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首页> 外文期刊>Molecules >Antifungal Activity of Thapsia villosa Essential Oil against Candida, Cryptococcus, Malassezia, Aspergillus and Dermatophyte Species
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Antifungal Activity of Thapsia villosa Essential Oil against Candida, Cryptococcus, Malassezia, Aspergillus and Dermatophyte Species

机译:南美大黄草精油对念珠菌,隐球菌,马拉色菌,曲霉和皮肤癣菌的抗真菌活性。

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The composition of the essential oil (EO) of Thapsia villosa (Apiaceae), isolated by hydrodistillation from the plant’s aerial parts, was analysed by GC and GC-MS. Antifungal activity of the EO and its main components, limonene (57.5%) and methyleugenol (35.9%), were evaluated against clinically relevant yeasts (Candida spp., Cryptococcus neoformans and Malassezia furfur) and moulds (Aspergillus spp. and dermatophytes). Minimum inhibitory concentrations (MICs) were measured according to the broth macrodilution protocols by Clinical and Laboratory Standards Institute (CLSI). The EO, limonene and methyleugenol displayed low MIC and MFC (minimum fungicidal concentration) values against Candida spp., Cryptococcus neoformans, dermatophytes, and Aspergillus spp. Regarding Candida species, an inhibition of yeast–mycelium transition was demonstrated at sub-inhibitory concentrations of the EO (MIC/128; 0.01 μL/mL) and their major compounds in Candida albicans. Fluconazole does not show this activity, and the combination with low concentrations of EO could associate a supplementary target for the antifungal activity. The association of fluconazole with T. villosa oil does not show antagonism, but the combination limonene/fluconazole displays synergism. The fungistatic and fungicidal activities revealed by T. villosa EO and its main compounds, associated with their low haemolytic activity, confirm their potential antimicrobial interest against fungal species often associated with human mycoses. View Full-Text
机译:通过加氢蒸馏从植物的地上部分中分离得到的羽扇豆(香豆科)的香精油(EO)成分,通过GC和GC-MS进行了分析。评估了EO及其主要成分柠檬烯(57.5%)和甲基丁香酚(35.9%)对临床相关酵母菌(Candida spp。,新型隐球菌和糠,马拉色霉(Malassezia furfur))和霉菌(Aspergillus spp。和dermatophytes)的抗真菌活性。根据临床和实验室标准协会(CLSI)的肉汤大量稀释方案,测量最低抑菌浓度(MIC)。 EO,柠檬烯和甲基丁香酚相对于假丝酵母,新隐球菌,皮肤真菌和曲霉菌的MIC和MFC(最低杀真菌浓度)值较低。对于念珠菌种类,在白色念珠菌的EO(MIC / 128; 0.01μL/ mL)及其主要化合物的亚抑制浓度下,抑制了酵母-菌丝体的转化。氟康唑没有这种活性,与低浓度EO的组合可能与抗真菌活性的补充靶标相关。氟康唑与棉铃虫油的结合没有显示拮抗作用,但是柠檬烯/氟康唑的组合显示出协同作用。 T. villosa EO及其主要化合物显示出的抑真菌和杀真菌活性,以及​​其低溶血活性,证实了它们对通常与人类霉菌病相关的真菌物种的潜在抗菌作用。查看全文

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