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.

Current Medical Mycology
|September 30, 2017
PubMed
Abstract

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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