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Published on: July 26, 2019
Roles for Pathogen Interference in Influenza Vaccination, with Implications to Vaccine Effectiveness (VE) and
Rodney P Jones1, Andrey Ponomarenko2
1Healthcare Analysis and Forecasting, Wantage OX12 0NE, UK.
Abstract:
Pathogen interference is the ability of one pathogen to alter the course and clinical outcomes of infection by another. With up to 3000 species of human pathogens the potential combinations are vast. These combinations operate within further immune complexity induced by infection with multiple persistent pathogens, and by the role which the human microbiome plays in maintaining health, immune function, and resistance to infection. All the above are further complicated by malnutrition in children and the elderly. Influenza vaccination offers a measure of protection for elderly individuals subsequently infected with influenza. However, all vaccines induce both specific and non-specific effects. The specific effects involve stimulation of humoral and cellular immunity, while the nonspecific effects are far more nuanced including changes in gene expression patterns and production of small RNAs which contribute to pathogen interference. Little is known about the outcomes of vaccinated elderly not subsequently infected with influenza but infected with multiple other non-influenza winter pathogens. In this review we propose that in certain years the specific antigen mix in the seasonal influenza vaccine inadvertently increases the risk of infection from other non-influenza pathogens. The possibility that vaccination could upset the pathogen balance, and that the timing of vaccination relative to the pathogen balance was critical to success, was proposed in 2010 but was seemingly ignored. Persons vaccinated early in the winter are more likely to experience higher pathogen interference. Implications to the estimation of vaccine effectiveness and influenza deaths are discussed.
Insights
Seasonal influenza vaccines may inadvertently increase the risk of other infections in the elderly. Early vaccination might heighten pathogen interference, impacting vaccine effectiveness estimates and disease burden. Further research is crucial.
Area of Science:
- Immunology
- Infectious Diseases
- Vaccinology
Background:
- Pathogen interference describes how one pathogen affects another's infection.
- The human microbiome and immune complexity influence infection outcomes.
- Malnutrition complicates infections in vulnerable populations.
Purpose of the Study:
- To explore the potential for seasonal influenza vaccines to increase susceptibility to non-influenza pathogens.
- To investigate the role of non-specific vaccine effects in pathogen interference.
- To examine the implications for vaccine effectiveness and influenza mortality estimates.
Main Methods:
- Review of existing literature on pathogen interference and vaccine immunology.
- Analysis of the potential impact of influenza vaccine antigen composition on non-specific immune effects.
- Discussion of the timing of vaccination in relation to pathogen exposure.
Main Results:
- Vaccines induce specific (antibody/cell-mediated) and non-specific immune effects.
- Non-specific effects, including gene expression changes and small RNAs, can mediate pathogen interference.
- Early-season influenza vaccination may correlate with increased pathogen interference.
Conclusions:
- Seasonal influenza vaccines might, in some cases, increase the risk of other infections.
- The timing of vaccination relative to pathogen exposure is critical.
- Current methods for estimating vaccine effectiveness may need refinement to account for pathogen interference.
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