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1.
Mem. Inst. Oswaldo Cruz ; 105(2): 127-131, Mar. 2010. ilus
Article in English | LILACS | ID: lil-544616

ABSTRACT

Mites and the mammal pathogenic fungus Histoplasma capsulatum are the major components of bat guano microbiota. Interactions between mites and H. capsulatum were evaluated under laboratory conditions. Acarid mites, mainly Sancassania sp., were the most abundant microarthropod in the sampled guano of the Mexican bat Tadarida brasiliensis mexicana and, based on its morphology, Sancassania sp. was similar to the cosmopolitan species Sancassania sphaerogaster. The mycophagous and vectoring activities of this mite were tested for H. capsulatum and two other fungal species, Sporothrix schenckii (pathogenic) and Aspergillus sclerotiorum (non-pathogenic). S. ca. sphaerogaster was able to reproduce in H. capsulatum and S. schenckii colonies, multiplying in great numbers under controlled fungal mycelial-phase culture conditions. H. capsulatum colonies were completely destroyed after 14 days of in vitro interaction with mites. In contrast, S. ca. sphaerogaster did not reproduce in A. sclerotiorum cultures. S. ca. sphaerogaster was found vectoring H. capsulatum, but not the two other fungal species studied.


Subject(s)
Animals , Female , Male , Acaridae/physiology , Chiroptera/microbiology , Chiroptera/parasitology , Histoplasma/physiology , Histoplasma/isolation & purification , Mexico , Pest Control, Biological , Predatory Behavior
2.
Mem. Inst. Oswaldo Cruz ; 104(3): 492-496, May 2009.
Article in English | LILACS | ID: lil-517015

ABSTRACT

Histoplasma capsulatum is an intracellular fungal pathogen that causes respiratory and systemic disease by proliferating within phagocytic cells. The binding of H. capsulatum to phagocytes may be mediated by the pathogen's cell wall carbohydrates, glucans, which consist of glucose homo and hetero-polymers and whose glycosydic linkage types differ between the yeast and mycelial phases. The ±-1,3-glucan is considered relevant for H. capsulatum virulence, whereas the ²-1,3-glucan is antigenic and participates in the modulation of the host immune response. H. capsulatum cell wall components with lectin-like activity seem to interact with the host cell surface, while host membrane lectin-like receptors can recognize a particular fungal carbohydrate ligand. This review emphasizes the relevance of the main H. capsulatum and host carbohydrate-driven interactions that allow for binding and internalization of the fungal cell into phagocytes and its subsequent avoidance of intracellular elimination.


Subject(s)
Animals , Humans , Carbohydrates/immunology , Cell Wall/chemistry , Histoplasma/chemistry , Histoplasmosis/immunology , Cell Wall/immunology , Host-Parasite Interactions , Histoplasma/pathogenicity , Histoplasma/physiology , Immunologic Factors/immunology
3.
Mem. Inst. Oswaldo Cruz ; 87(1): 53-8, jan.-mar. 1992. tab, ilus
Article in English | LILACS | ID: lil-116283

ABSTRACT

Histoplasma capsulatum var. capsulatum is a dimorphic fungus that, under special conditions, converts from its more common mycelial form to a yeast-like form. Achieving this conversion, however, has been problematical for researchers. The present study tested conversion rates in ten Histoplasma capsulatum var. capsulatum strains using seven culture media, four of wich were conventional and three novel. One of our novel media, MLGema, induced complete conversion, of two strains within five days of incubation at 35 degrees centigrades, and of all strains that eventually converted by the time of the second subculturing transfer, under defined experimental conditions. MLGema is also inexpensive and easy to produce


Subject(s)
Histoplasma/physiology , Histoplasmosis/prevention & control , Histoplasma/analysis , Histoplasma/growth & development
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