ArticleMalaria journal2023
Genotyping of Anopheles mosquito blood meals reveals nonrandom human host selection: implications for human-to-mosquito Plasmodium falciparum transmission.
Article in Malaria journal, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 17 papers.
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Who cites it
17 citing papers in PubMed, 21 citations in OpenAlex.
- A randomized controlled trial combining house screening and insecticide-treated nets reduces malaria transmission in northwestern Ethiopia.Scientific reports · 2025Trial
- Why we need more individual-based parasite research.Parasites & vectors · 2026Review
- Uneven Plasmodium falciparum Transmission and Cryptic ovale Transmission From the Asymptomatic Reservoir in Bagamoyo, Tanzania.The Journal of infectious diseases · 2026Article
- Febrile Temperature Augments Ring-stage Plasmodium falciparum Adhesion to Brain Endothelial Cells.The Journal of infectious diseases · 2026Article
- Establishing and sustaining mosquito colonies: insights into morphology, bionomics, and advances in the rearing ofFrontiers in insect science · 2026Review
- Repeated biannual cross-sectional surveys in primary schools set baseline seasonal and spatial surveillance for malaria and schistosomiasis in the Shire Valley Transformation Programme (SVTP), Malawi.Current research in parasitology & vector-borne diseases · 2026Article
- Scalable and cost-effective methods for xenomonitoring of P. falciparum and antimalarial drug resistance validated with laboratory and wild-caught mosquitoes.Scientific reports · 2025Article
- Know your enemy: understanding mosquito biology to advance malaria elimination in Africa.Parasitology research · 2025Review
- Marked heterogeneity in malaria infection rate in a Malian longitudinal cohort.Nature communications · 2025Article
- Anopheles mosquito exposure is associated with age, gender and bed net use in areas in Uganda experiencing varying malaria transmission intensity.The Journal of infection · 2025Article
- Modeling the within-host dynamics ofProceedings of the National Academy of Sciences of the United States of America · 2024Article
- Plasma From Older Children in Malawi Inhibits Plasmodium falciparum Binding in 3-Dimensional Brain Microvessels.The Journal of infectious diseases · 2024Article
- Host Preferences and Impact of Climate on Blood Feeding inTropical medicine and infectious disease · 2024Article
- A Five-Year Malaria Prevalence/Frequency in Makenene in a Forest-Savannah Transition Ecozone of Central Cameroon: The Results of a Retrospective Study.Tropical medicine and infectious disease · 2024Article
- À la carte: how mosquitoes choose their blood meals.Trends in parasitology · 2024Review
- Plasmodium falciparum infection in humans and mosquitoes influence natural Anopheline biting behavior and transmission.Nature communications · 2024Article
- bistro: An R package for vector bloodmeal identification by short tandem repeat overlap.Methods in ecology and evolution · 2024Article
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Authors and funding
10 authors at 6 institutions in 2 countries.
Funding
Abstract
backgroundControl of malaria parasite transmission can be enhanced by understanding which human demographic groups serve as the infectious reservoirs. Because vector biting can be heterogeneous, some infected individuals may contribute more to human-to-mosquito transmission than others. Infection prevalence peaks in school-age children, but it is not known how often they are fed upon. Genotypic profiling of human blood permits identification of individual humans who were bitten. The present investigation used this method to estimate which human demographic groups were most responsible for transmitting malaria parasites to Anopheles mosquitoes. It was hypothesized that school-age children contribute more than other demographic groups to human-to-mosquito malaria transmission.
methodsIn a region of moderate-to-high malaria incidence in southeastern Malawi, randomly selected households were surveyed to collect human demographic information and blood samples. Blood-fed, female Anopheles mosquitoes were sampled indoors from the same houses. Genomic DNA from human blood samples and mosquito blood meals of human origin was genotyped using 24 microsatellite loci. The resultant genotypes were matched to identify which individual humans were sources of blood meals. In addition, Plasmodium falciparum DNA in mosquito abdomens was detected with polymerase chain reaction. The combined results were used to identify which humans were most frequently bitten, and the P. falciparum infection prevalence in mosquitoes that resulted from these blood meals.
resultsAnopheles females selected human hosts non-randomly and fed on more than one human in 9% of the blood meals. Few humans contributed most of the blood meals to the Anopheles vector population. Children ≤ 5 years old were under-represented in mosquito blood meals while older males (31-75 years old) were over-represented. However, the largest number of malaria-infected blood meals was from school age children (6-15 years old).
conclusionsThe results support the hypothesis that humans aged 6-15 years are the most important demographic group contributing to the transmission of P. falciparum to the Anopheles mosquito vectors. This conclusion suggests that malaria control and prevention programmes should enhance efforts targeting school-age children and males.
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