Related Experiment Video
Updated: Oct 1, 2026

Procedures for In Vitro Cultivation of Treponema pallidum, the Syphilis Spirochete
Published on: January 24, 2025
Treponema pallidum suppressive microenvironments and central nervous system damage: from mechanisms to tools and
Muze Huang1,2,3,4, Shiyuan Wu5, Zi-Han Shen6,7
1School of Medicine, Xiamen University, Xiamen, Fujian, China.
Abstract:
The global resurgence of syphilis, marked by a dramatic 150% increase in cases over the last decade and the rise of the dominant SS14-Ω strain cluster, represents a critical threat to public health. This review explores the complex molecular mechanisms by which Treponema pallidum functions as a "stealth pathogen," establishing suppressive chemotactic microenvironments that facilitate neuroinvasion and persistent central nervous system (CNS) damage. We delineate a biomechanical and molecular cascade wherein the spirochete utilizes its unique "naked" outer membrane and hypervariable Treponema pallidum repeat protein K (TprK) to bypass host immune surveillance. Furthermore, we detail how the pathogen is increasingly understood to breach the blood-brain barrier (BBB) through the induction of pro-inflammatory signals like interleukin-1β (IL-1β) and the recently identified upregulation of ADAMTS5, which degrades the endothelial glycocalyx. Addressing the significance of recent advances, this review highlights the transition from traditional animal models to sophisticated in vitro genetic engineering, which has begun to overcome historical research bottlenecks. We conclude that while standard penicillin therapy effectively achieves serological cure, it is often insufficient to arrest or reverse the established neuro-inflammatory cascades that lead to permanent cognitive and neuropsychiatric impairments. Future perspectives emphasize the necessity of proactive prophylactic models like doxycycline post-exposure prophylaxis (DoxyPEP) and the identification of novel drug targets, such as the extracellular loops of outer membrane proteins, to disrupt immune evasion and may help mitigate irreversible neurological sequelae.
Related Concept Videos
Cryptococcal Meningitis
Trichomoniasis
Toxoplasmosis
Diphtheria
Pulmonary Tuberculosis I
Causative Organism
The primary infectious agent causing tuberculosis is Mycobacterium tuberculosis, a slow-growing, acid-fast, aerobic rod that exhibits sensitivity to heat and ultraviolet light. Instances of Mycobacterium bovis and Mycobacterium avium contributing to the development of TB infection are rare.
Mode of...
Encephalitis ll: Pathophysiology

