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Inapparent infections shape the transmission heterogeneity of dengue

  • Gonzalo M. Vazquez-Prokopec
  • , Amy C. Morrison
  • , Valerie Paz-Soldan
  • , Steven T. Stoddard
  • , William Koval
  • , Lance A. Waller
  • , T. Alex Perkins
  • , Alun L. Lloyd
  • , Helvio Astete
  • , John Elder
  • , Thomas W. Scott
  • , Uriel Kitron
  • Emory University School of Medicine
  • School of Veterinary Medicine
  • Tulane University School of Public Health and Tropical Medicine
  • San Diego State University
  • University of Chicago
  • Rollins School of Public Health
  • University of Notre Dame
  • North Carolina State University
  • NAMRID-Unit 3800
  • University of California

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

Transmission heterogeneity, whereby a disproportionate fraction of pathogen transmission events result from a small number of individuals or geographic locations, is an inherent property of many, if not most, infectious disease systems. For vector-borne diseases, transmission heterogeneity is inferred from the distribution of the number of vectors per host, which could lead to significant bias in situations where vector abundance and transmission risk at the household do not correlate, as is the case with dengue virus (DENV). We used data from a contact tracing study to quantify the distribution of DENV acute infections within human activity spaces (AS), the collection of residential locations an individual routinely visits, and quantified measures of virus transmission heterogeneity from two consecutive dengue outbreaks (DENV-4 and DENV-2) that occurred in the city of Iquitos, Peru. Negative-binomial distributions and Pareto fractions showed evidence of strong overdispersion in the number of DENV infections by AS and identified super-spreading units (SSUs): i.e. AS where most infections occurred. Approximately 8% of AS were identified as SSUs, contributing to more than 50% of DENV infections. SSU occurrence was associated more with DENV-2 infection than with DENV-4, a predominance of inapparent infections (74% of all infections), households with high Aedes aegypti mosquito abundance, and high host susceptibility to the circulating DENV serotype. Marked heterogeneity in dengue case distribution, and the role of inapparent infections in defining it, highlight major challenges faced by reactive interventions if those transmission units contributing the most to transmission are not identified, prioritized, and effectively treated.

Original languageEnglish
Article numberpgad024
JournalPNAS Nexus
Volume2
Issue number3
DOIs
StatePublished - 1 Mar 2023
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • arbovirus
  • mobility
  • super-spreading
  • transmission heterogeneity

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