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Ultrastructural Damages to H1N1 Influenza Virus Caused by Vapor Essential Oils

Authors :
Valentina Noemi Madia
Walter Toscanelli
Daniela De Vita
Marta De Angelis
Antonella Messore
Davide Ialongo
Luigi Scipione
Valeria Tudino
Felicia Diodata D’Auria
Roberto Di Santo
Stefania Garzoli
Annarita Stringaro
Marisa Colone
Magda Marchetti
Fabiana Superti
Lucia Nencioni
Roberta Costi
Source :
Molecules; Volume 27; Issue 12; Pages: 3718
Publication Year :
2022
Publisher :
Multidisciplinary Digital Publishing Institute, 2022.

Abstract

Influenza viruses are transmitted from human to human via airborne droplets and can be transferred through contaminated environmental surfaces. Some works have demonstrated the efficacy of essential oils (EOs) as antimicrobial and antiviral agents, but most of them examined the liquid phases, which are generally toxic for oral applications. In our study, we describe the antiviral activity of Citrus bergamia, Melaleuca alternifolia, Illicium verum and Eucalyptus globulus vapor EOs against influenza virus type A. In the vapor phase, C. bergamia and M. alternifolia strongly reduced viral cytopathic effect without exerting any cytotoxicity. The E. globulus vapor EO reduced viral infection by 78% with no cytotoxicity, while I. verum was not effective. Furthermore, we characterized the EOs and their vapor phase by the head-space gas chromatography–mass spectrometry technique, observing that the major component found in each liquid EO is the same one of the corresponding vapor phases, with the exception of M. alternifolia. To deepen the mechanism of action, the morphological integrity of virus particles was checked by negative staining transmission electron microscopy, showing that they interfere with the lipid bilayer of the viral envelope, leading to the decomposition of membranes. We speculated that the most abundant components of the vapor EOs might directly interfere with influenza virus envelope structures or mask viral structures important for early steps of viral infection.

Details

Language :
English
ISSN :
14203049
Database :
OpenAIRE
Journal :
Molecules; Volume 27; Issue 12; Pages: 3718
Accession number :
edsair.doi.dedup.....84760591c2030bb2397d2d444fd9736e
Full Text :
https://doi.org/10.3390/molecules27123718