSF and GM-CSF in control UT (n = 17), neCRSwNP (n = 27), and eCRSwNP (n = 34) tissue homogenates evaluated with the Kruskal-Wallis test with Dunn’s post hoc test. (M) The scatter plot visualizing the correlation of OSM and GM-CSF expression level in tissue homogenates of nasal polyps evaluated with Spearman’s rank test. (N) The histogram displaying OSM mRNA level in neutrophils after stimulation with LPS, G-CSF, and GM-CSF evaluated with the Kruskal-Wallis test with Dunn’s post hoc test (n = 4). *P < 0.05, **P < 0.01, ****P < 0.001.

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