cGAS Expression is enhanced in systemic sclerosis associated interstitial lung disease and stimulates inflammatory myofibroblast activation.

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Tác giả: Carol Feghali-Bostwick, Shifa Gandhi, Alexander Ghincea, Jose L Gomez, Baran Ilayda Gunes, Erica L Herzog, Monique Hinchcliff, Buqu Hu, Genta Ishikawa, Sophia Kujawski, Chris J Lee, John McGovern, William Odell, Xue Yan Peng, Stephanie Perez, Taylor Pivarnik, Changwan Ryu, Tina Saber, Maor Sauler, Shuai Shao, Huanxing Sun, Ying Sun, John Varga, Anjali Walia, Samuel Woo, Sheeline Yu, Jana Zielonka

Ngôn ngữ: eng

Ký hiệu phân loại: 978.02 1800–1899

Thông tin xuất bản: England : The European respiratory journal , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 746058

OBJECTIVE: The lungs of patients with Systemic Sclerosis Associated Interstitial Lung Disease (SSc-ILD) contain inflammatory myofibroblasts arising in association with fibrotic stimuli and perturbed innate immunity. The cytosolic DNA binding receptor Cyclic GMP-AMP synthase (cGAS) is implicated in inflammation and fibrosis, but its involvement in SSc-ILD remains unknown. We examined cGAS expression, activity, and therapeutic potential in SSc-ILD using human biospecimens, cultured fibroblasts, precision cut lung slices (PCLS), and a well-accepted animal model. METHODS: Expression and localization of cGAS, cytokines, and type 1 interferons were evaluated in SSc-ILD lung tissues, bronchoalveolar lavage (BAL), and isolated lung fibroblasts. RESULTS: SSc-ILD lung tissue and BAL are enriched for cGAS, cytokines, and type 1 interferons. The cGAS pathway shows constitutive activation in SSc-ILD fibroblasts and is inducible in NHLFs by TGFβ1 or mechanical stimuli. In these settings, and in PCLS, cGAS expression is paralleled by the production of cytokines, type 1 interferons, and αSMA that are mitigated by a small molecule cGAS inhibitor. These findings are recapitulated in the bleomycin mouse model. CONCLUSION: cGAS signaling contributes to pathogenic inflammatory myofibroblast phenotypes in SSc-ILD. Inhibiting cGAS or its downstream effectors represents a novel therapeutic approach.
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