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Published on: February 23, 2014
Advances in pneumococcal vaccines: advantages for infants and children
Jolanta Bernatoniene1, Adam Finn
1Department of Clinical Sciences South Bristol, Institute of Child Health, University of Bristol, Level 6, UBHT Education Centre, Upper Maudlin St., Bristol, BS2 8AE, UK. J.Bernatoniene@bristol.ac.uk
Insights
Pneumococcal conjugate vaccines (PCVs) are effective but limited in serotype coverage. New protein vaccines are needed for broader protection against Streptococcus pneumoniae disease.
Area of Science:
- Pediatrics
- Immunology
- Vaccinology
Background:
- Invasive pneumococcal diseases are a major global health concern, particularly in children.
- Streptococcus pneumoniae is the leading cause of bacterial meningitis in children and a significant vaccine-preventable disease.
- The 23-valent pneumococcal polysaccharide vaccine is not effective in young children.
Purpose of the Study:
- To review the current status of pneumococcal disease and vaccines.
- To highlight the limitations of current pneumococcal conjugate vaccines (PCVs).
- To discuss the need for new, broader-coverage, and cost-effective pneumococcal vaccines.
Main Methods:
- Review of existing literature on pneumococcal disease epidemiology.
- Analysis of the efficacy and limitations of current pneumococcal vaccines (polysaccharide and conjugate).
- Discussion of ongoing research and development of novel pneumococcal vaccines, including protein-based approaches.
Main Results:
- PCVs are highly effective in infants and young children, reducing invasive and non-invasive pneumococcal diseases.
- PCVs demonstrate efficacy against resistant strains and reduce nasopharyngeal carriage.
- Limitations of PCVs include limited serotype coverage, potential for serotype replacement, and unclear correlates of protection (antibody avidity and opsonic activity are key).
Conclusions:
- Monitoring disease burden and immune correlates is crucial for evaluating new-generation vaccines.
- There is a need for lower-cost pneumococcal vaccines with broader serotype coverage.
- Protein-based vaccines are under development, offering potential for easier manufacturing and multi-serotype protection against Streptococcus pneumoniae.
Abstract:
The introduction of Haemophilus influenzae type b (Hib) vaccine into the universal immunisation schedules of many industrialised countries and the subsequent remarkable decline in the incidence of invasive Hib disease has further highlighted the impact of invasive pneumococcal diseases. Streptococcus pneumoniae is now the leading cause of bacterial meningitis in children in many settings and a leading cause of vaccine-preventable bacterial disease in children worldwide. The currently marketed 23-valent pneumococcal polysaccharide vaccine provides large serotype coverage at a relatively low cost. However, it is not efficacious in young children. Pneumococcal conjugate vaccines (PCVs) are highly effective in preventing invasive disease in infants and young children, with favourable safety and immunogenicity profiles. These vaccines have also shown efficacy in reducing cases of non-invasive disease (i.e. otitis media), nasopharyngeal acquisition of vaccine-specific serotypes of S. pneumoniae, and protection against pneumococcal disease caused by resistant strains. However, PCV contains a limited number of pneumococcal serotypes and, given adequate ecological pressure, replacement disease by non-vaccine serotypes remains a threat, particularly in areas with very high disease burden. Furthermore, although capsular-specific antibodies have been shown to be highly protective, it remains unclear what concentration of these serotype-specific antibodies protect against disease and, more recently, it has become clear that opsonic activity and avidity of these antibodies are more critical determinants of protection than concentration. Therefore, monitoring disease burden and defining immune correlates of protection after widespread use of conjugate vaccines are crucial for the evaluation of these new generation vaccines. Furthermore, a need exists to develop pneumococcal vaccines with lower cost and larger serotype coverage. Development of one or more protein vaccines that might be easier and, thus, less expensive to manufacture, and which might provide protection against multiple serotypes, is in progress. This article reviews the current state of pneumococcal disease and pneumococcal vaccines in clinical use.
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