Th17 responses to pneumococcus in blood and adenoidal cells in children

E Oliver1, C Pope1, E Clarke2

  • 1School of Cellular and Molecular Medicine, Biomedical Sciences Building, University of Bristol, Bristol, UK.

Insights

Researchers evaluated T helper type 17 (Th17) cell cytokine responses to pneumococcal vaccine antigens in human cells. This study helps identify new vaccine targets to reduce pneumococcal infections and transmission.

Area of Science:

  • Immunology
  • Vaccinology

Background:

  • Pneumococcal infections present a significant global health challenge, driving the need for serotype-independent vaccines.
  • Current conjugate vaccines reduce colonization by specific serotypes, but mucosal effects of new antigens are crucial.
  • T helper type 17 (Th17) cell responses, independent of antibodies, have shown promise in reducing pneumococcal colonization in mouse models.

Purpose of the Study:

  • To evaluate T helper type 17 (Th17) cytokine responses to candidate pneumococcal protein vaccine antigens in human cell cultures.
  • To investigate the kinetics and characteristics of interleukin (IL)-17A and IL-22 responses in adenoidal and peripheral blood mononuclear cells.
  • To assess the potential of these responses in identifying novel vaccine antigens for reducing pneumococcal carriage.

Main Methods:

  • Human adenoidal and peripheral blood mononuclear cells were cultured and stimulated with pneumococcal antigens.
  • Interleukin (IL)-17A and IL-22 production was measured over time (days 7 and 11).
  • T cell populations (CD45RO+, CD4+, γδTCR+, CD56+) and cytokine expression were analyzed using intracellular cytokine staining and flow cytometry.

Main Results:

  • Optimal detection of IL-17A at day 7 and IL-22 at day 11 in primary cell cultures.
  • Removal of CD45RO+ memory T cells abolished Th17 cytokine responses.
  • Age-associated increases in IL-17A responses were observed in adenoidal cells, with a strong correlation between IL-17A and IL-22 responses.
  • A significant proportion of IL-22+ CD4+ T cells expressed innate markers (γδTCR and/or CD56), unlike IL-17A+ cells.
  • Responses to most candidate antigens were detected, but notably absent for PhtD, particularly in blood.

Conclusions:

  • The study provides a framework for evaluating Th17 cytokine responses to novel pneumococcal vaccine antigens in human cells.
  • The findings suggest that PhtD may not be an effective antigen for inducing protective Th17 responses relevant to colonization.
  • This approach can aid in the selection of vaccine antigens that induce mucosal immunity, potentially reducing pneumococcal carriage and transmission.

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