Cascades of effectiveness of next-generation insecticide-treated nets against malaria, from entomological trials to real-life conditions
Abstract
Abstract As insecticide resistance spreads in Africa, next-generation insecticide-treated nets (ITNs) are increasingly being deployed to protect vulnerable populations against malaria. While these nets provide greater entomological efficacy against resistant mosquitoes, their effectiveness against malaria transmission also depends on other factors, such as durability, access, usage, and activity patterns of hosts and vectors. Here, we quantify the impact of two next-generation ITNs, namely Interceptor®G2 (chlorfenapyr-pyrethroid) and Olyset® Plus (piperonyl butoxide-pyrethroid), in a cascade from entomological efficacy to population-level effectiveness. We use a mathematical model that we parameterize with entomological data and validate against results from randomized controlled trials. We found that, beyond entomological factors, operational factors including functional survival, ITN use and in-bed exposure critically impact ITN effectiveness overall and per ITN types. Our results obtained for Tanzania can be extended to other contexts in a dashboard allowing users to explore product selection based on setting-specific factors that influence ITN effectiveness.
Article Details
Authors (19)
Clara Champagne
Jeanne Lemant
Alphonce Assenga
Ummi A. Kibondo
Ruth G. Lekundayo
Emmanuel Mbuba
Jason Moore
Joseph B. Muganga
Watson S. Ntabaliba
Olukayode G. Odufuwa
Johnson Kyeba Swai
Maria Alexa
Roland Goers
Monica Golumbeanu
Nakul Chitnis
Amanda Ross
Raphael N’Guessan
Sarah Moore
Emilie Pothin