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Published on: February 23, 2014
An evaluation of emerging vaccines for childhood pneumococcal pneumonia
Julia Webster1, Evropi Theodoratou, Harish Nair
1Centre for Population Health Sciences, Global Health Academy, The University of Edinburgh, UK.
Insights
New pneumococcal vaccines show promise for reducing child mortality. Experts are optimistic about conjugate vaccines, predicting a 25% reduction in pneumonia deaths, and protein vaccines, predicting a 30% reduction.
Area of Science:
- Public Health
- Vaccinology
- Infectious Diseases
Background:
- Pneumonia, caused by Streptococcus pneumoniae (SP), is a leading global cause of child mortality.
- Current pneumococcal conjugate vaccines cover limited SP serotypes, necessitating broader protection.
- Developing vaccines against a wider range of SP serotypes is crucial to reduce the disease burden.
Purpose of the Study:
- To evaluate emerging Streptococcus pneumoniae (SP) vaccines for their potential to reduce child mortality.
- To prioritize research investments in new SP vaccine development using a modified CHNRI methodology.
- To assess the feasibility, efficacy, cost, and impact of novel SP vaccine candidates.
Main Methods:
- A modified Child Health and Nutrition Research Initiative (CHNRI) methodology was employed.
- Systematic literature review assessed vaccine criteria: answerability, efficacy, cost, deliverability, burden reduction, acceptability, and equity.
- An expert opinion exercise with 20 specialists evaluated vaccine candidates on a 0-100% scale.
Main Results:
- Experts showed high optimism (>80%) for conjugate SP vaccines meeting CHNRI criteria.
- Conjugate SP vaccines were predicted to reduce childhood pneumonia mortality by a median of 25%.
- Common protein vaccines for SP showed lower optimism for answerability (72%) and development costs (50%), but predicted a median 30% reduction in pneumonia mortality.
Conclusions:
- Improved SP vaccines represent a significant investment opportunity for global child health.
- Both conjugate and protein-based SP vaccines hold substantial potential to decrease child mortality worldwide.
- Further development of broad-spectrum SP vaccines is warranted to combat pneumonia effectively.
Background:
Pneumonia is the leading cause of child mortality worldwide. Streptococcus pneumoniae (SP) or pneumococcus is estimated to cause 821,000 child deaths each year. It has over 90 serotypes, of which 7 to 13 serotypes are included in current formulations of pneumococcal conjugate vaccines that are efficacious in young children. To further reduce the burden from SP pneumonia, a vaccine is required that could protect children from a greater diversity of serotypes. Two different types of vaccines against pneumococcal pneumonia are currently at varying stages of development: a multivalent pneumococcal conjugate vaccine covering additional SP serotypes; and a conserved common pneumococcal protein antigen (PPA) vaccine offering protection for all serotypes.
Methods:
We used a modified CHNRI methodology for setting priorities in health research investments. This was done in two stages. In Stage I, we systematically reviewed the literature related to emerging SP vaccines relevant to several criteria of interest: answerability; efficacy and effectiveness; cost of development, production and implementation; deliverability, affordability and sustainability; maximum potential for disease burden reduction; acceptability to the end users and health workers; and effect on equity. In Stage II, we conducted an expert opinion exercise by inviting 20 experts (leading basic scientists, international public health researchers, international policy makers and representatives of pharmaceutical companies). The policy makers and industry representatives accepted our invitation on the condition of anonymity, due to sensitive nature of their involvement in such exercises. They answered questions from CHNRI framework and their "collective optimism" towards each criterion was documented on a scale from 0 to 100%.
Results:
The experts expressed very high level of optimism (over 80%) that low-cost polysaccharide conjugate SP vaccines would satisfy each of the 9 relevant CHNRI criteria. The median potential effectiveness of conjugate SP vaccines in reduction of overall childhood pneumonia mortality was predicted to be about 25% (interquartile range 20-38%, min. 15%, max 45%). For low cost, cross-protective common protein vaccines for SP the experts expressed concerns over answerability (72%) and the level of development costs (50%), while the scores for all other criteria were over 80%. The median potential effectiveness of common protein vaccines in reduction of overall childhood pneumonia mortality was predicted to be about 30% (interquartile range 26-40%, min. 20%, max 45%).
Conclusions:
Improved SP vaccines are a very promising investment that could substantially contribute to reduction of child mortality world-wide.
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