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Background: Current urban vector control strategies have failed to contain dengue epidemics and to prevent the global expansion of Aedes-borne viruses (ABVs: dengue, chikungunya, Zika). Part of the challenge in sustaining effective ABV control emerges from the paucity of evidence regarding the epidemiological impact of any Aedes control method. A strategy for which there is limited epidemiological evidence is targeted indoor residual spraying (TIRS). TIRS is a modification of classic malaria indoor residual spraying that accounts for Aedes aegypti resting behavior by applying residual insecticides on exposed lower sections of walls (< 1.5 m), under furniture, and on dark surfaces.
Methods/design: We are pursuing a two-arm, parallel, unblinded, cluster randomized controlled trial to quantify the overall efficacy of TIRS in reducing the burden of laboratory-confirmed ABV clinical disease (primary endpoint). The trial will be conducted in the city of Merida, Yucatan State, Mexico (population ~ 1million), where we will prospectively follow 4600 children aged 2-15 years at enrollment, distributed in 50 clusters of 5 × 5 city blocks each. Clusters will be randomly allocated (n = 25 per arm) using covariate-constrained randomization. A "fried egg" design will be followed, in which all blocks of the 5 × 5 cluster receive the intervention, but all sampling to evaluate the epidemiological and entomological endpoints will occur in the "yolk," the center 3 × 3 city blocks of each cluster. TIRS will be implemented as a preventive application (~ 1-2 months prior to the beginning of the ABV season). Active monitoring for symptomatic ABV illness will occur through weekly household visits and enhanced surveillance. Annual sero-surveys will be performed after each transmission season and entomological evaluations of Ae. aegypti indoor abundance and ABV infection rates monthly during the period of active surveillance. Epidemiological and entomological evaluation will continue for up to three transmission seasons.
Discussion: The findings from this study will provide robust epidemiological evidence of the efficacy of TIRS in reducing ABV illness and infection. If efficacious, TIRS could drive a paradigm shift in Aedes control by considering Ae. aegypti behavior to guide residual insecticide applications and changing deployment to preemptive control (rather than in response to symptomatic cases), two major enhancements to existing practice.
Trial Registration: ClinicalTrials.gov NCT04343521 . Registered on 13 April 2020. The protocol also complies with the WHO International Clinical Trials Registry Platform (ICTRP) (Additional file 1).
Primary Sponsor: National Institutes of Health, National Institute of Allergy and Infectious Diseases (NIH/NIAID).
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http://dx.doi.org/10.1186/s13063-020-04780-7 | DOI Listing |
Afr J Prim Health Care Fam Med
August 2025
Department of Health Studies, College of Human Science, University of South Africa, Pretoria, South Africa; and Department of Public Health, School of Health Science, Shashemene Campus, Madda Walabu University, Shashemene.
Background: Malaria is a leading cause of morbidity, mortality and socio-economic burden in Ethiopia. Although the country set a goal to eradicate malaria by 2030, a resurgence has been reported recently.
Aim: This study was conducted to assess the signs of malaria, its symptoms and knowledge regarding prevention and its associated factors among rural Ethiopians.
Pestic Biochem Physiol
November 2025
Department of Entomology and Nematology, Emerging Pathogens Institute, University of Florida, Gainesville, FL 32610, USA. Electronic address:
The global rise of mosquito-borne diseases and widespread resistance to existing insecticides highlight the urgent need for novel, field-relevant mosquitocides. Here, we report the development and validation of a high-throughput, in vivo screening assay capable of evaluating adult mosquito toxicity across large chemical libraries. Utilizing a 96-well plate format, this assay enables simultaneous testing of hundreds of compounds per run using both net and filter paper substrates, with direct measurement of adult mosquito knockdown and mortality via tarsal contact - an exposure route highly relevant to real-world vector control tools such as long-lasting insecticide-treated nets (LLINs) and indoor residual spraying (IRS).
View Article and Find Full Text PDFActa Trop
September 2025
Université Nazi BONI (UNB), Unité de Formation et de Recherche en Sciences de la Vie et de la Terre, Bobo-Dioulasso, Burkina Faso; Institut de Recherche en Sciences de la Santé, Direction Régionale de l'Ouest, Bobo-Dioulasso, Burkina Faso; Institut National Santé Publique, Centre MURAZ, Bobo-Di
An entomological surveillance was carried out in two districts of western Burkina Faso to assess the impact of mass-distributed next-generation long-lasting insecticidal nets (LLINs) (Piperonyl Butoxide (PBO) LLINs and Interceptor® G2) on Anopheles gambiae s.l. populations, focusing on insecticide resistance trends and residual malaria transmission patterns, along with their environmental and operational determinants.
View Article and Find Full Text PDFBiomed Res Int
September 2025
Department of Biostatistics and Medical Informatics, Faculty of Medicine, Kahramanmaraş Sütçü Imam University, Kahramanmaraş, Türkiye.
In countries like Somalia, where health infrastructure is inadequate and malaria is endemic, immunosuppression during pregnancy increases the risk of placental malaria; this, in turn, leads to anemia, low birth weight, preterm delivery, and stillbirth, causing severe complications that pose a life-threatening risk to both the mother and fetus. The aim of this study was to investigate the prevalence and associated factors of malaria parasitemia among pregnant women attending the obstetric clinic of a tertiary hospital in Somalia. This cross-sectional study, conducted from November 2022 to January 2023 at a tertiary hospital in Mogadishu, involved 398 pregnant women.
View Article and Find Full Text PDFmedRxiv
August 2025
Department of Microbiology and Immunology, Bio21 Institute and Peter Doherty Institute for Infection and Immunity, The University of Melbourne, Melbourne, VIC, Australia.
Current interventions targeting malaria control in sub-Saharan Africa (SSA) are focused on , the most prevalent species infecting humans. Despite renewed efforts for malaria elimination in SSA, little attention has been paid to the neglected parasites and spp. and the impact of interventions like long-lasting insecticidal nets (LLINs), indoor residual spraying (IRS) with non-pyrethroid insecticides, and/or seasonal malaria chemoprevention (SMC) on these minor spp.
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