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

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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