Adhesion of Tritrichomonas foetus to Bovine Vaginal Epithelial Cells

Author:

Singh B. N.1,Lucas J. J.1,Beach D. H.2,Shin S. T.3,Gilbert R. O.3

Affiliation:

1. Department of Biochemistry and Molecular Biology1 and

2. Department of Microbiology and Immunology,2 SUNY Health Science Center, Syracuse, New York 13210, and

3. Department of Clinical Sciences, College of Veterinary Medicine, Cornell University, Ithaca, New York 148533

Abstract

ABSTRACT An in vitro culture system of bovine vaginal epithelial cells (BVECs) was developed to study the cytopathogenic effects of Tritrichomonas foetus and the role of lipophosphoglycan (LPG)-like cell surface glycoconjugates in adhesion of parasites to host cells. Exposure of BVEC monolayers to T. foetus resulted in extensive damage of monolayers. Host cell disruption was measured quantitatively by a trypan blue exclusion assay and by release of 3 H from [ 3 H]thymidine-labeled host cells. Results indicated contact-dependent cytotoxicity of host cells by T. foetus . The cytopathogenic effect was a function of T. foetus density. Metronidazole- or periodate-treated T. foetus showed no damage to BVEC monolayers. A related human trichomonad, Trichomonas vaginalis , showed no cytotoxic effects, indicating species-specific host-parasite interactions. A direct binding assay was developed and used to investigate the role of a major cell surface LPG-like molecule in host-parasite adhesion. The results of competition experiments showed that the binding to BVECs was displaceable, was saturable, and yielded a typical binding curve, suggesting that specific receptor-ligand interactions mediate the attachment of T. foetus to BVECs. Progesterone-treated BVECs showed enhanced parasite binding. T. foetus LPG inhibited the binding of T. foetus to BVECs; the LPG from T. vaginalis and a variety of other glycoconjugates did not. These data imply specificity of LPG on host-parasite adhesion. Periodate-treated parasites showed no adherence to host cells, indicating the involvement of carbohydrate containing molecules in the adhesion process.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Immunology,Microbiology,Parasitology

Reference35 articles.

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