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1.
Mem. Inst. Oswaldo Cruz ; 112(10): 664-673, Oct. 2017. graf
Article in English | LILACS | ID: biblio-894838

ABSTRACT

BACKGROUND Trichomonas vaginalis is the aetiological agent of human trichomoniasis, which is one of the most prevalent sexually transmitted diseases in humans. Iron is an important element for the survival of this parasite and the colonisation of the host urogenital tract. OBJECTIVES In this study, we investigated the effects of iron on parasite proliferation in the dynamics of pseudocyst formation and morphologically characterised iron depletion-induced pseudocysts. METHODS We performed structural and ultrastructural analyses using light microscopy, scanning electron microscopy and transmission electron microscopy. FINDINGS It was observed that iron depletion (i) interrupts the proliferation of T. vaginalis, (ii) induces morphological changes in typical multiplicative trophozoites to spherical non-proliferative, non-motile pseudocysts, and (iii) induces the arrest of cell division at different stages of the cell cycle; (iv) iron is the fundamental element for the maintenance of typical trophozoite morphology; (v) pseudocysts induced by iron depletion are viable and reversible forms; and, finally, (vi) we demonstrated that pseudocysts induced by iron depletion are able to interact with human epithelial cells maintaining their spherical forms. MAIN CONCLUSIONS Together, these data suggest that pseudocysts could be induced as a response to iron nutritional stress and could have a potential role in the transmission and infection of T. vaginalis.


Subject(s)
Humans , Trichomonas vaginalis/drug effects , Trichomonas vaginalis/ultrastructure , Microscopy, Electron, Scanning , Chelating Agents/pharmacology , Epithelial Cells/microbiology , Time Factors , HeLa Cells , Iron
2.
Mem. Inst. Oswaldo Cruz ; 108(1): 110-112, Feb. 2013. ilus, graf
Article in English | LILACS | ID: lil-666053

ABSTRACT

Trichomonas vaginalis and Tritrichomonas foetus are parasitic protists of the human and bovine urogenital tracts, respectively. Several studies have described the cytotoxic effects of trichomonads on urogenital tract epithelial cells. However, little is known about the host cell response against trichomonads. The aim of this study was to determine whether T. foetus and T. vaginalis stimulated the release of the cytokine interleukin (IL)-10 from cultured bovine epithelial cells. To characterise the inflammatory response induced by these parasites, primary cultures of bovine oviduct epithelial cells were exposed to either T. vaginalis or T. foetus. Within 12 h after parasite challenge, supernatants were collected and cytokine production was analysed. Large amounts of IL-10 were detected in the supernatants of cultures that had been stimulated with T. foetus. Interestingly, T. vaginalis induced only a small increase in the release of IL-10 upon exposure to the same bovine cells. Thus, the inflammatory response of the host cell is species-specific. Only T. foetus and not T. vaginalis induced the release of IL-10 by bovine oviduct epithelial cells.


Subject(s)
Animals , Cattle , Epithelial Cells/parasitology , /biosynthesis , Trichomonas vaginalis/immunology , Tritrichomonas foetus/immunology , Cells, Cultured , Microscopy, Electron, Scanning , Trichomonas vaginalis/ultrastructure , Tritrichomonas foetus/ultrastructure
3.
Mem. Inst. Oswaldo Cruz ; 106(6): 701-704, Sept. 2011. ilus, graf
Article in English | LILACS | ID: lil-602053

ABSTRACT

Trichomonas vaginalis and Tritrichomonas foetus are human and bovine parasites, respectively, that provoke the sexually transmitted disease trichomoniasis. These extracellular parasites adhere to the host epithelial cell surface. Although mucinases and proteases have been described as important proteins for parasite adhesion to epithelial cells, no studies have examined the role of the keratin molecules that cornify the vaginal epithelium. Here, we investigated the interaction of T. vaginalis and T. foetus with human keratin in vitro; additionally, adherence assays were performed in cattle with T. foetus to elucidate whether trichomonads were able to interact with keratin in vivo. We demonstrated that both T. vaginalisand T. foetusinteracted directly with keratin. Additionally, the trichomonads ingested and digested keratin, shedding new light on the Trichomonas infection process.


Subject(s)
Animals , Cattle , Female , Humans , Epithelial Cells/parasitology , Keratins/physiology , Trichomonas vaginalis/physiology , Tritrichomonas foetus/physiology , Host-Pathogen Interactions , Microscopy, Electron , Microscopy, Fluorescence , Trichomonas vaginalis/ultrastructure , Tritrichomonas foetus/ultrastructure , Vagina/parasitology
4.
Mem. Inst. Oswaldo Cruz ; 85(4): 419-28, Oct.-Dec. 1990. ilus
Article in English | LILACS | ID: lil-127779

ABSTRACT

The freeze-fracture technique was used to analyse the organization of the plasma membrane, as well as membranes of cytoplasmic organelles, of the pathogenic protozoan Trichomonas vaginalis. Rosettes formed by 4 to 14 intramembranous particles were seen on the fracture faces of the membrane lining the anterior flagella as well as in fracture faces of the plasma membrane enclosing the anterior region of the protozoan and in cytoplasmic organelles. Special organization of the membrane particles were also seen in the region of association of the recurrent flagellum to the cell body


Subject(s)
Animals , Trichomonas vaginalis/ultrastructure , Cell Membrane/ultrastructure , Freeze Fracturing
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