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Updated: Jan 16, 2026

Author Spotlight: Advancing Syphilis Research — Innovations in Treponema pallidum Cultivation and Genetic Engineering
Published on: January 24, 2025
In vitro analysis of seven syphilis-causing Treponema pallidum strains revealed inherent growth rate differences
Juraj Bosák1, Matěj Hrala1, Petr Andrla1
1Department of Biology, Faculty of Medicine, Masaryk University, Kamenice 5, Brno, 625 00, Czech Republic.
Abstract:
Previous in vitro long-term cultivation studies of Treponema pallidum subsp. pallidum (T. pallidum) strains have indicated potential differences in the length of generation times among individual strains. In the present study, we have determined in vitro growth rates of seven T. pallidum strains including three from the Nichols-like cluster (DAL-1, Madras, and Haiti B) and four from the SS14-like cluster (Mexico A, SS14, Grady, and Philadelphia 1). Despite the observed considerable variability, the results of standard subcultures identified growth differences between the two clusters during the long-term cultivation. Furthermore, in vitro monocultures with defined inoculum revealed differences among individual strains. During three week-long binary co-cultivations of seven strains (n = 21), different growth rates were confirmed for individual strains (p < 0.001) using PCR amplicon sequencing of genomic regions differentiating treponemal-pairs. The order of strains by decreasing growth rate in vitro was DAL-1, Madras, Mexico A, Haiti B, SS14, Grady, and Philadelphia 1. While the generation time of strain DAL-1 was 32.97 h, the slowest strain, Philadelphia 1, had generation time 43.5 h. These experiments revealed significant physiological differences between the T. pallidum strains, which may also be involved in the variable presentation of syphilis symptoms observed in previous decades.
Insights
Treponema pallidum subsp. pallidum (T. pallidum) strains exhibit varying in vitro growth rates, with significant physiological differences observed between Nichols-like and SS14-like clusters. These growth disparities may explain diverse syphilis symptom presentations.
Area of Science:
- Microbiology
- Infectious Diseases
- Genetics
Background:
- Previous in vitro studies suggested variable generation times for Treponema pallidum subsp. pallidum (T. pallidum) strains.
- Understanding these differences is crucial for comprehending syphilis pathogenesis and clinical variability.
Purpose of the Study:
- To determine and compare the in vitro growth rates of seven distinct T. pallidum strains.
- To investigate potential physiological differences between Nichols-like and SS14-like T. pallidum clusters.
Main Methods:
- In vitro cultivation and standard subculturing of seven T. pallidum strains.
- Binary co-cultivation experiments over three weeks.
- Quantitative analysis of growth rates using PCR amplicon sequencing.
Main Results:
- Significant differences in in vitro growth rates were confirmed among individual T. pallidum strains (p < 0.001).
- Distinct growth patterns were observed between Nichols-like and SS14-like clusters.
- Strain DAL-1 exhibited the fastest growth (32.97 h generation time), while Philadelphia 1 was the slowest (43.5 h).
Conclusions:
- Treponema pallidum strains possess significant physiological differences affecting their in vitro growth.
- These growth rate variations may contribute to the diverse clinical manifestations of syphilis.
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