Intranasal Immunization with the Commensal Streptococcus mitis Confers Protective Immunity against Pneumococcal Lung

Sudhanshu Shekhar1, Rabia Khan2, Karl Schenck2

  • 1Institute of Oral Biology, Faculty of Dentistry, University of Oslo, Oslo, Norway sudhanshu.shekhar@odont.uio.no f.c.petersen@odont.uio.no.

Insights

Intranasal vaccination with Streptococcus mitis protects against Streptococcus pneumoniae lung infections by boosting antibodies and IL-17A. A modified S. mitis strain enhanced protection against specific pneumococcal serotypes.

Area of Science:

  • Microbiology
  • Immunology
  • Vaccinology

Background:

  • Streptococcus pneumoniae poses a global health threat, causing numerous diseases.
  • Current vaccines cover limited serotypes, necessitating broader protection strategies.
  • Streptococcus mitis shares immunogenic traits with S. pneumoniae, making it a potential vaccine candidate.

Purpose of the Study:

  • To evaluate the protective potential of wild-type Streptococcus mitis against S. pneumoniae lung infection in mice.
  • To assess the efficacy of a modified S. mitis strain expressing S. pneumoniae type 4 capsule (S. mitis TIGR4cps) for targeted protection.

Main Methods:

  • Intranasal immunization of mice with wild-type S. mitis or S. mitis TIGR4cps.
  • Assessment of serum IgG and IgA antibody levels, and cytokine production (IL-17A, IFN-γ, IL-4).
  • Evaluation of bacterial load in respiratory tissues post-challenge with S. pneumoniae strains D39 and TIGR4.

Main Results:

  • S. mitis immunization significantly increased antibodies reactive to both S. mitis and S. pneumoniae, and elevated IL-17A production.
  • Immunization with S. mitis reduced bacterial load in respiratory tissues after challenge with S. pneumoniae D39 and TIGR4.
  • S. mitis TIGR4cps provided superior protection against S. pneumoniae TIGR4 challenge compared to wild-type S. mitis.

Conclusions:

  • S. mitis can elicit serotype-independent protection against S. pneumoniae lung infection.
  • The combination of S. mitis and its modified strain offers potential for broad and specific protection against pneumococcal diseases.
  • Findings support the development of S. mitis-based vaccines for enhanced pneumococcal disease prevention.

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