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Flow Cytometric Analysis of Biomarkers for Detecting Human Sperm Functional Defects
Published on: April 21, 2022
Prophylactic and therapeutic vaccination protects sperm health from Chlamydia muridarum-induced abnormalities
Emily R Bryan1, Logan K Trim1, Pawel Sadowski2
1Queensland University of Technology, School of Biomedical Sciences and Centre for Immunology and Infection Control, Faculty of Health, Herston, QLD, Australia.
Abstract:
Chlamydia is the most common bacterial sexually transmitted infection worldwide and it is widely acknowledged that controlling the rampant community transmission of this infection requires vaccine development. In this study, for the first time, we elucidate the long-term response to male mouse chlamydial vaccination with chlamydial major outer membrane protein (MOMP) and ISCOMATRIX (IMX) both prophylactically and in a novel therapeutic setting. Vaccination significantly reduced and, in some cases, cleared chlamydial burden from the prostates, epididymides, and testes, which correlates with high IgG and IgA tires in tissues and serum. Important markers of sperm health and fertility were protected including sperm motility and proteins associated with fertility in men. Within splenocytes, expression of IFNγ, TNFα, IL17, IL13, IL10, and TGFβ were changed by both infection and vaccination within CD4 and CD8 T cells and regulatory T cells. Within the testicular tissue, phenotypic and concentration changes were observed in macrophages and T cells (resident and transitory). This revealed some pathogenic phenotypes associated with infection and critically that vaccination allows maintenance of testicular homeostasis, likely by preventing significant influx of CD4 T cells and promoting IL10 production. Finally, we demonstrated the testes contained immature (B220+) B cells and mature (CD138+) Chlamydia-specific plasma cells. Thus, through vaccination, we can maintain the healthy function of the testes, which is vital to protection of male fertility.
Insights
This study shows that a chlamydia vaccine using major outer membrane protein (MOMP) and ISCOMATRIX (IMX) protects male fertility by reducing bacterial load and preserving sperm health. The vaccine maintains testicular homeostasis, crucial for reproductive health.
Area of Science:
- Immunology
- Microbiology
- Reproductive Health
Background:
- Chlamydia is a prevalent bacterial STI globally, necessitating vaccine development for control.
- Controlling chlamydia transmission requires effective vaccine strategies.
Purpose of the Study:
- To evaluate the long-term immune response to a chlamydia vaccine (MOMP/IMX) in male mice.
- To assess the vaccine's efficacy in both prophylactic and therapeutic settings.
- To determine the vaccine's impact on male fertility markers and testicular health.
Main Methods:
- Male mice were vaccinated prophylactically and therapeutically with MOMP/IMX.
- Chlamydial burden in reproductive tissues was quantified.
- Humoral (IgG, IgA) and cellular immune responses (T cells, cytokines) were analyzed.
- Sperm health parameters and testicular tissue were examined.
Main Results:
- Vaccination significantly reduced or cleared chlamydial burden in the prostate, epididymides, and testes.
- High IgG and IgA titers correlated with reduced bacterial load.
- Key fertility markers, including sperm motility, were protected.
- Vaccination maintained testicular homeostasis by modulating immune cell populations and cytokine profiles (e.g., IL-10).
Conclusions:
- Chlamydia MOMP/IMX vaccination is effective in reducing chlamydial infection in male reproductive organs.
- The vaccine protects male fertility by preserving sperm health and testicular function.
- Vaccination promotes a favorable immune environment in the testes, preventing pathogenic responses and maintaining homeostasis.
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