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Proteolytic activity and cooperative hemolytic effect of dermatophytes with different species of bacteria
K Pakshir1, T Mohamadi2, H Khodadadi2
1Department of Parasitology and Mycology, Basic Sciences in Infectious Diseases Research Center, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran.
Background And Purpose:
Globally, dermatophytes are the most common filamentous group of fungi causing cutaneous mycoses. Dermatophytes were shown to secrete a multitude of enzymes that play a role in their pathogenesis. There is limited data on co-hemolytic (CAMP-like) effect of different bacterial species on dermatophyte species. In this study, we sought to the evaluate exoenzyme activity and co-hemolytic effect of four bacteria on clinical dermatophytes isolated from patients in Shiraz, Iran.
Materials And Methods:
A total of 84 clinical dermatophyte species were isolated from patients suffering dermatophytosis and identified by conventional methods. Hemolytic activity was evaluated with Columbia 5% sheep blood agar. Proteolytic activity was determined by plate clearance assay method, using gelatin 8% agar. CAMP-like factor was evaluated with four bacteria, namely, S. areus, S.saprophyticus, S.pyogenes, and S.agalactiae. Fisher's exact test was run for statistical analysis.
Results:
T. mentagrophytes was the most predominant agent (27 [32.1%]) followed by T. verrucosum(20 [23.8%]), T. tonsurans (10 [11.9%]), Microsporum canis (7 [8.3%]), T. rubrum (6 [7.1%]), E. floccosum (6 [7.1%]), M. gypseum (5 [6%]), and T. violaceum (3[3.6%]). The most common clinical area of dermatophytosis was the skin. All the isolates expressed the zone of incomplete alpha hemolysis. All the isolates had CAMP- positive reaction with S. aureus and the other bacteria were CAMP-negative. All the isolates expressed proteolytic activity and no significant differences were noted among diverse genera of dermatophytes and severities of proteolytic activity.
Conclusion:
This study indicated that hemolysin and proteolytic enzymes potentially play a role in dermatophyte pathogenesis and S. aureus could be considered as a main bacterium for creation of co-hemolytic effect in association with dermatophyte species.
Insights
Dermatophytes secrete enzymes aiding infection. This study found all clinical dermatophyte isolates showed proteolytic activity and a co-hemolytic (CAMP-like) effect with Staphylococcus aureus, suggesting a role in pathogenesis.
Area of Science:
- Medical Mycology
- Clinical Microbiology
- Bacterial-Fungal Interactions
Background:
- Dermatophytes are common fungi causing skin infections (cutaneous mycoses).
- These fungi secrete enzymes crucial for their ability to cause disease (pathogenesis).
- Limited research exists on the combined hemolytic effects of bacteria and dermatophytes.
Purpose of the Study:
- To evaluate exoenzyme activity in clinical dermatophyte isolates.
- To assess the co-hemolytic (CAMP-like) effect of four bacterial species on these dermatophytes.
- To investigate dermatophyte pathogenesis in clinical samples from Shiraz, Iran.
Main Methods:
- 84 clinical dermatophyte isolates were identified using conventional methods.
- Hemolytic and proteolytic activities were assessed using blood agar and gelatin agar assays.
- The CAMP-like factor was tested against Staphylococcus aureus, S. saprophyticus, S. pyogenes, and S. agalactiae.
Main Results:
- Trichophyton mentagrophytes was the most frequent isolate (32.1%).
- All isolates exhibited proteolytic activity and incomplete alpha hemolysis.
- A positive CAMP-like reaction was observed with Staphylococcus aureus for all isolates; other bacteria showed negative reactions.
Conclusions:
- Hemolysin and proteolytic enzymes likely contribute to dermatophyte pathogenesis.
- Staphylococcus aureus plays a significant role in the co-hemolytic effect observed with dermatophytes.
- These findings enhance understanding of fungal-bacterial interactions in skin infections.
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