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Phenotyping Mouse Pulmonary Function In Vivo with the Lung Diffusing Capacity
Published on: January 6, 2015
Sex-based differences in persistent lung inflammation following influenza infection of juvenile outbred mice
Brydie R Huckestein1,2, Danielle Antos1,2, Michelle L Manni1
1Division of Pulmonary Medicine, Department of Pediatrics, UPMC Children's Hospital of Pittsburgh, Pittsburgh, Pennsylvania, United States.
Insights
Juvenile female mice show prolonged lung inflammation after influenza infection, while males develop an immunosuppressive state. Sex and age are critical factors in pediatric influenza outcomes.
Area of Science:
- Immunology
- Pediatrics
- Infectious Diseases
Background:
- Children face severe influenza due to limited immunity.
- Pediatric influenza research often overlooks long-term outcomes post-infection.
- Understanding sex-based differences in pediatric influenza is crucial.
Purpose of the Study:
- To investigate how sex influences persistent inflammatory responses after influenza infection in juvenile mice.
- To identify sex-specific immune profiles and metabolic changes in the lungs post-influenza.
Main Methods:
- Juvenile male and female mice were infected with influenza.
- Lung tissues were analyzed post-viral clearance for immune cell populations and cytokine profiles.
- Metabolomic analysis was performed to assess metabolic pathways.
Main Results:
- Female mice exhibited broader innate, type I, and type II cytokine responses.
- Male mice showed higher IL-6 and macrophage-related cytokines, with a higher regulatory T cell to TH1 ratio.
- Female lungs had increased enrichment of metabolites in the glycolytic pathway.
Conclusions:
- Juvenile females experience persistent lung inflammation post-influenza, unlike males who display an immunosuppressive phenotype.
- Sex-based differences in immune response and metabolism impact long-term outcomes of pediatric influenza.
- This study highlights the importance of considering sex and age in pediatric infectious disease research.
Abstract:
Children are susceptible to influenza infections and can experience severe disease presentation due to a lack of or limited pre-existing immunity. Despite the disproportionate impact influenza has on this population, there is a lack of focus on pediatric influenza research, particularly when it comes to identifying the pathogenesis of long-term outcomes that persist beyond the point of viral clearance. In this study, juvenile outbred male and female mice were infected with influenza and analyzed following viral clearance to determine how sex impacts the persistent inflammatory responses to influenza. It was found that females maintained a broader cytokine response in the lung following clearance of influenza, with innate, type I and type II cytokine signatures in almost all mice. Males, on the other hand, had higher levels of IL-6 and other macrophage-related cytokines, but no evidence of a type I or type II response. The immune landscape was similar in the lungs between males and females postinfection, but males had a higher regulatory T cell to TH1 ratio compared with female mice. Cytokine production positively correlated with the frequency of TH1 cells and exudate macrophages, as well as the number of cells in the bronchoalveolar lavage fluid. Furthermore, female lungs were enriched for metabolites involved in the glycolytic pathway, suggesting glycolysis is higher in female lungs compared with males after viral clearance. These data suggest juvenile female mice have persistent and excessive lung inflammation beyond the point of viral clearance, whereas juvenile males had a more immunosuppressive phenotype.NEW & NOTEWORTHY This study identifies sex-based differences in persistent lung inflammation following influenza infection in an outbred, juvenile animal model of pediatric infection. These findings indicate the importance of considering sex and age as variable in infectious disease research.
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