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

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

Kessler, Nina
•
Viehmann, Susanne F.
•
Krollmann, Calvin
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August 23, 2022
Journal Of Experimental Medicine

Kessler et al. identify aberrant DNA recognition by cGAS/STING and IFN-I production by inflammatory macrophages as a driver of severe ANCA-associated vasculitis. Pharmacological interventions blocking this pathway ameliorate disease and accelerate recovery, identifying potential targets for therapeutic intervention in patients.

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-beta, resident alveolar macrophages contributed to tissue homeostasis by clearing red blood cells and limiting infiltration of IFN-beta-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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Type
research article
DOI
10.1084/jem.20220759
Web of Science ID

WOS:000862391200001

Author(s)
Kessler, Nina
Viehmann, Susanne F.
Krollmann, Calvin
Mai, Karola
Kirschner, Katharina M.
Luksch, Hella
Kotagiri, Prasanti
Boehner, Alexander M. C.
Huugen, Dennis
Mann, Carina C. de Oliveira
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Date Issued

2022-08-23

Publisher

ROCKEFELLER UNIV PRESS

Published in
Journal Of Experimental Medicine
Volume

219

Issue

10

Article Number

e20220759

Subjects

Immunology

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Medicine, Research & Experimental

•

Research & Experimental Medicine

•

cyclic gmp-amp

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dendritic cells

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cytosolic dna

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i interferon

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mitochondrial-dna

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sting activation

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cgas

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glomerulonephritis

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myeloperoxidase

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neutrophils

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPABLASSER  
Available on Infoscience
October 24, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/191640
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