Literature DB >> 25800537

Capturing the dynamics of pathogens with many strains.

Adam J Kucharski1, Viggo Andreasen2, Julia R Gog3.   

Abstract

Pathogens that consist of multiple antigenic variants are a serious public health concern. These infections, which include dengue virus, influenza and malaria, generate substantial morbidity and mortality. However, there are considerable theoretical challenges involved in modelling such infections. As well as describing the interaction between strains that occurs as a result cross-immunity and evolution, models must balance biological realism with mathematical and computational tractability. Here we review different modelling approaches, and suggest a number of biological problems that are potential candidates for study with these methods. We provide a comprehensive outline of the benefits and disadvantages of available frameworks, and describe what biological information is preserved and lost under different modelling assumptions. We also consider the emergence of new disease strains, and discuss how models of pathogens with multiple strains could be developed further in future. This includes extending the flexibility and biological realism of current approaches, as well as interface with data.

Entities:  

Keywords:  Cross-immunity; Evolution; Influenza; Multi-strain pathogens; Transmission model

Mesh:

Substances:

Year:  2015        PMID: 25800537      PMCID: PMC4698306          DOI: 10.1007/s00285-015-0873-4

Source DB:  PubMed          Journal:  J Math Biol        ISSN: 0303-6812            Impact factor:   2.259


  82 in total

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  22 in total

1.  A simple influenza model with complicated dynamics.

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3.  Immunity-induced criticality of the genotype network of influenza A (H3N2) hemagglutinin.

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Review 4.  The Collaborative Cross mouse model for dissecting genetic susceptibility to infectious diseases.

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5.  Temporal lineage dynamics of the ORF5 gene of porcine reproductive and respiratory syndrome virus in Korea in 2014-2019.

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6.  Coinfections by noninteracting pathogens are not independent and require new tests of interaction.

Authors:  Frédéric M Hamelin; Linda J S Allen; Vrushali A Bokil; Louis J Gross; Frank M Hilker; Michael J Jeger; Carrie A Manore; Alison G Power; Megan A Rúa; Nik J Cunniffe
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7.  Seasonality in risk of pandemic influenza emergence.

Authors:  Spencer J Fox; Joel C Miller; Lauren Ancel Meyers
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Review 8.  Influenza interaction with cocirculating pathogens and its impact on surveillance, pathogenesis, and epidemic profile: A key role for mathematical modelling.

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Review 9.  Influenza immune escape under heterogeneous host immune histories.

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10.  Within-Host Phenotypic Evolution and the Population-Level Control of Chronic Viral Infections by Treatment and Prophylaxis.

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