Pulmonary Aspergillus fumigatus infection in rats affects gastrointestinal homeostasis

Jelena Kulas1, Ivana Mirkov1, Dina Tucovic1

  • 1Immunotoxicology Group, Department of Ecology, Institute for Biological Research "Sinisa Stankovic", University of Belgrade, Bulevar despota Stefana 142, 11060, Belgrade, Serbia.

Immunobiology
|October 24, 2018
PubMed

Insights

Pulmonary Aspergillus fumigatus infection in rats caused gut inflammation and reduced bacterial diversity, indicating a link between lung fungal infections and gut health disruption. This suggests increased susceptibility to gastrointestinal issues.

Area of Science:

  • Immunology
  • Microbiology
  • Gastroenterology

Background:

  • Gut microbiota plays a crucial role in maintaining immune homeostasis.
  • Dysbiosis in the gut can influence immune responses in distal sites like the lungs.
  • Previous research has linked gut involvement to pulmonary infections, but the impact of fungal infections on gut homeostasis is less understood.

Purpose of the Study:

  • To investigate the effect of a sublethal pulmonary Aspergillus fumigatus infection on gut immune-mediated homeostasis in a rat model.
  • To examine intestinal damage, cytokine responses in the gut and draining lymphoid tissues, and gut bacterial microbiota diversity.

Main Methods:

  • A rat model was used to induce a sublethal pulmonary infection with Aspergillus fumigatus.
  • Intestinal injury, inflammatory cell infiltration, and cytokine levels (IFN-γ, IL-17, IL-10) were assessed.
  • Gut bacterial microbiota diversity was analyzed using techniques like examining bacterial bands.

Main Results:

  • Pulmonary A. fumigatus infection led to intestinal inflammation, characterized by injury, inflammatory cell infiltration, and increased levels of IFN-γ and IL-17.
  • Pro-inflammatory cytokine production increased in mesenteric lymph nodes, suggesting these as sites for generating cytokine-producing cells.
  • A significant drop in intestinal bacterial microbiota diversity was observed early in infection, with the emergence of new, potentially pathogenic bacteria.

Conclusions:

  • Pulmonary fungal infection with A. fumigatus disrupts gut homeostasis, leading to intestinal inflammation and alterations in the gut microbiota.
  • The observed gut changes were not directly caused by the fungus in the intestine but rather a systemic immune response.
  • This study provides novel insights into the gut-lung axis during fungal respiratory infections, highlighting potential implications for susceptible individuals.

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