Javascript must be enabled to continue!
Spatial-Temporal Distribution and Insecticide resistance Status of Aedes Aegypti in Ghana
View through CrossRef
Abstract
Background: Vector control is the main intervention to control arboviral diseases transmitted by Aedes mosquitoes because for most there are no effective vaccines or treatment. This vector control relies heavily on the use of insecticides, effectiveness of which may be impacted by resistance. In addition, rational insecticide application requires detailed knowledge of vector distribution, dynamics, resting, and feeding behaviours, which are poorly understood for Aedes vectors in Africa. This study investigated the spatio-temporal distribution and insecticide resistance status of Ae. aegypti from across ecological extremes of GhanaMethods: Immature mosquitoes were sampled from containers in and around human dwellings at each of seven study sites in urban, suburban, and rural areas of Ghana. Adult Aedes mosquitoes were sampled indoor and outdoor using Biogent sentinel-2 mosquito traps, human landing catches, and prokopack aspiration. Distributions of immatures and adult Aedes mosquitoes were determined indoors and outdoors during dry and rainy seasons at all sites. Phenotypic resistance status of Aedes mosquitoes to insecticides was determined using WHO bioassays. Host blood meal source was determined by PCR.Results: A total of 16,711 immature Aedes were sampled, with over 70% found in car tires. Significantly more breeding containers had Aedes immatures during the rainy season 70.95% (11,856) compared to the dry season 29.05% (4,855). A total of 1,895 adult Aedes mosquitos were collected, including Ae. aegypti (97.8%), Ae. africanus (2.1%) and Ae. Luteocephalus (0.1%). Indoor sampling of adult Aedes mosquitoes yielded a total of 381 (20.1%) and outdoor a total of 1,514 (79.9%) (z = -5.427; p = 0.0000) over the entire sampling period. Aedes aegypti populations were resistant to DDT at all study sites. Vectors showed suspected resistance to Bendiocarb (96-97%), Permethrin (90-96%) and Deltamethrin (91-96%) and were susceptible to the organophosphate malathion from all study sites.Blood meal analysis showed that the Aedes mosquitoes were mostly anthropophilic with HBI of 0.9 i.e. [(human = 90%), (human and dog = 5%), (dog and cow = 5%)].Conclusion: Aedes mosquitoes were found at high densities in all ecological zones of Ghana. Resistance to pyrethroids and carbamates may limit control efficacy and requires careful monitoring.
Springer Science and Business Media LLC
Title: Spatial-Temporal Distribution and Insecticide resistance Status of Aedes Aegypti in Ghana
Description:
Abstract
Background: Vector control is the main intervention to control arboviral diseases transmitted by Aedes mosquitoes because for most there are no effective vaccines or treatment.
This vector control relies heavily on the use of insecticides, effectiveness of which may be impacted by resistance.
In addition, rational insecticide application requires detailed knowledge of vector distribution, dynamics, resting, and feeding behaviours, which are poorly understood for Aedes vectors in Africa.
This study investigated the spatio-temporal distribution and insecticide resistance status of Ae.
aegypti from across ecological extremes of GhanaMethods: Immature mosquitoes were sampled from containers in and around human dwellings at each of seven study sites in urban, suburban, and rural areas of Ghana.
Adult Aedes mosquitoes were sampled indoor and outdoor using Biogent sentinel-2 mosquito traps, human landing catches, and prokopack aspiration.
Distributions of immatures and adult Aedes mosquitoes were determined indoors and outdoors during dry and rainy seasons at all sites.
Phenotypic resistance status of Aedes mosquitoes to insecticides was determined using WHO bioassays.
Host blood meal source was determined by PCR.
Results: A total of 16,711 immature Aedes were sampled, with over 70% found in car tires.
Significantly more breeding containers had Aedes immatures during the rainy season 70.
95% (11,856) compared to the dry season 29.
05% (4,855).
A total of 1,895 adult Aedes mosquitos were collected, including Ae.
aegypti (97.
8%), Ae.
africanus (2.
1%) and Ae.
Luteocephalus (0.
1%).
Indoor sampling of adult Aedes mosquitoes yielded a total of 381 (20.
1%) and outdoor a total of 1,514 (79.
9%) (z = -5.
427; p = 0.
0000) over the entire sampling period.
Aedes aegypti populations were resistant to DDT at all study sites.
Vectors showed suspected resistance to Bendiocarb (96-97%), Permethrin (90-96%) and Deltamethrin (91-96%) and were susceptible to the organophosphate malathion from all study sites.
Blood meal analysis showed that the Aedes mosquitoes were mostly anthropophilic with HBI of 0.
