杜皮鲁玛
医学
势垒函数
嗜酸性粒细胞
上皮
炎症
免疫学
紧密连接
鼻息肉
促炎细胞因子
病理
鼻粘膜
渗透(HVAC)
转录因子
细胞
癌症研究
鼻窦炎
免疫组织化学
慢性鼻-鼻窦炎
白细胞介素13
趋化因子
白细胞介素22
白细胞介素
细胞因子
作者
Zhi‐Qun Huang,Jing Liu,Li‐Ying Sun,Qing Luo,Jie‐Qing Yu,Li Shen,Yishan Xiong,Ranran Yin,De‐yun Wang,Jing Ye
摘要
BACKGROUNDS: Nasal epithelial barrier impairment is a crucial pathology in chronic rhinosinusitis with nasal polyps (CRSwNP). However, the mechanisms driving tight junctions (TJs) disruption remain unclear. We aimed to elucidate the role of IL-13 in TJs breakdown and epithelial remodeling, and to evaluate whether dupilumab can restore epithelial integrity under Type-2 inflammatory conditions. METHODS: Differentially expressed TJs-related genes were identified by integrating the GSE136825 dataset with clinical samples from 23 healthy controls and 73 CRSwNP patients. The effects of IFN-γ, IL-13, IL-17A, and dupilumab on epithelial barrier function and claudin-10 (CLDN10) expression were investigated in seven human nasal epithelial cells using transepithelial electrical resistance (TER), RT-qPCR, WB, and immunofluorescence. Statistical analyses were performed using the chi-square test, one-way ANOVA, Wilcoxon signed-rank test, and Spearman's rank correlation. RESULTS: CLDN10 was identified as the most significantly downregulated TJs in CRSwNP and negatively correlated with eosinophil infiltration (r = -0.4414, p < 0.0001). In vitro, IL-13 markedly reduced CLDN10 and TER levels, and induced epithelial remodeling with fewer club cells and ciliated cells and more goblet cells (all p < 0.05). Additionally, dupilumab effectively mitigated IL-13-induced CLDN10 loss, restored barrier integrity, and normalized epithelial alarmins, including IL-25 and TSLP expression (all p < 0.05). CONCLUSIONS: IL-13-driven Type-2 inflammation disrupts nasal epithelial barrier integrity by downregulating CLDN10 and altering epithelial cell differentiation. Dupilumab counteracts these effects by restoring CLDN10 expression and epithelial barrier function, highlighting CLDN10 as a crucial mediator of barrier dysfunction and a potential therapeutic target in CRSwNP.
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