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Updated: Feb 10, 2026

Experimental Human Pneumococcal Carriage
Published on: February 15, 2013
IL-17 can be protective or deleterious in murine pneumococcal pneumonia
Neil D Ritchie1, Ryan Ritchie1, Hannah K Bayes1
1Institute of Infection, Immunity and Inflammation, University of Glasgow, Glasgow, United Kingdom.
Insights
Interleukin-17 (IL-17) aids defense against pneumococcal nasal colonization but can worsen pneumonia outcomes. This immune response, mediated by T cells, impacts mortality differently based on bacterial capsule.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Streptococcus pneumoniae causes community-acquired pneumonia and childhood deaths.
- Nasal colonization precedes pneumococcal infection.
- Interleukin-17 (IL-17) inhibits pneumococcal colonization, with vaccines targeting this response under development.
Purpose of the Study:
- To investigate the role of IL-17 in host defense against pneumococcal pneumonia.
- To determine if IL-17 exacerbates or protects against pneumococcal pneumonia.
Main Methods:
- Utilized a murine model of pneumococcal pneumonia with inactivated IL-17 receptor (Il17ra).
- Compared outcomes using invasive (TIGR4, serotype 4) and highly encapsulated (serotypes 3 and 6B) S. pneumoniae strains.
- Assessed neutrophil function and survival rates following neutrophil depletion.
Main Results:
- IL-17, primarily from γδ T cells, protected against invasive TIGR4 strain pneumonia.
- IL-17 significantly increased mortality in pneumonia caused by heavily encapsulated strains (serotypes 3 and 6B).
- Neutrophil impairment in killing encapsulated strains and enhanced survival upon neutrophil depletion indicated neutrophils exacerbate disease.
Conclusions:
- IL-17-mediated neutrophil recruitment clears invasive pneumococcal strains but worsens disease with highly encapsulated strains.
- Augmenting IL-17 responses may reduce nasal colonization but could increase pneumonia severity for certain pneumococcal serotypes.
Abstract:
Streptococcus pneumoniae is the major bacterial cause of community-acquired pneumonia, and the leading agent of childhood pneumonia deaths worldwide. Nasal colonization is an essential step prior to infection. The cytokine IL-17 protects against such colonization and vaccines that enhance IL-17 responses to pneumococcal colonization are being developed. The role of IL-17 in host defence against pneumonia is not known. To address this issue, we have utilized a murine model of pneumococcal pneumonia in which the gene for the IL-17 cytokine family receptor, Il17ra, has been inactivated. Using this model, we show that IL-17 produced predominantly from γδ T cells protects mice against death from the invasive TIGR4 strain (serotype 4) which expresses a relatively thin capsule. However, in pneumonia produced by two heavily encapsulated strains with low invasive potential (serotypes 3 and 6B), IL-17 significantly enhanced mortality. Neutrophil uptake and killing of the serotype 3 strain was significantly impaired compared to the serotype 4 strain and depletion of neutrophils with antibody enhanced survival of mice infected with the highly encapsulated SRL1 strain. These data strongly suggest that IL-17 mediated neutrophil recruitment to the lungs clears infection from the invasive TIGR4 strain but that lung neutrophils exacerbate disease caused by the highly encapsulated pneumococcal strains. Thus, whilst augmenting IL-17 immune responses against pneumococci may decrease nasal colonization, this may worsen outcome during pneumonia caused by some strains.
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