Affiliation:
1. Department of Microbiology, Fujita-Gakuen University School of Medical Technology, Toyoake, Aichi 470-11, Japan
Abstract
Allicin was effective in vitro against
Candida, Cryptococcus, Trichophyton, Epidermophyton
, and
Microsporum
. The minimal inhibitory concentrations (MICs) of allicin against these organisms were 3.13 to 6.25 μg/ml by the agar dilution method and 1.57 to 6.25 μg/ml by the broth dilution method, using Sabouraud glucose (SG) medium. However decreased activity was demonstrated against
Aspergillus
. The MIC of allicin against various pathogenic fungi was affected considerably by differences in the experimental conditions, e.g., incubation time, inoculum size, type of medium, and medium pH. The MIC of allicin against
Candida, Cryptococcus
, and
Aspergillus
remained constant after more than 3 days of incubation, and that against
Dermatophytes
remained constant after more than 10 days of incubation. Decreasing the inoculum size increased the susceptibility to allicin. The antifungal activity of allicin was stronger on SG agar medium with a pH of 5.6 than on the same medium with a pH of 6.0 or higher. By microscopical observation, allicin induced morphological abnormalities in hyphae of
Trichophyton mentagrophytes
Morita. Percent germination of spores of the Morita strain at 24 h in SG agar medium was greatly decreased with an allicin concentration of 3.13 μg/ml, and the lethal dose for the spores was about four times higher than the fungistatic concentration. These results suggest that allicin inhibits both germination of spores and growth of hyphae.
Publisher
American Society for Microbiology
Subject
Infectious Diseases,Pharmacology (medical),Pharmacology
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