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.

Expert Review of Vaccines
|October 27, 2020
PubMed

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.

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