Ecological and clinical evidence of the establishment of West Nile virus in a large urban area in Europe, Berlin, Germany, 2021 to 2022

Author:

Ruscher Claudia1,Patzina-Mehling Corinna2ORCID,Melchert Julia32,Graff Selina L2,McFarland Sarah E1,Hieke Christian2,Kopp Anne2,Prasser Anita1,Tonn Torsten4,Schmidt Michael4,Isner Caroline5,Drosten Christian32,Werber Dirk1,Corman Victor M632,Junglen Sandra2

Affiliation:

1. State Office for Health and Social Affairs (SOHSA), Berlin, Germany

2. Institute of Virology, Charité - Universitätsmedizin Berlin, corporate member of Freie Universität Berlin, Humboldt-Universität zu Berlin and Berlin Institute of Health, Berlin, Germany

3. German Centre for Infection Research (DZIF), partner site Charité, Berlin, Germany

4. Experimentelle Transfusionsmedizin, Medical Faculty Carl Gustav Carus, TU Dresden and Institute for Transfusion Medicine Dresden, DRK Blutspendedienst Nord-Ost, Dresden, Germany

5. Department of Infectious Diseases, Vivantes Auguste-Viktoria-Klinikum, Berlin, Germany

6. Labor Berlin - Charité Vivantes GmbH, Berlin, Germany

Abstract

Background West Nile virus (WNV), found in Berlin in birds since 2018 and humans since 2019, is a mosquito-borne virus that can manifest in humans as West Nile fever (WNF) or neuroinvasive disease (WNND). However, human WNV infections and associated disease are likely underdiagnosed. Aim We aimed to identify and genetically characterise WNV infections in humans and mosquitoes in Berlin. Methods We investigated acute WNV infection cases reported to the State Office for Health and Social Affairs Berlin in 2021 and analysed cerebrospinal fluid (CSF) samples from patients with encephalitis of unknown aetiology (n = 489) for the presence of WNV. Mosquitoes were trapped at identified potential exposure sites of cases and examined for WNV infection. Results West Nile virus was isolated and sequenced from a blood donor with WNF, a symptomatic patient with WNND and a WNND case retrospectively identified from testing CSF. All cases occurred in 2021 and had no history of travel 14 days prior to symptom onset (incubation period of the disease). We detected WNV in Culex pipiens mosquitoes sampled at the exposure site of one case in 2021, and in 2022. Genome analyses revealed a monophyletic Berlin-specific virus clade in which two enzootic mosquito-associated variants can be delineated based on tree topology and presence of single nucleotide variants. Both variants have highly identical counterparts in human cases indicating local acquisition of infection. Conclusion Our study provides evidence that autochthonous WNV lineage 2 infections occurred in Berlin and the virus has established an endemic maintenance cycle.

Publisher

European Centre for Disease Control and Prevention (ECDC)

Subject

Virology,Public Health, Environmental and Occupational Health,Epidemiology

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