Immunogenicity and seroefficacy of pneumococcal conjugate vaccines: a systematic review and network meta-analysis

Shuo Feng1, Julie McLellan2, Nicola Pidduck2

  • 1Oxford Vaccine Group, Department of Paediatrics, University of Oxford, Oxford, UK.

Insights

Pneumococcal conjugate vaccine-13 (PCV13) shows higher immunogenicity and seroefficacy than PCV10, reducing invasive pneumococcal disease cases. Higher antibody responses post-vaccination correlate with lower infection risk, informing optimal infant vaccination strategies.

Area of Science:

  • Pediatric Infectious Diseases
  • Vaccinology
  • Immunology

Background:

  • The World Health Organization recommends pneumococcal conjugate vaccines for infants, but evidence on comparative immunogenicity and efficacy of different vaccines is mixed.
  • Pneumococcal conjugate vaccine-10 (PCV10) and pneumococcal conjugate vaccine-13 (PCV13) are widely used, necessitating direct comparison to guide public health policy.

Approach:

  • A systematic review and meta-analysis of randomized trials comparing PCV7, PCV10, and PCV13 in children under two years old.
  • Included studies provided immunogenicity (serotype-specific IgG) and seroefficacy (risk of seroinfection) data, with individual participant data requested where available.
  • Network meta-analysis was employed for serotypes common to all vaccines, while meta-analysis was used for others. Results informed a transmission dynamics model to predict invasive pneumococcal disease (IPD) reduction.

Key Points:

  • PCV13 demonstrated significantly higher immunoglobulin G responses for serotypes 4, 9V, and 23F compared to PCV10.
  • The risk of seroinfection was lower with PCV13 for serotypes 4, 6B, 9V, 18C, and 23F.
  • A twofold increase in antibody levels post-vaccination was associated with a 54% reduction in seroinfection risk.

Conclusions:

  • Significant serotype-specific differences in immunogenicity and seroefficacy exist between PCV13 and PCV10.
  • Higher antibody responses following vaccination are linked to a decreased risk of subsequent infection.
  • These findings support the use of PCV13 over PCV10 for optimizing infant vaccination strategies and reducing IPD burden.
Abstract