Antifungal activity of poly(ε-caprolactone) nanoparticles incorporated with Eucalyptus essential oils against Hemileia vastatrix

Author:

Caetano A.R.S.1,Cardoso M.G.1ORCID,Resende M.L.V.2,Chalfuon S.M.3,Martins M.A.4,Gomes H.G.5,Andrade M.E.R.2,Brandão R.M.1,Campolina G.A.6,Nelson D.L.7,de Oliveira J.E.5

Affiliation:

1. Chemistry Department Federal University of Lavras (UFLA) Lavras MG Brazil

2. Phytopathology Department Federal University of Lavras (UFLA) Lavras MG Brazil

3. Agricultural Research Corporation of Minas Gerais Federal University of Lavras (UFLA) Lavras MG Brazil

4. Brazilian Agricultural Research Company São Carlos SP Brazil

5. Engineering Department Federal University of Lavras (UFLA) Lavras MG Brazil

6. Department of Food Engineering Federal University of Lavras (UFLA) Lavras MG Brazil

7. Postgraduate Program in Biofuels Federal University of The Jequitinhonha and Mucuri Valleys Diamantina MG Brazil

Abstract

Abstract Coffee (Coffea L.) is one of the main crops produced globally. Its contamination by the fungus Hemileia vastatrix Berkeley and Broome has been economically detrimental for producers. The objective of this work was to extract and characterize the essential oils from Eucalyptus citriodora Hook, Eucalyptus camaldulensis Dehn and Eucalyptus grandis Hill ex Maiden, produce and characterize nanoparticles containing these essential oils and evaluate the in vivo and in vitro antifungal activity of free and nanoencapsulated essential oils. The principal constituent of the essential oil from E. citriodora was citronellal; that from E. grandis was α-pinene; and that from E. camaldulensis was 1,8-cineol. The in vitro antifungal activity against the fungus H. vastatrix was 100% at a concentration of 1000 μl l−1 for all the oils and nanoparticles containing these natural products. The sizes of the nanoparticles produced with the essential oils from E. citriodora, E. camaldulensis and E. grandis were 402·13 nm, 275·33 nm and 328·5 nm, respectively, with surface charges of −11·8 mV, −9·24 mV and − 6·76 mV, respectively. Fourier transform infrared analyses proved that the encapsulation of essential oils occurred in the polymeric matrix of poly(ε-caprolactone). The incorporation of essential oils into biodegradable poly(ε-caprolactone) nanoparticles increased their efficiency as biofungicides in the fight against coffee rust, decreasing the severity of the disease by up to 90·75% after treatment with the nanoparticles containing the essential oil from E. grandis.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Fundação de Amparo à Pesquisa do Estado de Minas Gerais

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology

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