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Characterization of Culex pipiens cell lines: virus infection and RNAi response
Sarah Gothe1, Swati Jagtap1,2, Philipp Böhmer1
1Bernhard-Nocht Institute for Tropical Medicine, Hamburg, Germany.
Background:
Arboviruses transmitted by mosquitoes pose a global health threat, causing diseases ranging from mild fevers to severe encephalitis and hemorrhagic fevers. Despite their growing impact, arbovirus research is hindered by biosafety constraints and the need of specialized BSL-3 insectariums. To circumvent these challenges, mosquito-derived cell lines have become indispensable tools for investigating virus-vector interactions. However, most available cell lines originate from Aedes and Anopheles spp., creating a critical research gap for other key vectors such as Culex spp. Although a few cell lines were previously established, they did not represent primary transmitters of West Nile virus (WNV) and other emerging arboviruses in Europe, such as Culex pipiens.
Methods:
To address this gap, the current study aimed to characterize two recently established Culex pipiens cell lines: CPE/LULS50 (Culex pipiens pipiens & molestus) and CPL/LULS56 (Culex pipiens molestus) in more detail including testing their virus susceptibility, antiviral RNAi response, and possible presence of insect-specific viruses.
Results:
The replication of arboviruses from three clinically relevant families (Flaviviridae, Peribunyaviridae, and Togaviridae), as well as insect-specific viruses, was observed in both CPE/LULS50 and CPL/LULS56 cell lines. Furthermore, small RNA profiling revealed production of virus-specific small interfering RNA (siRNA) in both cell lines for all tested viruses. Interestingly, virus-specific PIWI-interacting RNA (piRNA) was only detected for the Peribunyaviridae.
Conclusions:
The current study demonstrates that the CPE/LULS50 and CPL/LULS56 cell lines are suitable candidates to facilitate research into Culex-specific virus-vector interactions, ultimately contributing to mitigation of the impact of Culex-borne arboviruses on public health.
Insights
New cell lines from Culex pipiens mosquitoes support arbovirus research. These cell lines, CPE/LULS50 and CPL/LULS56, show susceptibility to various viruses and mount antiviral responses, aiding study of Culex-borne diseases.
Area of Science:
- Vector-borne diseases
- Arthropod-borne viruses
- Mosquito cell line research
Background:
- Mosquito-borne arboviruses (Arthropod-borne viruses) are a global health concern, with research often limited by biosafety requirements.
- Existing mosquito cell lines primarily derive from Aedes and Anopheles species, leaving a gap in research for other significant vectors like Culex species.
- Culex pipiens mosquitoes transmit important arboviruses such as West Nile virus (WNV), necessitating better research tools.
Purpose of the Study:
- To characterize two novel Culex pipiens cell lines, CPE/LULS50 and CPL/LULS56.
- To assess the susceptibility of these cell lines to arboviruses and insect-specific viruses.
- To investigate the antiviral RNA interference (RNAi) response within these cell lines.
Main Methods:
- Establishment and characterization of two Culex pipiens cell lines (CPE/LULS50 and CPL/LULS56).
- Virus susceptibility assays using arboviruses from Flaviviridae, Peribunyaviridae, and Togaviridae families.
- Small RNA sequencing to analyze antiviral RNAi responses, including siRNA and piRNA production.
Main Results:
- Both CPE/LULS50 and CPL/LULS56 cell lines supported the replication of tested arboviruses and insect-specific viruses.
- Virus-specific small interfering RNAs (siRNAs) were detected in response to all tested viruses in both cell lines.
- Virus-specific PIWI-interacting RNAs (piRNAs) were specifically identified for the Peribunyaviridae family.
Conclusions:
- The CPE/LULS50 and CPL/LULS56 cell lines are valuable tools for studying Culex-specific virus-vector interactions.
- These cell lines will advance research on arboviruses transmitted by Culex mosquitoes, contributing to public health.
- The findings support the use of these cell lines to understand arbovirus transmission and develop mitigation strategies.
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