Mathematical models for dengue fever epidemiology: A 10-year systematic review

Mathematical models have a long history in epidemiological research, and as the COVID-19 pandemic progressed, research on mathematical modeling became imperative and very influential to understand the epidemiological dynamics of disease spreading. Mathematical models describing dengue fever epidemio...

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Published inPhysics of life reviews Vol. 40; pp. 65 - 92
Main Authors Aguiar, Maíra, Anam, Vizda, Blyuss, Konstantin B., Estadilla, Carlo Delfin S., Guerrero, Bruno V., Knopoff, Damián, Kooi, Bob W., Srivastav, Akhil Kumar, Steindorf, Vanessa, Stollenwerk, Nico
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 01.03.2022
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Summary:Mathematical models have a long history in epidemiological research, and as the COVID-19 pandemic progressed, research on mathematical modeling became imperative and very influential to understand the epidemiological dynamics of disease spreading. Mathematical models describing dengue fever epidemiological dynamics are found back from 1970. Dengue fever is a viral mosquito-borne infection caused by four antigenically related but distinct serotypes (DENV-1 to DENV-4). With 2.5 billion people at risk of acquiring the infection, it is a major international public health concern. Although most of the cases are asymptomatic or mild, the disease immunological response is complex, with severe disease linked to the antibody-dependent enhancement (ADE) - a disease augmentation phenomenon where pre-existing antibodies to previous dengue infection do not neutralize but rather enhance the new infection. Here, we present a 10-year systematic review on mathematical models for dengue fever epidemiology. Specifically, we review multi-strain frameworks describing host-to-host and vector-host transmission models and within-host models describing viral replication and the respective immune response. Following a detailed literature search in standard scientific databases, different mathematical models in terms of their scope, analytical approach and structural form, including model validation and parameter estimation using empirical data, are described and analyzed. Aiming to identify a consensus on infectious diseases modeling aspects that can contribute to public health authorities for disease control, we revise the current understanding of epidemiological and immunological factors influencing the transmission dynamics of dengue. This review provide insights on general features to be considered to model aspects of real-world public health problems, such as the current epidemiological scenario we are living in. •10-year systematic review on mathematical models for dengue fever epidemiology.•Detailed review of multi-strain frameworks describing host-to-host dengue transmission models.•Detailed review of vector-host dengue transmission.•Detailed review of within-host dengue models.•Comprehensive description of dengue and COVID-19 co-infection modeling.
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ISSN:1571-0645
1873-1457
DOI:10.1016/j.plrev.2022.02.001