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Author Spotlight: Advancing Syphilis Research — Innovations in Treponema pallidum Cultivation and Genetic Engineering
Published on: January 24, 2025
Interaction of Treponema pallidum, the syphilis spirochete, with human platelets
Brigette Church1, Erika Wall1, John R Webb1,2
1Department of Biochemistry and Microbiology, University of Victoria, Victoria, BC, Canada.
Abstract:
Extracellular bacteria that spread via the vasculature employ invasive mechanisms that mirror those of metastatic tumor cells, including intravasation into the bloodstream and survival during hematogenous dissemination, arrestation despite blood flow, and extravasation into distant tissue sites. Several invasive bacteria have been shown to exploit normal platelet function during infection. Due to their inherent ability to interact with and influence other cell types, platelets play a critical role in alteration of endothelial barrier permeability, and their role in cancer metastasis has been well established. The highly invasive bacterium and causative agent of syphilis, Treponema pallidum subspecies pallidum, readily crosses the endothelial, blood-brain and placental barriers. However, the mechanisms underlying this unusual and important aspect of T. pallidum pathogenesis are incompletely understood. In this study we use darkfield microscopy in combination with flow cytometry to establish that T. pallidum interacts with platelets. We also investigate the dynamics of this interaction and show T. pallidum is able to activate platelets and preferentially interacts with activated platelets. Platelet-interacting treponemes consistently exhibit altered kinematic (movement) parameters compared to free treponemes, and T. pallidum-platelet interactions are reversible. This study provides insight into host cell interactions at play during T. pallidum infection and suggests that T. pallidum may exploit platelet function to aid in establishment of disseminated infection.
Insights
Treponema pallidum, the syphilis bacterium, interacts with and activates platelets. This interaction may help the bacteria spread through the bloodstream and infect distant tissues.
Area of Science:
- Microbiology
- Pathogenesis
- Cell Biology
Background:
- Extracellular bacteria utilize mechanisms similar to cancer metastasis for dissemination.
- Platelets play a role in cancer metastasis and can alter endothelial barrier permeability.
- Treponema pallidum, the syphilis agent, invades endothelial, blood-brain, and placental barriers, but mechanisms are unclear.
Purpose of the Study:
- To investigate the interaction between Treponema pallidum and platelets.
- To understand how Treponema pallidum utilizes platelets during infection.
Main Methods:
- Darkfield microscopy
- Flow cytometry
Main Results:
- Treponema pallidum interacts with platelets.
- Treponema pallidum activates platelets and preferentially binds to activated platelets.
- Platelet-bound treponemes show altered movement patterns, and the interaction is reversible.
Conclusions:
- Treponema pallidum may exploit platelet function to facilitate hematogenous dissemination.
- Understanding these host-pathogen interactions is crucial for syphilis pathogenesis.
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