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Vaccination strategies for Ebola in the democratic republic of Congo: the who-Ebola modeling collaboration

Title: Vaccination strategies for Ebola in the democratic republic of Congo: the who-Ebola modeling collaboration
Authors: Marco Ajelli; Jean-Jacques Muyembe; Alhassane Touré; Abdourahamane Diallo; Maria Litvinova; Stefano Merler; Sabué Mulangu; Aminata Bagayoko; Aissatou Bah; Ibrahima Bah; Aissatou Barry; Fatoumata Barry; Mohamed Chérif; Doussou Condé; Alpha A. Diallo; Fatoumata Diallo; Mory Diakité; Kassié Doré; Koundouno A. Mapan; Thérèse Koundouno; Patrice K. Onivogui; Fassou Lamah; Henry Maneno; Alphonse Nomou; Kourouma Sekouba; Ismaila Sani; Abdoulaye Soumah; Mamadou M. Sy; Pierre-Stéphane Gsell; M. Elizabeth Halloran; Ana Maria Henao-Restrepo; Ibrahima Socé Fall; Mike J. Ryan; Peter Salama; Alessandro Vespignani; Ira M. Longini, Jr.
Source: International Journal of Infectious Diseases, Vol 153, Iss , Pp 107779- (2025)
Publisher Information: Elsevier
Publication Year: 2025
Collection: Directory of Open Access Journals: DOAJ Articles
Subject Terms: Ring vaccination; Effectiveness; EVD; Agent-based model; Infectious and parasitic diseases; RC109-216
Description: Objectives: Assess the effectiveness of ring vaccination in controlling an Ebola virus outbreak in the Democratic Republic of Congo. Methods: This analysis focuses on two areas of the Democratic Republic of Congo, Beni and Butembo/Katwa, which were affected during the 2018-2020 Ebola outbreak. To simulate Ebola virus transmission, we used a spatially explicit agent-based model with households, health care facilities, and Ebola treatment units. Model parameters were calibrated using data collected under the ring-vaccination expanded-access protocol implemented during the outbreak. The model was used to estimate the impact of the deployed ring vaccination strategy, compared to what would have happened if there had been no ring vaccination. The impact of alternative vaccination strategies (mass vaccination, targeted geographic vaccination, and ring-plus) was evaluated as well. Results: Compared to a hypothetical scenario where vaccination was not implemented, ring vaccination was estimated to have averted 54.3% (SD, 32.5%) and 62.7% (SD, 23.2%) of potential cases in Beni and Butembo/Katwa, respectively. Under ring vaccination, the average number of averted cases per 1000 vaccine doses administered was 15.1 (SD, 16.8) and 27.8 (SD, 22.9), in Beni and Butembo/Katwa, respectively. In terms of number of averted cases per vaccine dose, ring vaccination was estimated to be more efficient than any of the other evaluated vaccination strategies. Conclusion: Despite some level of social instability, ring vaccination with the rVSV-ZEBOV vaccine was highly effective during the 2018-2020 Ebola outbreak in the Democratic Republic of Congo. As compared to alternative vaccination strategies, ring vaccination was estimated to be the most efficient.
Document Type: article in journal/newspaper
Language: English
ISBN: 978-1-201-97122-1; 1-201-97122-5
Relation: http://www.sciencedirect.com/science/article/pii/S1201971225000037; https://doaj.org/toc/1201-9712; https://doaj.org/article/688974327c5a4f6abed43a92e9ca04a6
DOI: 10.1016/j.ijid.2025.107779
Availability: https://doi.org/10.1016/j.ijid.2025.107779; https://doaj.org/article/688974327c5a4f6abed43a92e9ca04a6
Accession Number: edsbas.D679BBF6
Database: BASE