Interleukin-17A Mediates Acquired Immunity to Pneumococcal Colonization
Adult
CD4-Positive T-Lymphocytes
0301 basic medicine
QH301-705.5
Neutrophils
610
infectious diseases
immune response
Pneumococcal Infections
immunology
Mice
03 medical and health sciences
616
Animals
Humans
Biology (General)
Child
Interleukin-17
Immunity
RC581-607
Adoptive Transfer
3. Good health
Mice, Inbred C57BL
Streptococcus pneumoniae
bacterial infections
Female
Immunologic diseases. Allergy
Research Article
DOI:
10.1371/journal.ppat.1000159
Publication Date:
2008-09-18T22:16:58Z
AUTHORS (15)
ABSTRACT
Although anticapsular antibodies confer serotype-specific immunity to pneumococci, children increase their ability to clear colonization before these antibodies appear, suggesting involvement of other mechanisms. We previously reported that intranasal immunization of mice with pneumococci confers CD4+ T cell-dependent, antibody- and serotype-independent protection against colonization. Here we show that this immunity, rather than preventing initiation of carriage, accelerates clearance over several days, accompanied by neutrophilic infiltration of the nasopharyngeal mucosa. Adoptive transfer of immune CD4+ T cells was sufficient to confer immunity to naïve RAG1(-/-) mice. A critical role of interleukin (IL)-17A was demonstrated: mice lacking interferon-gamma or IL-4 were protected, but not mice lacking IL-17A receptor or mice with neutrophil depletion. In vitro expression of IL-17A in response to pneumococci was assayed: lymphoid tissue from vaccinated mice expressed significantly more IL-17A than controls, and IL-17A expression from peripheral blood samples from immunized mice predicted protection in vivo. IL-17A was elicited by pneumococcal stimulation of tonsillar cells of children or adult blood but not cord blood. IL-17A increased pneumococcal killing by human neutrophils both in the absence and in the presence of antibodies and complement. We conclude that IL-17A mediates pneumococcal immunity in mice and probably in humans; its elicitation in vitro could help in the development of candidate pneumococcal vaccines.
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