Entomological Surveillance Activities in Regions in Greece: Data on Mosquito Species Abundance and West Nile Virus Detection in Culex pipiens Pools (2019–2020)
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Published:2022-12-20
Issue:1
Volume:8
Page:1
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ISSN:2414-6366
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Container-title:Tropical Medicine and Infectious Disease
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language:en
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Short-container-title:TropicalMed
Author:
Vakali Annita, Beleri StavroulaORCID, Tegos Nikolaos, Fytrou Anastasia, Mpimpa Anastasia, Sergentanis Theodoros N.ORCID, Pervanidou Danai, Patsoula Eleni
Abstract
Human cases of West Nile virus (WNV) infections have been recorded in Greece since 2010, with seasonal outbreaks (summer-autumn) on an almost annual basis, caused mainly by the WNV lineage 2 strain (Nea Santa-Greece-2010). National Public Health Organization (NPHO) in Greece is annually implementing enhanced surveillance of human WNV infection, in order to promptly identify human cases of WNV infection and monitor distribution in terms of time and place. Entomological surveillance activities were carried out on a national basis in 2019 and 2020, under NPHO coordination and the collaboration of several private subcontractors, along with the Unit of Medical Entomology, Laboratory for Surveillance of Infectious Diseases (LSID). The aim was to monitor mosquito species composition, abundance, and WNV circulation in mosquito pools of Culex pipiens s.l. species. Adult mosquito traps were placed in selected sites; collected samples were morphologically characterized and pooled by date of collection, location, and species types. Female Culex pipiens s.l. pools were tested for WNV and WNV infection rates (MIR and MLE) were estimated. Highest mean number of female Culex pipiens s.l. species was recorded in Central Macedonia both for 2019 and 2020. Six hundred and fifty-nine mosquito pools (147 in 2019 and 512 in 2020) of female Culex pipiens s.l. were examined for WNV presence. The highest MLE was detected in Western Macedonia in 2019 and in Thessaly in 2020. Here, we present data on the mosquito species composition in the studied areas and WNV detection in mosquitoes from areas in Greece where the specific national mosquito surveillance program was implemented, for two years, 2019 and 2020.
Funder
Hellenic National Public Health Organization
Subject
Infectious Diseases,Public Health, Environmental and Occupational Health,General Immunology and Microbiology
Reference36 articles.
1. West Nile virus: Review of the literature;Petersen;JAMA,2013 2. Fall, G., Di Paola, N., Faye, M., Dia, M., Freire, C.C.D.M., Loucoubar, C., Zanotto, P.M.D.A., Faye, O., and Sall, A.A. (2017). Biological and phylogenetic characteristics of West African lineages of West Nile virus. PLoS Negl. Trop. Dis., 11. 3. Becker, N., Petric, D., Zgomba, M., Boase, C., Madon, M., Dahl, C., and Kaiser, A. (2010). Mosquitoes and Their Control, Springer. [2nd ed.]. 4. World Health Organization (WHO) (2014). A Global Brief on Vector-Borne Diseases. 5. World Health Organization (WHO) (2022, June 20). Vector-Borne Diseases. Available online: https://www.who.int/news-room/fact-sheets/detail/vector-borne-diseases.
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