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Induction of a distinct macrophage population and protection from lung injury and fibrosis by Notch2 blockade.

Authors :
Cruz Tleugabulova, Mayra
Melo, Sandra P.
Wong, Aaron
Arlantico, Alexander
Liu, Meizi
Webster, Joshua D.
Lau, Julia
Lechner, Antonie
Corak, Basak
Hodgins, Jonathan J.
Garlapati, Venkata S.
De Simone, Marco
Korin, Ben
Avraham, Shimrit
Lund, Jessica
Jeet, Surinder
Reiss, Alexander
Bender, Hannah
Austin, Cary D.
Darmanis, Spyros
Source :
Nature Communications; 11/9/2024, Vol. 15 Issue 1, p1-18, 18p
Publication Year :
2024

Abstract

Macrophages are pleiotropic and diverse cells that populate all tissues of the body. Besides tissue-specific resident macrophages such as alveolar macrophages, Kupffer cells, and microglia, multiple organs harbor at least two subtypes of other resident macrophages at steady state. During certain circumstances, like tissue insult, additional subtypes of macrophages are recruited to the tissue from the monocyte pool. Previously, a recruited macrophage population marked by expression of Spp1, Cd9, Gpnmb, Fabp5, and Trem2, has been described in several models of organ injury and cancer, and has been linked to fibrosis in mice and humans. Here, we show that Notch2 blockade, given systemically or locally, leads to an increase in this putative pro-fibrotic macrophage in the lung and that this macrophage state can only be adopted by monocytically derived cells and not resident alveolar macrophages. Using a bleomycin and COVID-19 model of lung injury and fibrosis, we find that the expansion of these macrophages before lung injury does not promote fibrosis but rather appears to ameliorate it. This suggests that these damage-associated macrophages are not, by themselves, drivers of fibrosis in the lung. Macrophages are pleiotropic and can have different functions and phenotypes. Here the authors show that a population of macrophages, previously described as pro-fibrotic, can be induced through Notch2 blockade and that in a mouse lung injury and fibrosis model this macrophage population does not promote inflammation or fibrosis. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
15
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
180804899
Full Text :
https://doi.org/10.1038/s41467-024-53700-9