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Coverage of community-wide mass drug administration platforms for soil-transmitted helminths in Benin, India, and Malawi: findings from the DeWorm3 project

  • Arianna Rubin Means
  • , Kristjana Hrönn Ásbjörnsdóttir
  • , Katherine C. Sharrock
  • , Sean R. Galagan
  • , Kumudha Aruldas
  • , Euripide Avokpaho
  • , Félicien Chabi
  • , Katherine E. Halliday
  • , Parfait Houngbegnon
  • , Gideon John Israel
  • , Saravanakumar Puthupalayam Kaliappan
  • , David Kennedy
  • , Hugo Legge
  • , William E. Oswald
  • , Gokila Palanisamy
  • , Elliott Rogers
  • , Joseph Timothy
  • , Emily Pearman
  • , Rohan Michael Ramesh
  • , James Simwanza
  • Jasmine Farzana Sheik-Abdullah, Mariyam Sheikh, Comlanvi Innocent Togbevi, Stefan Witek-McManus, Rachel L. Pullan, Robin Bailey, Khumbo Kalua, Moudachirou Ibikounlé, Adrian J.F. Luty, Sitara S.R. Ajjampur, Judd L. Walson
  • University of Washington
  • University of Iceland
  • Christian Medical College
  • Institut de Recherche Cliniques du Benin (IRCB)
  • London School of Hygiene and Tropical Medicine
  • RTI International
  • University College London
  • Lions Sight First Eye Hospital
  • University of British Columbia
  • Tropical Infectious Diseases Research Center (TIDRC)Université d’Abomey-Calavi
  • Institut de recherche pour le développement
  • Johns Hopkins University

Research output: Contribution to journalArticlepeer-review

3 Citations (Scopus)

Abstract

Background: Soil-transmitted helminths (STH) affect approximately 1.5 billion people globally. The current STH control strategy is annual or twice-annual preventive chemotherapy, typically school-based deworming targeting children and women of reproductive age. Mathematical modeling suggests that it may be possible to interrupt STH transmission through high-coverage community-wide mass drug administration (cMDA). DeWorm3 is a cluster randomized trial testing cMDA for prevalence reduction and transmission interruption. The purpose of this study is to describe coverage of cMDA in study clusters over time and correlates of coverage at individual and cluster levels. 

Methods: From 2018–2020, DeWorm3 delivered six rounds of cMDA with 400 mg albendazole at sites in Benin, India, and Malawi. We report coverage, treatment uptake, and directly observed therapy across all rounds. Factors associated with coverage at the cluster level were identified using binomial generalized estimating equations, while factors associated with non-treatment at the individual level were identified using binomial mixed-effects models. 

Results: Coverage was high across all clusters and rounds, exceeding the WHO target of 75% in all sites and across all rounds (78% to 95%); cluster-level coverage tended to increase over time. Younger, unmarried, and migratory adults were more likely to be untreated at all sites; adult males were more likely to be untreated in Benin and Malawi. Among children, girls were more likely to be untreated, as were non-school-attending and migratory children. Higher adult education was associated with greater odds of non-treatment among adults, but lower odds among children in the household. Belonging to a less wealthy or minority language-speaking household was associated with non-treatment among both adults and children. 

Conclusions: It is possible to deliver community-wide MDA with high coverage. Unique individual and community-level factors influence treatment across settings, and these may be addressed through targeted programming. Trial Registration: Field Studies on the Feasibility of Interrupting the Transmission of Soil-transmitted Helminths (STH), NCT03014167.

Original languageEnglish
Article number72
JournalInfectious Diseases of Poverty
Volume13
Issue number1
DOIs
Publication statusPublished - 8 Oct 2024
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

  • Albendazole
  • Community
  • Coverage
  • Mass drug administration
  • Soil-transmitted helminths

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