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Characterizing Newcastle disease virus transmission dynamics and the impact of vaccination in village settings

  • Justin Sheen
  • , Maximilian M. Nguyen
  • , M. Ando Ravelomanantsoa
  • , Hervet J. Randriamady
  • , Kaliana Andriamananjara-Cunderlik
  • , C. Jessica E. Metcalf
  • , Christopher D. Golden

Research output: Contribution to journalArticlepeer-review

Abstract

Newcastle disease virus (NDV) is a virulent poultry pathogen with global circulation. Several vaccines reduce individual disease burden, including the attenuated, thermotolerant, avirulent, live-virus I-2 vaccine, but estimates of the population-scale impact of such vaccines in natural transmission settings are still lacking. Here, we leverage a unique 8 year dataset of poultry mortality from village settings in Madagascar, spanning pre-vaccination and vaccination periods with the I-2 vaccine, and fit a compartmental transmission model to characterize transmission and impact of vaccination. Pre-vaccination, the basic reproduction number, or number of new infections per infected individual in a completely susceptible population, is estimated to be R0=1.41 [s.d. = 0.45] and the mean herd immunity threshold for local elimination is estimated to be η=25% [s.d. = 17%]. We estimate that the protective effectiveness of the I-2 vaccine in preventing viral shedding under village conditions was 83% (95% confidence interval [28%, 95%]). We also simulated counterfactual trajectories of no vaccine deployment versus true vaccine coverage levels in villages, estimating that 90 infections of NDV were averted per month (60% reduction compared with baseline number of infections) due to the vaccination campaign. Additionally, we report descriptive statistics on the ownership and epidemiology of backyard poultry populations. Our results provide a foundation to delineate prospects of vaccination campaigns for local elimination to promote nutritional and economic sustainability in smallholder poultry farms.

Original languageEnglish (US)
JournalProceedings of the Royal Society B: Biological Sciences
Volume293
Issue number2065
DOIs
StatePublished - Feb 18 2026

All Science Journal Classification (ASJC) codes

  • General Medicine
  • General Biochemistry, Genetics and Molecular Biology
  • General Immunology and Microbiology
  • General Environmental Science
  • General Agricultural and Biological Sciences

Keywords

  • Newcastle disease virus
  • herd immunity
  • poultry
  • reproduction number
  • transmission dynamics
  • vaccination

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