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http://dx.doi.org/10.1094/PDIS-92-9-1260 | DOI Listing |
Malar J
October 2024
Malaria Research and Training Center, Faculty of Medicine, Pharmacy and Odonto-Stomatology, University of Sciences, Techniques and Technology of Bamako, BP 1805, Bamako, Mali.
Background: Attractive targeted sugar baits (ATSBs) have the potential to significantly reduce infective female Anopheles mosquitoes in arid areas, such as in Northern Mali. Malaria is epidemic in the north due to the limited viability of Anopheles species in the desert climate. The goal of this study was to determine of the effect of ATSB on the number of older female An.
View Article and Find Full Text PDFMalar J
September 2024
Malaria and Other Parasitic Diseases Division of Rwanda Biomedical Center, Ministry of Health, Kigali, Rwanda.
Background: The core vector control tools used to reduce malaria prevalence are currently long-lasting insecticidal nets (LLINs), and indoor residual spraying (IRS). These interventions are hindered by insecticide resistance and behavioural adaptation by malaria vectors. Thus, for effective interruption of malaria transmission, there is a need to develop novel vector control interventions and technologies to address the above challenges.
View Article and Find Full Text PDFHeliyon
August 2024
Laboratory of Plant Biotechnology, Ecology and Ecosystem Valorization, URL-CNRST n° 10, Faculty of Sciences, Chouaib Doukkali University, P.O. Box 20, El Jadida, 24000, Morocco.
Medicinal plants are used widely in the treatment of various infectious diseases. One of these medical plants is Moroccan plants such as . In this study, the essential oil isolated from the leaves of (APEO) by the hydrodistillation method was analyzed using (GC/MS) analysis.
View Article and Find Full Text PDFMalar J
August 2024
Department of Public Health and Infectious Diseases, Sapienza University of Rome, Rome, Italy.
Background: Pyrethroid resistance is one of the major threats for effectiveness of insecticide-treated bed nets (ITNs) in malaria vector control. Genotyping of mutations in the voltage gated sodium channel (VGSC) gene is widely used to easily assess the evolution and spread of pyrethroid target-site resistance among malaria vectors. L1014F and L1014S substitutions are the most common and best characterized VGSC mutations in major African malaria vector species of the Anopheles gambiae complex.
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