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Updated: Mar 15, 2026

Refined Murine Model of Idiopathic Pulmonary Fibrosis
Published on: June 17, 2025
Early infiltration of p40IL12(+)CCR7(+)CD11b(+) cells is critical for fibrosis development
Tarcio Teodoro Braga1, Matheus Correa-Costa1, Hatylas Azevedo2
1Laboratory of Transplantation Immunobiology, Department of Immunology Institute of Biomedical Sciences IV, University of São Paulo (USP) São Paulo Brazil.
Introduction:
Macrophages are heterogeneous and thus can be correlated with distinct tissue outcomes after injury. Conflicting data have indicated that the M2-related phenotype directly triggers fibrosis. Conversely, we hypothesize here that the inflammatory milieu provided by early infiltration of pro-inflammatory macrophages dictates tissue scarring after injury.
Methods And Results:
We first determined that tissue-localized macrophages exhibit a pro-inflammatory phenotype (p40IL12(+)CCR7(+)CD11b(+)) during the early phase of a chronic injury model, in contrast to a pro-resolving phenotype (Arg1(+)IL10(+)CD206(+)CD11b(+)) at a later stage. Then, we evaluated the effects of injecting macrophages differentiated in vitro in the presence of IFNγ + LPS or IL4 + IL13 or non-differentiated macrophages (hereafter, M0) on promoting inflammation and progression of chronic injury in macrophage-depleted mice. In addition to enhancing the expression of pro-inflammatory cytokines, the injection of M (IFNγ + LPS), but not M (IL4 + IL13) or M0, accentuated fibrosis while augmenting levels of anti-inflammatory molecules, increasing collagen deposition and impairing organ function. We observed a similar profile after injection of sorted CCR7(+)CD11b(+) cells and a more pronounced effect of M (IFNγ + LPS) cells originated from Stat6(-/-) mice. The injection of M (IFNγ + LPS) cells was associated with the up-regulation of inflammation- and fibrosis-related proteins (Thbs1, Mmp7, Mmp8, and Mmp13).
Conclusions:
Our results suggest that pro-inflammatory macrophages promote microenvironmental changes that may lead to fibrogenesis by inducing an inflammatory milieu that alters a network of extracellular-related genes, culminating in tissue fibrosis.
Insights
Pro-inflammatory macrophages, not M2 macrophages, drive tissue fibrosis after injury. Early inflammatory macrophage infiltration creates an environment that promotes scarring and impairs organ function.
Area of Science:
- Immunology
- Tissue Repair and Regeneration
- Pathology
Background:
- Macrophages are key immune cells with diverse phenotypes influencing tissue repair outcomes.
- Conflicting data exist regarding the role of M2 macrophages in fibrosis.
- This study investigates the hypothesis that pro-inflammatory macrophages dictate tissue scarring.
Purpose of the Study:
- To determine the role of macrophage phenotypes in chronic injury and subsequent fibrosis.
- To investigate the impact of pro-inflammatory versus pro-resolving macrophages on tissue scarring.
- To elucidate the mechanisms by which macrophages influence fibrogenesis.
Main Methods:
- Characterization of tissue-localized macrophages in a chronic injury model.
- In vitro differentiation of macrophages into pro-inflammatory (IFNγ+LPS) or pro-resolving (IL4+IL13) phenotypes.
- In vivo assessment of macrophage-induced inflammation, fibrosis, and organ function in macrophage-depleted mice.
Main Results:
- Tissue macrophages exhibited a pro-inflammatory phenotype early in injury, shifting to a pro-resolving phenotype later.
- Injection of pro-inflammatory macrophages (M(IFNγ+LPS)) exacerbated fibrosis and impaired organ function.
- Pro-inflammatory macrophages increased collagen deposition and upregulated inflammation- and fibrosis-related proteins.
Conclusions:
- Pro-inflammatory macrophages, not M2 macrophages, are key drivers of fibrogenesis.
- These macrophages induce microenvironmental changes that promote tissue fibrosis.
- Targeting pro-inflammatory macrophages may offer therapeutic strategies for fibrotic diseases.
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