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Coriandrum sativum L. (Coriander) Essential Oil: Antifungal Activity and Mode of Action on Candida spp. and Molecular Targets Affected in Human Whole-Genome Expression

机译:香菜(香菜)精油:念珠菌的抗真菌活性和作用方式以及影响人类全基因组表达的分子靶标

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摘要

Oral candidiasis is an opportunistic fungal infection of the oral cavity with increasingly worldwide prevalence and incidence rates. Novel specifically-targeted strategies to manage this ailment have been proposed using essential oils (EO) known to have antifungal properties. In this study, we aim to investigate the antifungal activity and mode of action of the EO from Coriandrum sativum L. (coriander) leaves on Candida spp. In addition, we detected the molecular targets affected in whole-genome expression in human cells. The EO phytochemical profile indicates monoterpenes and sesquiterpenes as major components, which are likely to negatively impact the viability of yeast cells. There seems to be a synergistic activity of the EO chemical compounds as their isolation into fractions led to a decreased antimicrobial effect. C. sativum EO may bind to membrane ergosterol, increasing ionic permeability and causing membrane damage leading to cell death, but it does not act on cell wall biosynthesis-related pathways. This mode of action is illustrated by photomicrographs showing disruption in biofilm integrity caused by the EO at varied concentrations. The EO also inhibited Candida biofilm adherence to a polystyrene substrate at low concentrations, and decreased the proteolytic activity of Candida albicans at minimum inhibitory concentration. Finally, the EO and its selected active fraction had low cytotoxicity on human cells, with putative mechanisms affecting gene expression in pathways involving chemokines and MAP-kinase (proliferation/apoptosis), as well as adhesion proteins. These findings highlight the potential antifungal activity of the EO from C. sativum leaves and suggest avenues for future translational toxicological research.
机译:口腔念珠菌病是口腔的机会性真菌感染,全世界的患病率和发病率均在不断上升。已经提出了使用已知具有抗真菌特性的精油(EO)来解决这种疾病的新型针对性策略。在这项研究中,我们旨在调查香菜叶片上的香菜叶中EO的抗真菌活性和作用方式。此外,我们检测到了人类细胞中全基因组表达受到影响的分子靶标。 EO植物化学特征表明单萜和倍半萜为主要成分,这可能会对酵母细胞的活力产生负面影响。 EO化学化合物似乎具有协同活性,因为将其分离成级分会降低抗菌效果。 C. sativum EO可能与膜麦角固醇结合,增加离子渗透性并引起膜损伤,导致细胞死亡,但它不作用于细胞壁生物合成相关的途径。显微照片显示了这种作用方式,显微照片显示了不同浓度的EO引起的生物膜完整性破坏。在低浓度下,EO还抑制念珠菌生物膜对聚苯乙烯底物的粘附,并在最小抑制浓度下降低白色念珠菌的蛋白水解活性。最后,EO及其选择的活性成分对人细胞的细胞毒性低,推测机制影响涉及趋化因子和MAP激酶(增殖/凋亡)以及粘附蛋白的途径中的基因表达。这些发现突显了来自蜡梅叶的EO的潜在抗真菌活性,并为将来的转化毒理学研究提供了途径。

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