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.

Abstract

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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