Ontology highlight
ABSTRACT: Background
Malaria control in Liberia depends upon universal coverage with pyrethroid-impregnated long-lasting insecticidal nets (LLINs). Despite regular mass distribution, LLIN coverage and usage is patchy. Pyrethroid resistance in malaria vectors may further reduce LLIN efficacy. Durable Wall Lining (DWL), a novel material treated with two non-pyrethroid class insecticides, was designed to be installed onto the surface of inner walls, and cover openings and ceiling surfaces of rural houses.Objectives
AIM: To determine the malaria control efficacy of DWL.Primary objective
To determine if DWL has an additional protective effect in an area of pyrethroid resistance.Secondary objectives
To compare surface bio-availability of insecticides and entomological effectiveness over the study duration.Design
A cluster randomized trial.Participants
Children aged 2-59 months.Control arm
50 houses per 20 clusters, all of which received LLIN within the previous 12 months.Active arm
50 houses per 20 experimental clusters, all of which received LLINs with the previous 12 months, and had internal walls and ceilings lined with DWL.Randomisation
Cluster villages were randomly allocated to control or active arms, and paired on 4 covariates.Main outcome measures
PRIMARY MEASURE: Prevalence of infection with P. falciparum in children aged 2 to 59 months.Secondary measure
Surface bioavailability and entomological effectiveness of DWL active ingredients.Results
Plasmodium falciparum prevalence in active clusters after 12 months was 34.6% compared to 40.1% in control clusters (p = 0.052). The effect varied with elevation and was significant (RR = 1.3, p = 0.022) in 14 pairs of upland villages. It was not significant (RR = 1.3, p = 0.344) in 6 pairs of coastal villages. Pooled risk ratio (RR) was calculated in SAS (Cary, NC, USA) using the Cochran-Mantel-Haenszel (CMH) test for upland and coastal cluster pairs. DWL efficacy was sustained at almost 100% for 12 months.Conclusions
Findings indicate that DWL is a scalable and effective malaria control intervention in stable transmission areas with pyrethroid-resistant vectors, where LLIN usage is difficult to achieve, and where local housing designs include large gable and eve openings. Trial registration ClinicalTrials.gov identifier: NCT02448745 (19 May 2015): https://clinicaltrials.gov/ct2/show/NCT02448745.
SUBMITTER: Giesbrecht D
PROVIDER: S-EPMC9837910 | biostudies-literature | 2023 Jan
REPOSITORIES: biostudies-literature
Giesbrecht David D Belleh Tuwuyor G TG Pontarollo Julie J Hinneh Victor S VS Pratt Oliver O Kamal Sajid S Allan Richard R
Malaria journal 20230112 1
<h4>Background</h4>Malaria control in Liberia depends upon universal coverage with pyrethroid-impregnated long-lasting insecticidal nets (LLINs). Despite regular mass distribution, LLIN coverage and usage is patchy. Pyrethroid resistance in malaria vectors may further reduce LLIN efficacy. Durable Wall Lining (DWL), a novel material treated with two non-pyrethroid class insecticides, was designed to be installed onto the surface of inner walls, and cover openings and ceiling surfaces of rural ho ...[more]