4.6 Article

Nanoencapsulated Essential Oils with Enhanced Antifungal Activity for Potential Application on Agri-Food, Material and Environmental Fields

期刊

ANTIBIOTICS-BASEL
卷 10, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/antibiotics10010031

关键词

antifungal activity; essential oils; nanoencapsulation; poly(ε -caprolactone); Origanum vulgare; Thymus capitatus

资金

  1. VEGA [2/0061/17, 2/0059/19]

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Nanotechnology, specifically nanoencapsulation of plant essential oils with antifungal activity, shows promise in overcoming resistance in fungal species. The essential oil nanosystems exhibited lower MIC and MFC values compared to pure essential oils, indicating their potential as ecofriendly alternatives to synthetic products.
Nanotechnology is a new frontier of this century that finds applications in various fields of science with important effects on our life and on the environment. Nanoencapsulation of bioactive compounds is a promising topic of nanotechnology. The excessive use of synthetic compounds with antifungal activity has led to the selection of resistant fungal species. In this context, the use of plant essential oils (EOs) with antifungal activity encapsulated in ecofriendly nanosystems could be a new and winning strategy to overcome the problem. We prepared nanoencapsules containing the essential oils of Origanum vulgare (OV) and Thymus capitatus (TC) by the nanoprecipitation method. The colloidal suspensions were characterized for size, polydispersity index (PDI), zeta potential, efficiency of encapsulation (EE) and loading capacity (LC). Finally, the essential oil nanosuspensions were assayed against a panel of fourteen fungal strains belonging to the Ascomycota and Basidiomycota phyla. Our results show that the nanosystems containing thyme and oregano essential oils were active against various fungal strains from natural environments and materials. In particular, the minimum inhibitory concentration (MIC) and minimum fungicidal concentration (MFC) values were two to four times lower than the pure essential oils. The aqueous, ecofriendly essential oil nanosuspensions with broad-spectrum antifungal activity could be a valid alternative to synthetic products, finding interesting applications in the agri-food and environmental fields.

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