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Author Spotlight: Advancing Syphilis Research — Innovations in Treponema pallidum Cultivation and Genetic Engineering
Published on: January 24, 2025
Long-Term In Vitro Culture of the Syphilis Spirochete Treponema pallidum subsp. pallidum
Diane G Edmondson1, Bo Hu2, Steven J Norris3,2
1Department of Pathology and Laboratory Medicine, McGovern Medical School, University of Texas Health Science Center at Houston, Houston, Texas, USA.
Abstract:
Investigation of Treponema pallidum subsp. pallidum, the spirochete that causes syphilis, has been hindered by an inability to culture the organism continuously in vitro despite more than a century of effort. In this study, long-term logarithmic multiplication of T. pallidum was attained through subculture every 6 to 7 days and periodic feeding using a modified medium (T. pallidum culture medium 2 [TpCM-2]) with a previously described microaerobic, rabbit epithelial cell coincubation system. Currently, cultures have maintained continuous growth for over 6 months with full retention of viability as measured by motility and rabbit infectivity. This system has been applied successfully to the well-studied Nichols strain of T. pallidum, as well as to two recent syphilis isolates, UW231B and UW249B. Light microscopy and cryo-electron microscopy showed that in vitro-cultured T. pallidum retains wild-type morphology. Further refinement of this long-term subculture system is expected to facilitate study of the physiological, genetic, pathological, immunologic, and antimicrobial susceptibility properties of T. pallidum subsp. pallidum and closely related pathogenic Treponema species and subspecies.IMPORTANCE Syphilis, a sexually transmitted disease with a global distribution, is caused by a spiral-shaped bacterium called Treponema pallidum subspecies pallidum Previously, T. pallidum was one of the few major bacterial pathogens that had not been cultured long-term in vitro (in a test tube), greatly hindering efforts to better understand this organism and the disease that it causes. In this article, we report the successful long-term cultivation of T. pallidum in a tissue culture system, a finding that is likely to enhance our ability to obtain new information applicable to the diagnosis, treatment, and prevention of syphilis.
Insights
Researchers achieved long-term in vitro cultivation of Treponema pallidum, the bacterium causing syphilis. This breakthrough enables further study of syphilis pathogenesis and the development of new diagnostic and treatment strategies.
Area of Science:
- Microbiology
- Infectious Diseases
- Bacteriology
Background:
- Syphilis, a global sexually transmitted infection, is caused by Treponema pallidum subspecies pallidum.
- Long-term in vitro cultivation of T. pallidum has been a significant challenge for over a century, hindering research.
- Previous limitations in culturing T. pallidum have impeded comprehensive studies on its biology and pathogenesis.
Purpose of the Study:
- To establish a reliable method for long-term in vitro cultivation of Treponema pallidum subspecies pallidum.
- To overcome the historical difficulties in maintaining T. pallidum viability and proliferative capacity in laboratory settings.
- To facilitate future research into the physiological, genetic, and pathological characteristics of T. pallidum.
Main Methods:
- Utilized a modified medium (TpCM-2) and a microaerobic, rabbit epithelial cell coincubation system.
- Implemented regular subculturing every 6 to 7 days with periodic feeding.
- Employed light microscopy and cryo-electron microscopy to assess morphology and viability.
Main Results:
- Achieved sustained logarithmic multiplication of T. pallidum in vitro for over 6 months.
- Maintained full viability, confirmed by motility and rabbit infectivity assays.
- Successfully applied the culture system to the Nichols strain and two recent clinical isolates (UW231B, UW249B).
- Confirmed that in vitro-cultured T. pallidum retains wild-type morphology.
Conclusions:
- Demonstrated successful long-term in vitro cultivation of Treponema pallidum, a significant advancement in syphilis research.
- The developed culture system is robust, supporting multiple strains and isolates.
- This breakthrough is expected to accelerate studies on T. pallidum, leading to improved syphilis diagnosis, treatment, and prevention strategies.
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