Monocyte-derived macrophages aggravate pulmonary vasculitis via cGAS/STING/IFN-mediated nucleic acid sensing

免疫学 内部收益率3 单核细胞 医学 血管炎 巨噬细胞 生物 疾病 先天免疫系统 免疫系统 病理 体外 航空航天工程 工程类 内科学 生物化学
作者
Nina Kessler,Susanne Viehmann,Calvin Krollmann,Karola Mai,Katharina M. Kirschner,Hella Luksch,Prasanti Kotagiri,Alexander Böhner,Dennis Huugen,Carina C. de Oliveira Mann,Simon Otten,Stefanie Weiß,Thomas Zillinger,Kristiyana Dobrikova,Dieter E. Jenne,Rayk Behrendt,Andrea Ablasser,Eva Bartok,Gunther Hartmann,Karl‐Peter Hopfner,Paul Lyons,Peter Boor,Angela Rösen‐Wolff,Lino L. Teichmann,Peter Heeringa,Christian Kurts,Natalio Garbi
出处
期刊:Journal of Experimental Medicine [The Rockefeller University Press]
卷期号:219 (10) 被引量:12
标识
DOI:10.1084/jem.20220759
摘要

Autoimmune vasculitis is a group of life-threatening diseases, whose underlying pathogenic mechanisms are incompletely understood, hampering development of targeted therapies. Here, we demonstrate that patients suffering from anti-neutrophil cytoplasmic antibodies (ANCA)–associated vasculitis (AAV) showed increased levels of cGAMP and enhanced IFN-I signature. To identify disease mechanisms and potential therapeutic targets, we developed a mouse model for pulmonary AAV that mimics severe disease in patients. Immunogenic DNA accumulated during disease onset, triggering cGAS/STING/IRF3-dependent IFN-I release that promoted endothelial damage, pulmonary hemorrhages, and lung dysfunction. Macrophage subsets played dichotomic roles in disease. While recruited monocyte-derived macrophages were major disease drivers by producing most IFN-β, resident alveolar macrophages contributed to tissue homeostasis by clearing red blood cells and limiting infiltration of IFN-β–producing macrophages. Moreover, pharmacological inhibition of STING, IFNAR-I, or its downstream JAK/STAT signaling reduced disease severity and accelerated recovery. Our study unveils the importance of STING/IFN-I axis in promoting pulmonary AAV progression and identifies cellular and molecular targets to ameliorate disease outcomes.
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