Competition, coinfection and strain replacement in models of Bordetella Pertussis
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Accepted version
Author(s)
Colijn, C
Ayabina, D
Trotter, C
Turner, K
Nicoli, E
Type
Journal Article
Abstract
Pertussis, or whooping cough, is an important respiratory infection causing considerable infant mortality worldwide. Recently, incidence has risen in countries with strong vaccine programmes and there are concerns about antigenic shift resulting in vaccine evasion. Interactions between pertussis and non-vaccine-preventable strains will play an important role in the evolution and population dynamics of pertussis. In particular, if we are to understand the role strain replacement plays in vaccinated settings, it will be essential to understand how strains or variants of pertussis interact. Here we explore under what conditions we would expect strain replacement to be of concern in pertussis. We develop a dynamic transmission model that allows for coinfection between Bordetella pertussis (the main causative agent of pertussis) and a strain or variant unaffected by the vaccine. We incorporate both neutrality (in the sense of ecological/population genetic neutrality) and immunity into the model, leaving the specificity of the immune response flexible. We find that strain replacement may be considerable when immunity is non-specific. This is in contrast to previous findings where neutrality was not considered. We conclude that the extent to which models reflect ecological neutrality can have a large impact on conclusions regarding strain replacement. This will likely have onward consequences for estimates of vaccine efficacy and cost-effectiveness.
Keywords
Bordetella pertussis; Strain replacement; Coinfection; Competition; Epidemic; Specific immunity
Keywords
Bordetella pertussis; Strain replacement; Coinfection; Competition; Epidemic; Specific immunity
Date Issued
2015-05-30
Date Acceptance
2015-05-22
Citation
Theoretical Population Biology, 2015, 103, pp.84-92
ISSN
1096-0325
Publisher
Elsevier
Start Page
84
End Page
92
Journal / Book Title
Theoretical Population Biology
Volume
103
Copyright Statement
© 2015, Elsevier. Licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/
Publication Status
Published