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The ovary as an immune target.
B S Dunbar1, S Prasad, C Cariño
1Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas 77030, USA. bdunbar@bcm.tmc.edu
Journal of the Society for Gynecologic Investigation
|February 27, 2001
Summary
The ovary lacks a barrier protecting gametes from the immune system. Immune responses to zona pellucida (ZP) proteins vary by species, impacting ovarian function and potentially causing dysfunction.
Area of Science:
- Reproductive Immunology
- Ovarian Biology
- Immunogenetics
Background:
- The ovary lacks a blood-testis barrier, exposing developing gametes to the immune system.
- Immune factors are frequently implicated in ovarian dysfunction.
- Zona pellucida (ZP) proteins are key targets for understanding ovarian immune responses.
Purpose of the Study:
- To investigate species-specific immune responses to zona pellucida (ZP) proteins.
- To evaluate the impact of ZP protein immunization on ovarian function and fertility across different species.
- To elucidate the role of immune factors in ovarian dysfunction.
Main Methods:
- Immunization of various animal models (rabbits, mice, rats, nonhuman primates) with different ZP proteins (porcine, mouse, rabbit).
- Assessment of antibody generation, sperm binding inhibition, ovarian follicular development, and ovarian pathology.
- Analysis of ZP protein homology between species.
Main Results:
- Immunization with porcine ZP proteins affected fertility and ovarian development in rabbits but not mice or rats.
- Certain mouse strains developed ovarian pathology upon immunization with mouse ZP peptides.
- Immunization of nonhuman primates with mouse/rabbit ZP2 or mouse ZP3 caused ovarian dysgenesis, while ZP1 immunization inhibited sperm binding but not ovarian function.
Conclusions:
- Ovarian immune responses to ZP proteins are highly species-dependent.
- ZP proteins, particularly ZP2 and ZP3, can act as immunogens leading to ovarian dysfunction in certain species.
- Understanding these species variations is crucial for reproductive immunology research and potential contraceptive development.