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Measuring Phagocytosis of Aspergillus fumigatus Conidia by Human Leukocytes using Flow Cytometry
Published on: December 7, 2019
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.
Abstract:
Microbiota inhabiting mucosal tissues is involved in maintenance of their immune homeostasis. Growing body of evidence indicate that dysbiosis in gut influence immune responses at distal sites including lungs. There are also reports concerning gut involvement with pulmonary injury/inflammation in settings of respiratory viral and bacterial infections. The impact of infections with other microorganisms on gut homeostasis is not explored. In this study, the rat model of sublethal pulmonary infection with Aspergillus fumigatus was used to investigate the effect of fungal respiratory infection on gut immune-mediated homeostasis. Signs of intestinal damage, intestinal and gut-draining lymphoid tissue cytokine responses and gut bacterial microbiota diversity were examined. Intestinal injury, inflammatory cell infiltration, as well as increased levels of intestinal interferon-γ (IFN-γ) and interleukin-17 (IL-17) (as opposed to unchanged levels of anti-inflammatory cytokine IL-10) during the two-week period depict intestinal inflammation in rats with pulmonary A. fumigatus infection. It could not be ascribed to the fungus as it was not detected in the intestine of infected rats. Increased production of pro-inflammatory cytokines by major gut-draining mesenteric lymph nodes point to these lymphoid organs as places of generation of cytokine-producing cells. No changes in spleen or systemic cytokine responses was observed, showing lack of the effects of pulmonary A. fumigatus infection outside mucosal immune system. Drop of intestinal bacterial microbiota diversity (disappearance of several bacterial bands) was noted early in infection with normalization starting from day seven. From day three, appearance of new bacterial bands (unique to infected individuals, not present in controls) was seen, and some of them are pathogens. Alterations in intestinal bacterial community might have affected intestinal immune tolerance contributing to inflammation. Disruption of gut homeostasis during pulmonary infection might render gastrointestinal tract more susceptible to variety of physiological and pathological stimuli. Data which showed for the first time gut involvement with pulmonary infection with A. fumigatus provide the baseline for future studies of the impact of fungal lung infections to gut homeostasis, particularly in individuals susceptible to these infections.
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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