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Updated: Jul 12, 2026

An Electroporation Method to Transform Rickettsia spp. with a Fluorescent Protein-Expressing Shuttle Vector in Tick Cell Lines
Published on: October 11, 2022
Propagation of arthropod-borne Rickettsia spp. in two mosquito cell lines
Joyce M Sakamoto1, Abdu F Azad
1Department of Microbiology and Immunology, School of Medicine, 660 West Redwood St., Howard Hall, Room 324B, University of Maryland, Baltimore, MD 21201, USA. jsaka001@umaryland.edu
Abstract:
Rickettsiae are obligate intracellular alphaproteobacteria that include pathogenic species in the spotted fever, typhus, and transitional groups. The development of a standardized cell line in which diverse rickettsiae can be grown and compared would be highly advantageous to investigate the differences among and between pathogenic and nonpathogenic species of rickettsiae. Although several rickettsial species have been grown in tick cells, tick cells are more difficult to maintain and they grow more slowly than insect cells. Rickettsia-permissive arthropod cell lines that can be passaged rapidly are highly desirable for studies on arthropod-Rickettsia interactions. We used two cell lines (Aedes albopictus cell line Aa23 and Anopheles gambiae cell line Sua5B) that have not been used previously for the purpose of rickettsial propagation. We optimized the culture conditions to propagate one transitional-group rickettsial species (Rickettsia felis) and two spotted-fever-group rickettsial species (R. montanensis and R. peacockii) in each cell line. Both cell lines allowed the stable propagation of rickettsiae by weekly passaging regimens. Stable infections were confirmed by PCR, restriction digestion of rompA, sequencing, and the direct observation of bacteria by fluorescence in situ hybridization. These cell lines not only supported rickettsial growth but were also permissive toward the most fastidious species of the three, R. peacockii. The permissive nature of these cell lines suggests that they may potentially be used to isolate novel rickettsiae or other intracellular bacteria. Our results have important implications for the in vitro maintenance of uncultured rickettsiae, as well as providing insights into Rickettsia-arthropod interactions.
Insights
New insect cell lines, Aedes albopictus Aa23 and Anopheles gambiae Sua5B, efficiently propagate Rickettsia bacteria. These Rickettsia-permissive cell lines offer a valuable tool for studying Rickettsia-arthropod interactions and isolating novel bacteria.
Area of Science:
- Microbiology
- Cell Biology
- Arthropod-borne Diseases
Background:
- Rickettsiae are obligate intracellular bacteria causing diseases like spotted fever and typhus.
- Existing methods using tick cells for rickettsial propagation are slow and difficult to maintain.
- There is a need for rapid, standardized arthropod cell lines for studying Rickettsia-arthropod interactions.
Purpose of the Study:
- To evaluate two novel insect cell lines, Aedes albopictus Aa23 and Anopheles gambiae Sua5B, for Rickettsia propagation.
- To optimize culture conditions for growing diverse Rickettsia species in these cell lines.
- To assess the suitability of these cell lines for studying Rickettsia-arthropod interactions and isolating novel rickettsiae.
Main Methods:
- Utilized Aedes albopictus (Aa23) and Anopheles gambiae (Sua5B) cell lines for rickettsial propagation.
- Optimized culture conditions for Rickettsia felis, R. montanensis, and R. peacockii.
- Confirmed stable rickettsial infections via PCR, rompA gene analysis, sequencing, and fluorescence in situ hybridization.
Main Results:
- Both Aa23 and Sua5B cell lines supported stable, weekly propagation of Rickettsia species.
- These cell lines were permissive even to the fastidious Rickettsia peacockii.
- Successful propagation was confirmed using multiple molecular and microscopic techniques.
Conclusions:
- Aedes albopictus Aa23 and Anopheles gambiae Sua5B cell lines are effective tools for propagating diverse Rickettsia species.
- These cell lines provide a valuable platform for in vitro maintenance of uncultured rickettsiae and studying Rickettsia-arthropod interactions.
- The findings suggest potential for using these cell lines to isolate novel intracellular bacteria.
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