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Hemolytic activity of dermatophytes species isolated from clinical specimens
1Microbiology and Clinical Microbiology Department, Ataturk University Medical Faculties, Erzurum, Turkey.
Abstract:
Hemolytic activity was recently reported for several pathogenic fungal species, such as Aspergillus, Candida, Trichophyton, Penicillium and Fusarium. Based on a number of mechanistic and characterization studies, several fungal hemolysins have been proposed as virulence factors. Hemolysins lyse red blood cells resulting in the release of iron, an important growth factor for microbes especially during infection. The requirement of iron in fungal growth is necessary for metabolic processes and as a catalyst for various biochemical processes. Expression of a hemolytic protein with capabilities to lyse red blood cells has also been suggested to provide a survival strategy for fungi during opportunistic infections. The aims of this study were to investigate the hemolytic activities of dermatophytes species isolated from patients with dermatophytosis. Hair, skin and nail samples of patients were examined with direct microscopy using potassium hydroxide and cultivated on Mycobiotic agar and Sabouraud's dextrose agar. To determine hemolytic activities of dermatophytes species, they were subcultured on Columbia Agar with 5% sheep blood and incubated for 7-14 days at 25°C in aerobic conditions. Media which displayed hemolysis were further incubated for 1-5 days at 37°C to increase hemolytic activity. In this study, 66 dermatophytes strains were isolated from clinical specimens and were identified by six different species: 43 (65.1%) Trichophyton rubrum, 7 (10.7%) Trichophyton mentagrophytes, 5 (7.6%) Microsporum canis, 5 (7.6%) Trichophyton tonsurans, 4 (6.0%) Epidermophyton floccosum and 2 (3.0%) Trichophyton violaceum. Twenty-one T. rubrum strains showed incomplete (alpha) hemolysis and nine T. rubrum strains showed complete (beta) hemolysis, whereas hemolysis was absent in 13 T. rubrum strains. Four T. mentagrophytes strains showed complete hemolysis and three T. tonsurans strains showed incomplete hemolysis. However, M. canis, E. floccosum and T. violaceum species had no hemolytic activity. Hemolytic activity is pronounced in dermatophytes and may play an important role as a virulence factor. Hemolysins produced may play an important role in the balance between the host's cellular immunity and the ability of the fungus to diminish the immune response.
Insights
Dermatophyte fungi, including Trichophyton rubrum, exhibit hemolytic activity, which may function as a virulence factor. This activity, involving red blood cell lysis, could aid fungal survival and immune evasion during infections.
Area of Science:
- Medical Mycology
- Pathogen Virulence Factors
- Fungal Pathogenesis
Background:
- Hemolytic activity in pathogenic fungi is linked to virulence, aiding microbial iron acquisition.
- Fungal hemolysins lyse red blood cells, releasing iron crucial for fungal growth and metabolic processes.
- Hemolytic protein expression may enhance fungal survival during opportunistic infections.
Purpose of the Study:
- To investigate the hemolytic activities of dermatophyte species isolated from patients with dermatophytosis.
- To determine the role of hemolysins as potential virulence factors in dermatophyte infections.
Main Methods:
- Dermatophyte species were isolated from patient hair, skin, and nail samples.
- Isolated strains were identified and subcultured on Columbia Agar with 5% sheep blood.
- Hemolytic activity was assessed by incubation at 25°C and 37°C.
Main Results:
- Sixty-six dermatophyte strains were identified, predominantly Trichophyton rubrum (65.1%).
- Trichophyton rubrum strains displayed varying degrees of hemolysis (alpha and beta).
- Trichophyton mentagrophytes and Trichophyton tonsurans showed hemolytic activity, while Microsporum canis, Epidermophyton floccosum, and Trichophyton violaceum did not.
Conclusions:
- Hemolytic activity is prevalent in dermatophytes and likely serves as a significant virulence factor.
- Produced hemolysins may influence the host immune response and fungal persistence.
- Further research is needed to elucidate the precise role of hemolysins in dermatophytosis pathogenesis.
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