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◆ Frontiers in Pharmacology2026-07-31· Pyroptosis

A novel role of the TNF-α/p65/IRF1 axis in aggravating rheumatoid arthritis through the induction of fibroblast-like synoviocytes pyroptosis

Qian Jia, Xiuli Zhang, Li Jiang, Zhenchun Zhang, Zunzhong Li, Yuling Wang, Peng Yan

原始摘要(英文原文)· Original abstract
Introduction Rheumatoid arthritis (RA) is a chronic inflammatory disease characterized by aberrant proliferation and activation of fibroblast‐like synoviocytes (FLSs), leading to production of inflammatory mediators. Although interferon regulatory factor 1 (IRF1) is known to participate in immune regulation, its specific role and upstream activation mechanism in RA‐FLSs remain elusive. Methods IRF1 expression was assessed in RA synovial tissues, collagen‐induced arthritis (CIA) mouse synovium, and TNF‐α‐stimulated RA‐FLSs. Functional assays evaluated pyroptosis after IRF1 knockdown. Mechanistic investigations included ChIP‐seq, Cut‐and‐Run, and luciferase reporter assays to identify IRF1 target genes and promoter binding. In vivo , CIA mice were treated with IRF1 modulation to evaluate arthritis severity. Results IRF1 was significantly upregulated in RA tissues and TNF‐α‐treated FLSs. IRF1 suppression attenuated pyroptosis and reduced pyroptosis‐associated proteins (CASP1, GSDMD‐N, IL‐1β, IL‐18). TNF‐α activated p65, which directly bound to the IRF1 promoter, increasing IRF1 expression. IRF1 directly bound to the CASP1 promoter, enhancing CASP1 expression and pyroptosis. In CIA mice, IRF1 modulation markedly alleviated arthritis symptoms. Conclusion The TNF‐α–p65–IRF1–CASP1 axis drives pyroptosis in RA‐FLSs and contributes to RA pathogenesis, identifying IRF1 as a promising therapeutic target value.
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A novel role of the TNF-α/p65/IRF1 axis in aggravating rheumatoid arthritis through the induction of fibroblast-like synoviocytes pyroptosis — 科研速览 Science Skim