Laboratory of Mycology, Pathologies and Biomarkers, Faculty of Sciences of Tunis, University Tunis El Manar, Tunis, Tunisia.
Department of Public Health and Infectious Diseases, "Sapienza" University of Rome, Rome, Italy.
Mycoses. 2018 Feb;61(2):79-87. doi: 10.1111/myc.12706. Epub 2017 Oct 15.
Tinea pedis and onychomycosis are among the commonest fungal diseases in the world. Dermatophytes and, less frequently, non-dermatophyte moulds are aetiological agents of foot mycosis and are capable of forming biofilms. Fungal biofilm has demonstrated increasing drug resistance. This work aims to evaluate, in vitro, the ability to form biofilm and the susceptibility to antifungal drugs of sessile dermatophytes and non-dermatophyte moulds involved in foot mycosis. Thirty-six dermatophytes and non-dermatophyte moulds isolated from Tunisian patients with foot mycoses, and identified with MALDI-TOF have been tested. MICs of fluconazole, econazole, itraconazole, terbinafine and griseofulvin were carried out using CLSI broth microdilution method. The ability to form biofilm and antifungal activities of drugs against fungal biofilm formation has been quantified by Crystal Violet and Safranin Red staining. Biomass quantification revealed that all species studied were able to form biofilms in vitro after 72 hours. Fluconazole, econazole, itraconazole and terbinafine inhibited fungal growth with MIC values ranging from 0.031 to >64 μg mL . The best antifungal activity has been obtained with terbinafine against Fusarium solani. Econazole showed the highest activity against fungal biofilm formation. These findings can help clinicians to develop the appropriate therapy of foot mycosis.
足癣和甲真菌病是世界上最常见的真菌病之一。皮肤癣菌和较少见的非皮肤癣菌霉菌是足部真菌感染的病原体,并且能够形成生物膜。真菌生物膜已经表现出越来越强的耐药性。这项工作旨在评估参与足部真菌感染的固定皮肤癣菌和非皮肤癣菌霉菌形成生物膜的能力和对抗真菌药物的敏感性。 从突尼斯患有足部真菌感染的患者中分离出 36 株皮肤癣菌和非皮肤癣菌霉菌,并使用 MALDI-TOF 进行了鉴定。使用 CLSI 肉汤微量稀释法测定氟康唑、酮康唑、伊曲康唑、特比萘芬和灰黄霉素的 MIC。通过结晶紫和沙黄染色定量测定生物膜形成能力和药物对真菌生物膜形成的抗真菌活性。生物量定量结果表明,所有研究的物种在 72 小时后均能够在体外形成生物膜。氟康唑、酮康唑、伊曲康唑和特比萘芬的 MIC 值范围为 0.031 至>64μg/mL,抑制了真菌生长。特比萘芬对茄病镰刀菌的抗真菌活性最佳。酮康唑对真菌生物膜形成的活性最高。这些发现可以帮助临床医生制定足部真菌感染的适当治疗方案。