Vector Control and Insecticidal Resistance in the African Malaria MosquitoAnopheles gambiae
Monika Schmidt, Veronika Hrabcová, Daniel Jun, Kamil Kuča, Kamil Musílek
Abstract
Monika Schmidt, Veronika Hrabcová, Daniel Jun, Kamil Kuča, Kamil Musílek
Abstract
Mosquito-borne diseases (including malaria) belong among the leading causes of death in humans. Vector control is a crucial part of the global strategy for management of mosquito-associated diseases, when insecticide use is the most important component in this effort. However, drug and insecticide resistance threaten the successes made with existing methods. Reduction or elimination of malaria is not possible without effective mosquito control. This article reviews current strategies of intervention in vector control to decrease transmission of disease and covers current relevant knowledge in molecular biology, biochemistry, and medicinal chemistry.
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Mosquito-borne diseases (including malaria) belong among the leading causes of death in humans. Vector control is a crucial part of the global strategy for management of mosquito-associated diseases, when insecticide use is the most important component in this effort. However, drug and insecticide resistance threaten the successes made with existing methods. Reduction or elimination of malaria is not possible without effective mosquito control. This article reviews current strategies of intervention in vector control to decrease transmission of disease and covers current relevant knowledge in molecular biology, biochemistry, and medicinal chemistry.
Key concepts: Malaria, Anopheles gambiae, Vector (molecular biology), Insecticide resistance, Mosquito control, Anopheles, Biology, Vector control