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Antimicrobial effects of allicin and ketoconazole on trichophyton rubrum under in vitro condition
Aala, Farzad; Yusuf, Umi Kalsom; Jamal, Farida; Rezaie, Sassan.
  • Aala, Farzad; Kurdistan University of Medical Sciences. Faculty of Medicine. Department of Medical Mycology & Parasitology. Sanandaj. IR
  • Yusuf, Umi Kalsom; Universiti Putra Malaysia. Faculty of Science. Department of Biology. Serdang. MY
  • Jamal, Farida; Universiti Putra Malaysia. Faculty of Medicine and Health Sciences. Department of Medical Microbiology and Parasitology. Serdang. MY
  • Rezaie, Sassan; Tehran University of Medical Sciences. School of Advanced Technologies in Medicine. Department of Medical Biotechnology. Tehran. IR
Braz. j. microbiol ; 43(2): 786-792, Apr.-June 2012. graf, tab
Article Dans Anglais | LILACS | ID: lil-644497
ABSTRACT
Dermatophytosis is caused by a group of pathogenic fungi namely, dermatophytes, is among the most prevalent infectious diseases worldwide. Azole drugs are widely used in the treatment of dermatomycosis, but can cause various side effects and drug resistance to the patients. Hence, for solving this problem can be used from the plant extract as alternative for chemical drugs. Allicin is a pure bioactive compound isolated from garlic was tested for its potential as a treatment of dermatomycosis in this study. This study evaluated the in vitro efficacy of pure allicin against ten isolates of Trichophyton rubrum and the MIC50 and MIC90 ranged from 0.78-12.5 µg/ml for allicin. The results revealed that the order of efficacy based on the MICs values, all isolates showed almost comparable response to allicin and ketoconazole except for some isolates, at 28 ºC for both 7 and 10 days incubation. Mann-Whitney test indicate that MICs at 7 days incubation was not observed a significant difference between the effects of allicin and ketoconazole (p > 0.05), but MICs at 10 days incubation, a significant difference was observed (p < 0.05). On the other side, time kill studies revealed that allicin used its fungicidal activity within 12-24 h of management in vitro as well as ketoconazole. In conclusion, allicin showed very good potential as an antifungal compound against mycoses-causing dermatophytes, almost the same as the synthetic drug ketoconazole. Therefore, this antifungal agent appears to be effective, safe and suitable alternative for the treatment of dermatomycosis.
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Texte intégral: Disponible Indice: LILAS (Amériques) Sujet Principal: Trichophyton / Techniques in vitro / Résistance microbienne aux médicaments / Mycoses cutanées / Arthrodermataceae / Antifongiques Type d'étude: Études d'évaluation Limites du sujet: Humains langue: Anglais Texte intégral: Braz. j. microbiol Thème du journal: Microbiologie Année: 2012 Type: Article Pays d'affiliation: Iran / Malaisie Institution/Pays d'affiliation: Kurdistan University of Medical Sciences/IR / Tehran University of Medical Sciences/IR / Universiti Putra Malaysia/MY

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Texte intégral: Disponible Indice: LILAS (Amériques) Sujet Principal: Trichophyton / Techniques in vitro / Résistance microbienne aux médicaments / Mycoses cutanées / Arthrodermataceae / Antifongiques Type d'étude: Études d'évaluation Limites du sujet: Humains langue: Anglais Texte intégral: Braz. j. microbiol Thème du journal: Microbiologie Année: 2012 Type: Article Pays d'affiliation: Iran / Malaisie Institution/Pays d'affiliation: Kurdistan University of Medical Sciences/IR / Tehran University of Medical Sciences/IR / Universiti Putra Malaysia/MY