Macrophage peroxisomes guide alveolar regeneration and limit SARS-CoV-2 tissue sequelae

Xiaoqin Wei1,2, Wei Qian1,2, Harish Narasimhan1,2,3

  • 1Beirne B. Carter Center for Immunology Research, University of Virginia, Charlottesville, VA, USA.

Science (New York, N.Y.)
|March 6, 2025
PubMed

Insights

Excessive interferon signaling damages macrophage peroxisomes, impairing lung repair after viral infections. Enhancing peroxisome function may treat lung injury and COVID-19 sequelae.

Area of Science:

  • Cell Biology
  • Immunology
  • Respiratory Medicine

Background:

  • Peroxisomes are essential organelles involved in various metabolic processes.
  • Their role in immune cells, particularly macrophages, during viral infections is not well understood.
  • Dysfunctional peroxisomes may contribute to chronic lung diseases.

Purpose of the Study:

  • To investigate the impact of interferon signaling on macrophage peroxisomes during viral infections.
  • To determine the role of peroxisomes in inflammation resolution, lung repair, and COVID-19 pathogenesis.
  • To explore pharmacological strategies for enhancing peroxisome function to treat lung injury.

Main Methods:

  • Studied macrophage peroxisome remodeling induced by excessive interferon signaling in viral infection models.
  • Assessed the effects of peroxisome loss on inflammation resolution, lung repair, and macrophage function.
  • Utilized animal models to evaluate the therapeutic potential of enhancing peroxisome biogenesis for acute symptoms and post-acute sequelae of COVID-19 (PASC).

Main Results:

  • Excessive interferon signaling led to macrophage peroxisome remodeling and loss, impairing inflammation resolution and lung repair.
  • Peroxisomes modulate macrophage lipid metabolism and mitochondrial health, promoting alveolar macrophage-mediated tissue repair.
  • Enhancing peroxisome biogenesis pharmacologically ameliorated acute viral symptoms and PASC in animal models, preventing excessive inflammasome activation and IL-1β release.

Conclusions:

  • Macrophage peroxisome dysfunction contributes to chronic lung pathology and fibrosis after severe acute respiratory syndrome coronavirus 2 infection.
  • Peroxisome enhancement represents a potential therapeutic strategy for viral-induced lung injury and associated chronic conditions.
  • Targeting macrophage peroxisomes offers a novel approach to mitigate severe respiratory viral infection consequences and PASC.