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Risk of Aedes-borne diseases in and around the Tanzanian seaport of Tanga despite community members being more concerned about malaria

Authors: Abas, Amri S.; Simfukwe, Alfred J.; Masalu, John P.; Kahamba, Najat F.; Nambunga, Ismail H.; Msaky, Dickson S.; Limwagu, Alex J.; +11 Authors

Risk of Aedes-borne diseases in and around the Tanzanian seaport of Tanga despite community members being more concerned about malaria

Abstract

Abstract Background Increased global trade, while beneficial economically, can also increase the spread of vector-borne diseases, particularly those transmitted by Aedes mosquitoes spreading via trade routes. Given the heightened trade-induced activity at ports of entry, it is particularly crucial to assess the risk of mosquito-borne diseases in these settings. This study compared the risks of Aedes -borne disease in and around the eastern Tanzanian seaport of Tanga. Methods A 200 m × 200 m grid-based system was used to sample mosquitoes within the port area, and in surrounding areas at 2 km, 2.5 km, and 5 km away, between June and December 2023. We characterized mosquito breeding habitats, collected mosquito larvae using standard dippers and tested susceptibility of raised adult Aedes aegypti populations to different insecticides. Adult mosquitoes were collected using BG sentinel traps (daytime) and Centers for Disease Control (CDC) light traps (night-time). Additionally, more than 200 port users and neighboring residents were surveyed to assess their experiences with and perceptions of mosquito biting and disease risks. Results There were 2931 breeding sites, with (60.8%, n = 1782) positive for Aedes larvae. The percentage of water-holding containers infested with Aedes immatures, i.e., the container index (CI), was highest in the port area (66.2%), and lowest 5 km away (44.6%). The port area also had a greater proportion of temporary breeding sites (64.9%) than did the surrounding areas. The adult mosquito surveys revealed 20,449 mosquito species including: Culex quinquefasciatus (56.2%), Mansonia uniformis (38.6%), Ae. aegypti (5.1%), Anopheles gambiae (0.1%), and Anopheles funestus . Ae. aegypti were more abundant in the port area than in the surrounding areas ( P < 0.001), whereas Culex sp., and Mansonia sp., were significantly outside ( P < 0.001). Adult Anopheles sp., were found only in the port area, but Anopheles larvae were found both within and outside the port areas. Tests on Ae. aegypti sp., revealed susceptibility to bendiocarb and DDT, and resistance to permethrin. Awareness of mosquito-borne diseases among respondents was high for malaria (64.8%), but low for dengue (26.3%) and Chikungunya (1.7%). Most respondents reported being bothered by mosquitoes mostly at night (53.4%) or in the evening (40.7%). In addition to insecticidal bednets, which are used primarily against malaria, preventive measures for Aedes -borne diseases are limited. Conclusions This study identified significant potential risk of Aedes species , specifically Ae. aegypti sp., and associated diseases, but low perception of risk and inadequate personal protection measures in the study area. This low perception of risk highlights the need to improve public knowledge of the transmission and control of Aedes -borne diseases. Graphical Abstract

Keywords

Male, Insecticides, Mosquito Control, Vector Borne Diseases, Infectious and parasitic diseases, RC109-216, Mosquito Vectors, Tanga port, Habitat characterization ; Larva [MeSH] ; Ecosystem [MeSH] ; Mosquito-Borne Diseases [MeSH] ; Vector Borne Diseases/prevention ; Tanga port ; Mosquito Control [MeSH] ; Male [MeSH] ; Mosquito Vectors/physiology [MeSH] ; Mosquito Vectors/parasitology [MeSH] ; Vector Borne Diseases/epidemiology [MeSH] ; Female [MeSH] ; Insecticides/pharmacology [MeSH] ; Malaria/epidemiology [MeSH] ; Vector Borne Diseases/transmission [MeSH] ; Malaria/transmission [MeSH] ; Humans [MeSH] ; Animals [MeSH] ; Tanzania ; Malaria/prevention ; Research ; Mosquito-borne ; Aedes/physiology [MeSH] ; Insecticide susceptibility ; Malaria ; Tanzania/epidemiology [MeSH], Tanzania, Aedes aegypti, Habitat characterization, Aedes, Animals, Humans, Mosquito-borne, Ecosystem, Mosquito-Borne Diseases, Research, 301, Malaria, Insecticide susceptibility, Larva, Female

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selected citations
These citations are derived from selected sources.
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
1
Average
Average
Average
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gold