Low- and High-Tech Approaches to ControlPlasmodiumParasite Transmission byAnophelesMosquitoes
Chris M. Cirimotich, April M. Clayton, George Dimopoulos
Abstract
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Chris M. Cirimotich, April M. Clayton, George Dimopoulos
Abstract
Open-access reader
Current efforts have proven inadequate to stop the transmission of Plasmodium parasites, and hence the spread of malaria, by Anopheles mosquitoes. Therefore, a novel arsenal of strategies for inhibiting Plasmodium infection of mosquitoes is urgently needed. In this paper, we summarize research on two approaches to malaria control, a low-tech strategy based on parasite inhibition by the mosquito's natural microflora, and a high-tech strategy using genetic modification of mosquitoes that renders them resistant to infection and discuss advantages and disadvantages for both approaches.
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Current efforts have proven inadequate to stop the transmission of Plasmodium parasites, and hence the spread of malaria, by Anopheles mosquitoes. Therefore, a novel arsenal of strategies for inhibiting Plasmodium infection of mosquitoes is urgently needed. In this paper, we summarize research on two approaches to malaria control, a low-tech strategy based on parasite inhibition by the mosquito's natural microflora, and a high-tech strategy using genetic modification of mosquitoes that renders them resistant to infection and discuss advantages and disadvantages for both approaches.
Key concepts: Malaria, Anopheles, Plasmodium (life cycle), Transmission (telecommunications), Biology, Parasite hosting, Plasmodium falciparum, Mosquito control