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IL-33/ST2 axis contributes to the dermal fibrosis of systemic sclerosis via promoting fibroblasts activation

纤维化 医学 抗体 受体 免疫系统 白细胞介素33 人体皮肤 成纤维细胞 肌成纤维细胞 博莱霉素 免疫学 病理 白细胞介素 癌症研究 细胞因子 内科学 生物 细胞培养 遗传学 化疗
作者
Xuefen Wu,Bingxia Ming,Tong Wu,Rongfen Gao,Peng Hu,Jungen Tang,Jixin Zhong,Fang Zheng,Lingli Dong
出处
期刊:Journal of Dermatological Science [Elsevier]
卷期号:107 (2): 95-104 被引量:3
标识
DOI:10.1016/j.jdermsci.2022.07.009
摘要

Background Systemic sclerosis (SSc) is a chronic immune-mediated rheumatic disease that is characterized by fibrosis of the skin and internal organs. Interleukin-33 (IL-33) has been recently implicated in several autoimmune diseases through its receptor ST2. Objective The aim of this study was to investigate the role and underlying mechanism of IL-33/ST2 axis in the fibrotic disorder of SSc. Methods The bleomycin (BLM)-induced fibrotic skin and skin biopsies of SSc patients were used to detect the expression of IL-33 and ST2. Human dermal fibroblasts were stimulated with recombinant IL-33(rIL-33) protein and their activation, proliferation and migration were assessed. The role of IL-33/ST2 axis was investigated in mouse fibrosis model via histologically assessing skin fibrosis after IL-33 gene knockout. ST2 neutralizing antibody treatment was also obtained to estimate the possible effect. Results The number IL-33+ cells and ST2+ cells were increased in the lesion skin of SSc patients and BLM-induced mouse. Human skin fibroblasts highly expressed ST2 protein, and the proliferation, migration, and collagen expression were significantly elevated after rIL-33 stimulation, accompanied by the activation of MAPKs and NF-kB pathways. The severity of skin fibrosis was significantly reduced in il33-/- mice compared with WT mice. Blockade of IL-33 receptor using an anti-ST2 neutralizing antibody effectively ameliorated the skin fibrosis. Conclusion These data indicate that IL-33/ST2 axis contributes to the fibrotic skin injury of SSc via promoting fibroblasts activation, and IL-33/ST2 blockade might serve as a novel strategy to inhibit the fibrosis progression in patients of SSc.
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