Proton-secreting cells modulate mucosal immune surveillance in the male reproductive tract
Da Silva, A.; Barrachina, F.; Avenatti, M. C.; Elizagaray, M. L.; Bastepe, I.; Sasso-Cerri, E.; Battistone, M. A.
Show abstract
Proton-secreting cells in various organs, such as the kidney and epididymis, regulate pH balance, maintaining cellular homeostasis, and supporting key physiological processes. More recently, these specialized cells have emerged as key contributors to mucosal immunity, orchestrating immune activation. Epididymitis is an inflammatory condition that significantly impacts male fertility, often due to a lack of diagnosis and treatment. This study explores the involvement of region-specific epididymal proton-secreting clear cells (CCs) in the immune response by interacting with the immune system during LPS-induced mouse epididymitis. We found that in response to LPS, CCs rapidly shifted to a proinflammatory phenotype, marked by the upregulation of cytokines and chemokines, alongside the downregulation of genes involved in sperm maturation. Morphological changes in CCs, including increased apical blebs and altered shape across different epididymal segments, suggest their active role in immune responses. Moreover, mononuclear phagocytes (MPs) reduced their luminal-reaching projections in the proximal epididymis after the LPS challenge. This bacteria antigen triggered the migration of dendritic cells and neutrophil infiltration in the distal epididymis. These immune landscape alterations contributed to epithelial damage and impaired sperm maturation, as evidenced by decreased sperm motility following LPS injection. Our findings indicate that proton-secreting cells are immune gatekeepers in the epididymis, initiating immune responses and disrupting sperm maturation. This research enhances the understanding of epithelial immunoregulation and will help to develop novel diagnostic and therapeutic strategies for epididymitis and male infertility. Furthermore, insights into CC-mediated immune responses could inform the development of new approaches for male contraception.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The Slingshot phosphatase 2 is required for acrosome biogenesis during spermatogenesis in mice 95%
- Three-dimensional imaging of vascular development in the mouse epididymis: a prerequisite to better understand the post-testicular immune context of spermatozoa 95%
- Deficient spermiogenesis in mice lacking Rlim 95%
Similar papers in this journal
- Topaz1, an essential gene for murine spermatogenesis, down-regulates the expression of numerous testis-specific long non-coding RNAs. 94%
- The ribosome inhibitor chloramphenicol induces motility deficits in human spermatozoa: a proteomic approach identifies potentially involved proteins 92%
- Capacitation promotes a shift in the energy metabolism in murine sperm 92%
Similar papers in this journal
- The Distal Appendage Protein CEP164 Is Essential for Efferent Duct Multiciliogenesis and Male Fertility 93%
- Three-dimensional analysis and in vivo imaging for sperm release and transport in the murine seminiferous tubule 93%
- Uterine stromal but not epithelial PTGS2 is critical for murine pregnancy success 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.