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Updated: Oct 3, 2026

In Vitro Differentiation of Naive CD4+ T Cells into Pathogenic Th17 Cells in Mouse
Published on: October 25, 2024
CTH522/CAF01 vaccination elicits clonally related Th17 subsets that mediate IL-17A-dependent protection against
Nina Dieu Nhien Tran Nguyen1, Safia Guleed1, Sharmila Subratheepam1
1Center for Vaccine Research, Department of Infectious Disease Immunology, Statens Serum Institut, Copenhagen, Denmark.
Abstract:
Chlamydia trachomatis is the leading bacterial sexually transmitted pathogen worldwide and a major cause of reproductive tract disease, highlighting the need for an effective vaccine. Defining the immune mechanisms underlying vaccine-induced protection is therefore critical. We previously demonstrated that in mice vaccinated with CTH522/CAF01, genital tract Th17 cells correlated with protection against both infection and pathology. In this study, we further characterized these vaccine-induced Th17 cells in an infected genital tract. Fate-mapping and single-cell transcriptomic analyses revealed that CTH522/CAF01 vaccination generated multiple Th17-derived subsets, including a large memory-like population as well as effector Th17 and Th17-derived Th1-like subsets. These subsets shared common TCR clonotypes, and RNA velocity analyses predicted a unified differentiation trajectory, with one precursor population seeding both effector lineages. Our findings demonstrate a high degree of plasticity within the Th17 population and reveals previously uncharacterized Th17 subsets present during infection with C. trachomatis. Functional studies demonstrated that the Th17 subset that produced IL-17A was essential for early bacterial control, whereas IFN-γ-producing Th1 cells and Th17-derived Th1-like cells were not. Collectively, our findings provide mechanistic insight into Th17 biology and redefine the importance of IL-17A producing Th17 cells in early vaccine-mediated protection against C. trachomatis.
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