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Characterization of Inflammatory Responses During Intranasal Colonization with Streptococcus pneumoniae
Published on: January 17, 2014
Understanding host immune responses to pneumococcal proteins in the upper respiratory tract to develop
Theano Lagousi1, Paraskevi Basdeki1, Marien I De Jonge2
1First Department of Paediatrics, "Aghia Sophia" Children's Hospital, Immunobiology Research Laboratory and Infectious Diseases Department "MAKKA", Athens Medical School , Athens, Greece.
Insights
Preventing pneumococcal colonization requires novel vaccines targeting conserved protein antigens. Intranasal vaccines may enhance mucosal immunity, reducing carriage and disease transmission.
Area of Science:
- Immunology
- Vaccinology
- Microbiology
Background:
- Nasopharyngeal colonization by Streptococcus pneumoniae precedes mucosal and invasive disease.
- Developing serotype-independent vaccines is crucial for preventing pneumococcal transmission and disease.
- Protein-based pneumococcal vaccines are under investigation to target colonization.
Purpose of the Study:
- To understand host immune responses to pneumococcal proteins in the upper respiratory tract (URT).
- To inform the development of serotype-independent pneumococcal vaccines.
- To identify strategies for preventing pneumococcal colonization and disease.
Main Methods:
- Literature review of English peer-reviewed papers.
- PubMed search using terms 'pneumococcal proteins,' 'nasopharyngeal colonization,' and 'host immune response.'
- Analysis of immunological mechanisms in URT host immune response to pneumococcal proteins.
Main Results:
- Pneumococcal protein antigens induce humoral and IL-17A-mediated immune responses.
- Single protein antigens are insufficient to broadly protect against pneumococcal colonization.
- Novel vaccines require multiple conserved antigens to activate both arms of the immune system.
Conclusions:
- Future vaccines should combine multiple conserved protein antigens for broad protection.
- Vaccine strategies should aim to reduce, not eradicate, pneumococcal carriage.
- Intranasal administration may optimize vaccine efficacy by inducing mucosal immunity and reducing URT pneumococcal density.
Abstract:
Introduction: Nasopharyngeal colonization is a precondition for mucosal and invasive pneumococcal disease. Prevention of colonization may reduce pneumococcal transmission and disease incidence. Therefore, several protein-based pneumococcal vaccines are currently under investigation. Areas covered: We aimed to better understand the host immune responses to pneumococcal proteins in the upper respiratory tract (URT) that could facilitate the development of serotype-independent pneumococcal vaccines. English peer-reviewed papers reporting immunological mechanisms involved in host immune response to pneumococcal proteins in the URT were retrieved through a PubMed search using the terms 'pneumococcal proteins,' 'nasopharyngeal colonization' and/or 'cellular/humoral host immune response.' Expert opinion: Although pneumococcal protein antigens induce humoral immune responses, as well as IL-17A-mediated immunity, none of them, when used as single antigen, is sufficient to control and broadly protect against pneumococcal colonization. Novel vaccines should contain multiple conserved protein antigens to activate both arms of the immune system and evoke protection against the whole spectrum of pneumococcal variants by reducing, rather than eradicating, pneumococcal carriage. The highest efficacy would likely be achieved when the vaccine is intranasally applied, inducing mucosal immunity and enhancing the first line of defense by restricting pneumococcal density in the URT, which in turn will lead to reduced transmission and protection against disease.
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