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Following in Real Time the Impact of Pneumococcal Virulence Factors in an Acute Mouse Pneumonia Model Using Bioluminescent Bacteria
Published on: February 23, 2014
Density and duration of pneumococcal carriage is maintained by transforming growth factor β1 and T regulatory cells
Daniel R Neill1, William R Coward, Jenna F Gritzfeld
11 Institute of Infection and Global Health, University of Liverpool, Liverpool, United Kingdom.
Rationale:
Nasopharyngeal carriage of Streptococcus pneumoniae is a prerequisite for invasive disease, but the majority of carriage episodes are asymptomatic and self-resolving. Interactions determining the development of carriage versus invasive disease are poorly understood but will influence the effectiveness of vaccines or therapeutics that disrupt nasal colonization.
Objectives:
We sought to elucidate immunological mechanisms underlying noninvasive pneumococcal nasopharyngeal carriage.
Methods:
Pneumococcal interactions with human nasopharyngeal and bronchial fibroblasts and epithelial cells were investigated in vitro. A murine model of nasopharyngeal carriage and an experimental human pneumococcal challenge model were used to characterize immune responses in the airways during carriage.
Measurements And Main Results:
We describe the previously unknown immunological basis of noninvasive carriage and highlight mechanisms whose perturbation may lead to invasive disease. We identify the induction of active transforming growth factor (TGF)-β1 by S. pneumoniae in human host cells and highlight the key role for TGF-β1 and T regulatory cells in the establishment and maintenance of nasopharyngeal carriage in mice and humans. We identify the ability of pneumococci to drive TGF-β1 production from nasopharyngeal cells in vivo and show that an immune tolerance profile, characterized by elevated TGF-β1 and high nasopharyngeal T regulatory cell numbers, is crucial for prolonged carriage of pneumococci. Blockade of TGF-β1 signaling prevents prolonged carriage and leads to clearance of pneumococci from the nasopharynx.
Conclusions:
These data explain the mechanisms by which S. pneumoniae colonize the human nasopharynx without inducing damaging host inflammation and provide insight into the role of bacterial and host constituents that allow and maintain carriage.
Insights
Streptococcus pneumoniae carriage is maintained by transforming growth factor-beta1 (TGF-β1) and T regulatory cells, which prevent inflammation. Blocking TGF-β1 clears pneumococci from the nasopharynx.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Nasopharyngeal carriage of Streptococcus pneumoniae precedes invasive disease.
- Mechanisms underlying asymptomatic carriage versus invasive disease are poorly understood.
- Understanding carriage is crucial for developing effective vaccines and therapeutics.
Purpose of the Study:
- To elucidate the immunological mechanisms of noninvasive pneumococcal nasopharyngeal carriage.
- To identify host-pathogen interactions that promote colonization without disease.
Main Methods:
- In vitro investigation of pneumococcal interactions with human respiratory cells.
- Murine model of nasopharyngeal carriage.
- Experimental human pneumococcal challenge model to assess immune responses.
Main Results:
- Identified transforming growth factor-beta1 (TGF-β1) induction by S. pneumoniae in host cells.
- Demonstrated the critical role of TGF-β1 and T regulatory cells in establishing and maintaining pneumococcal carriage.
- Showed that elevated TGF-β1 and T regulatory cells create an immune tolerance profile crucial for prolonged carriage.
- Confirmed that TGF-β1 signaling blockade prevents prolonged carriage and promotes pneumococcal clearance.
Conclusions:
- Explained the immunological basis for asymptomatic S. pneumoniae colonization.
- Highlighted the role of TGF-β1 and T regulatory cells in maintaining nasopharyngeal carriage.
- Provided insights into host-bacterial interactions that permit and sustain colonization.
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