9 i.
e.
[(human = 90%), (human and dog = 5%), (dog and cow = 5%)].
Conclusion: Aedes mosquitoes were found at high densities in all ecological zones of Ghana.
Resistance to pyrethroids and carbamates may limit control efficacy and requires careful monitoring.
Related Results
Species composition and risk of transmission of
Aedes
-borne arboviruses around some Yellow hotspot areas in Northern Ghana
Species composition and risk of transmission of
Aedes
-borne arboviruses around some Yellow hotspot areas in Northern Ghana
Abstract
Aedes
-borne viral diseases mainly Yellow Fever (YF), Dengue (DEN), Zika (ZIK) and Chikungunya (CHK) have contributed ...
PERBANDINGAN EFEKTIVITAS EKSTRAK ETANOL BIJI PEPAYA (Carica papaya L) SEBAGAI LARVASIDA PADA LARVA Aedes aegypti DAN Aedes albopictus INSTAR III-IV
PERBANDINGAN EFEKTIVITAS EKSTRAK ETANOL BIJI PEPAYA (Carica papaya L) SEBAGAI LARVASIDA PADA LARVA Aedes aegypti DAN Aedes albopictus INSTAR III-IV
Aedes aegypti dan Aedes albopictus merupakan vektor utama penyakit demam dengue, chikungunya, filariasis, dan virus zika yang masih menjadi masalah di Indonesia. Pengendalian vekto...
Controle de Larvas de Aedes aegypti por Ninfas de libélula (Odonata) sob Condições Laboratoriais
Controle de Larvas de Aedes aegypti por Ninfas de libélula (Odonata) sob Condições Laboratoriais
Estudos para o combate ao vetor Aedes aegypti são importantes para reduzir as incidências da Dengue, Zika e Chikungunya, responsáveis por milhares de mortes no Mundo. Este estudo h...
Insecticide Resistance in Aedes aegypti Mosquitoes: First Evidence of Kdr F1534C, S989P and V1016G Triple Mutation in Benin, West Africa
Insecticide Resistance in Aedes aegypti Mosquitoes: First Evidence of Kdr F1534C, S989P and V1016G Triple Mutation in Benin, West Africa
Epidemics of arboviruses in general, and dengue fever, in particular, are an increasing threat in areas where Aedes (Ae.) aegypti is present. The effectiveness of chemical control ...
Hubungan Tempat Perindukan dengan Kepadatan Larva Aedes aegypti sebagai Vektor Penyakit Demam Berdarah Dengue di Wilayah Kerja Puskesmas Kalumata Kota Ternate (Relationship of the Breeding Place with the Density of Aedes aegypti Larva as a Dengue Haemorh
Hubungan Tempat Perindukan dengan Kepadatan Larva Aedes aegypti sebagai Vektor Penyakit Demam Berdarah Dengue di Wilayah Kerja Puskesmas Kalumata Kota Ternate (Relationship of the Breeding Place with the Density of Aedes aegypti Larva as a Dengue Haemorh
Hubungan Tempat Perindukan dengan Kepadatan Larva Aedes aegypti sebagai Vektor Penyakit Demam Berdarah Dengue di Wilayah Kerja Puskesmas Kalumata Kota Ternate (Relationship of the ...
Aedes Aegypti Hatchability and Larval Development Based on Three Different Types of Water
Aedes Aegypti Hatchability and Larval Development Based on Three Different Types of Water
Clean water reservoirs can become mosquito breeding grounds because water comes from rainwater, water wells, and taps, making them an ideal breeding ground for the Aedes aegypti mo...
Distribution areas and monthly dynamic distribution changes of three Aedes species in China: Aedes aegypti, Aedes albopictus and Aedes vexans
Distribution areas and monthly dynamic distribution changes of three Aedes species in China: Aedes aegypti, Aedes albopictus and Aedes vexans
Abstract
Background
Mosquitoes play an absolute role in the spread of epidemic arbovirus diseases. Worldwide, Aedes aegypti and Aedes albopictus are...
Biting Behavior and Molecular Identification of Aedes aegypti (Diptera: Culicidae) Subspecies in Some Selected Recent Yellow Fever Outbreak Communities in Northern Ghana
Biting Behavior and Molecular Identification of Aedes aegypti (Diptera: Culicidae) Subspecies in Some Selected Recent Yellow Fever Outbreak Communities in Northern Ghana
AbstractAedes aegypti (L.) (Diptera: Culicidae) is a diurnal feeder that lives in close association with human populations. It is the principal vector of yellow fever, dengue fever...

