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Detection of Infectious Virus from Field-collected Mosquitoes by Vero Cell Culture Assay
Published on: June 9, 2011
Surveillance of West Nile Virus in Tunisia: Evidence from Human and Entomological Investigation
Walid Barhoumi1,2, Marwa Khedhiri2,3, Youmna M'Ghirbi2,4
1National Observatory for New and Emerging Diseases, Ministry of Health, Tunis 1002, Tunisia.
Abstract:
West Nile virus (WNV) is a mosquito-borne pathogen of the Flaviviridae family that poses recurring public health threats in Tunisia, where Culex pipiens is recognized as the primary vector. Identification of circulating strains in different mosquito species is essential for targeted prevention and control. Between November 2021 and October 2022, mosquitoes were collected at four high-risk sites, and human samples were obtained through the national meningitis surveillance program. Human serum, cerebrospinal fluid (CSF), and urine samples were tested for WNV-specific IgM and IgG antibodies using ELISA, and molecular diagnosis was performed using Real-time RT-PCR (RRT-PCR). Positive samples underwent sequencing for phylogenetic characterization. Serological investigation on human serum revealed the presence of IgM and/or IgG antibodies reactive to WNV antigens, which may indicate exposure to WNV or related flaviviruses. RNA of WNV was detected in 21 mosquito pools (10.19%) belonging to Culex pipiens, Cx. perexiguus, Aedes caspius, and Ae. detritus, as well as in three human cases. Phylogenetic analysis of positive human and mosquito samples showed that all detected WNV strains belonged to sublineage 1a. The concurrent detection of WNV in vectors and humans confirms active circulation in Tunisia and underscores the role of Culex spp. Mosquitoes in transmission. Sustained multidisciplinary surveillance integrating entomological and clinical data is critical for early detection, guiding control measures, and preventing future outbreaks in humans and animals.
Insights
West Nile virus (WNV) circulates actively in Tunisia, detected in mosquitoes and three human cases. All identified WNV strains belong to sublineage 1a, confirming the need for integrated surveillance.
Area of Science:
- Medical Entomology
- Virology
- Public Health
Background:
- West Nile virus (WNV) poses recurring public health threats in Tunisia.
- Culex pipiens mosquitoes are the primary WNV vectors in the region.
- Identifying circulating WNV strains is crucial for effective control strategies.
Purpose of the Study:
- To investigate the presence and phylogenetic characteristics of West Nile virus in Tunisia.
- To determine the role of different mosquito species in WNV transmission.
- To assess the public health implications of WNV circulation.
Main Methods:
- Mosquitoes were collected from high-risk sites between November 2021 and October 2022.
- Human samples were analyzed for WNV-specific antibodies (IgM/IgG) using ELISA and RNA using Real-time RT-PCR (RRT-PCR).
- Positive samples underwent sequencing for phylogenetic analysis.
Main Results:
- WNV RNA was detected in 21 mosquito pools (10.19%) across four species, including Culex pipiens, Cx. perexiguus, Aedes caspius, and Ae. detritus.
- WNV was identified in three human cases.
- Phylogenetic analysis revealed all detected WNV strains belong to sublineage 1a.
Conclusions:
- The concurrent detection of WNV in vectors and humans confirms its active circulation in Tunisia.
- Culex spp. mosquitoes play a significant role in WNV transmission.
- Integrated surveillance combining entomological and clinical data is essential for early detection and prevention of WNV outbreaks.

