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Published on: August 14, 2019
An evaluation of the emerging vaccines against influenza in children
Insights
New influenza vaccines show promise but face production challenges. Continued research and investment are crucial for developing effective seasonal and pandemic vaccines for widespread use.
Area of Science:
- Public Health
- Vaccinology
- Infectious Diseases
Background:
- Influenza causes millions of acute lower respiratory infections (ALRI) in children annually, primarily in developing nations, leading to significant mortality and economic burden.
- Current egg-based inactivated influenza vaccines have limitations including annual vaccination requirements, high production costs, and inadequate pandemic response capacity.
Purpose of the Study:
- To prioritize research investments for emerging cross-protective influenza vaccines using a modified Child Health and Nutrition Research Initiative (CHNRI) methodology.
- To assess the potential of new influenza vaccine candidates based on criteria such as answerability, cost, efficacy, deliverability, affordability, sustainability, impact, acceptability, and equity.
Main Methods:
- A systematic literature review was conducted on emerging cross-protective influenza vaccines.
- An expert opinion survey involving 20 specialists evaluated vaccine candidates against predefined criteria using the CHNRI framework.
- Expert "collective optimism" was quantified on a scale of 0 to 100% for each criterion.
Main Results:
- Experts showed high optimism for vaccine deliverability, equity impact, and acceptability.
- Concerns were raised regarding answerability, development/production/implementation costs, affordability, and sustainability.
- Vaccines were expected to have higher efficacy against overall influenza disease than specifically influenza-associated pneumonia.
Conclusions:
- Advancements in newer influenza vaccine technologies may not reach large-scale production soon.
- Continued investment in research and improvement of existing vaccines is essential to accelerate the development of effective seasonal and pandemic influenza vaccines for widespread use.
Background:
Influenza is an under-appreciated cause of acute lower respiratory infections (ALRI) in children. It is estimated to cause approximately 20 million new episodes of ALRI in children annually, 97% of these occurring in developing countries. It is also estimated to result in 28000 to 112000 deaths annually in young children. Apart from hospitalisations and deaths, influenza has significant economic consequences. The current egg-based inactivated influenza vaccines have several limitations: annual vaccination, high production costs, and cannot respond adequately to meet the demand during pandemics.
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 cross-protective vaccines against influenza relevant to several criteria of interest: answerability; cost of development, production and implementation; efficacy and effectiveness; deliverability, affordability and sustainability; maximum potential impact on 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). They answered questions from the 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 for deliverability, impact on equity, and acceptability to health workers and end users. However, they expressed concerns over the criteria of answerability, low development cost, low product cost, low implementation cost, affordability and, to a lesser extent sustainability. In addition they felt that the vaccine would have higher efficacy and impact on disease burden reduction on overall influenza-associated disease rather than specifically influenza-associated pneumonia.
Conclusion:
Although the landscape of emerging influenza vaccines shows several promising candidates, it is unlikely that the advancements in the newer vaccine technologies will be able to progress through to large scale production in the near future. The combined effects of continued investments in researching new vaccines and improvements of available vaccines will hopefully shorten the time needed to the development of an effective seasonal and pandemic influenza vaccine suitable for large scale production.
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