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Melaleuca alternifolia Concentrate Inhibits in Vitro Entry of Influenza Virus into Host Cells

Influenza virus causes high morbidity among the infected population annually and occasionally the spread of pandemics. Melaleuca alternifolia Concentrate (MAC) is an essential oil derived from a native Australian tea tree. Our aim was to investigate whether MAC has any in vitro inhibitory effect on...

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Autores principales: Li, Xinghua, Duan, Songwei, Chu, Cordia, Xu, Jun, Zeng, Gucheng, Lam, Alfred King-Yin, Zhou, Junmei, Yin, Yue, Fang, Danyun, Reynolds, Maxwell John, Gu, Huaiyu, Jiang, Lifang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6270578/
https://www.ncbi.nlm.nih.gov/pubmed/23966077
http://dx.doi.org/10.3390/molecules18089550
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author Li, Xinghua
Duan, Songwei
Chu, Cordia
Xu, Jun
Zeng, Gucheng
Lam, Alfred King-Yin
Zhou, Junmei
Yin, Yue
Fang, Danyun
Reynolds, Maxwell John
Gu, Huaiyu
Jiang, Lifang
author_facet Li, Xinghua
Duan, Songwei
Chu, Cordia
Xu, Jun
Zeng, Gucheng
Lam, Alfred King-Yin
Zhou, Junmei
Yin, Yue
Fang, Danyun
Reynolds, Maxwell John
Gu, Huaiyu
Jiang, Lifang
author_sort Li, Xinghua
collection PubMed
description Influenza virus causes high morbidity among the infected population annually and occasionally the spread of pandemics. Melaleuca alternifolia Concentrate (MAC) is an essential oil derived from a native Australian tea tree. Our aim was to investigate whether MAC has any in vitro inhibitory effect on influenza virus infection and what mechanism does the MAC use to fight the virus infection. In this study, the antiviral activity of MAC was examined by its inhibition of cytopathic effects. In silico prediction was performed to evaluate the interaction between MAC and the viral haemagglutinin. We found that when the influenza virus was incubated with 0.010% MAC for one hour, no cytopathic effect on MDCK cells was found after the virus infection and no immunofluorescence signal was detected in the host cells. Electron microscopy showed that the virus treated with MAC retained its structural integrity. By computational simulations, we found that terpinen-4-ol, which is the major bioactive component of MAC, could combine with the membrane fusion site of haemagglutinin. Thus, we proved that MAC could prevent influenza virus from entering the host cells by disturbing the normal viral membrane fusion procedure.
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spelling pubmed-62705782018-12-18 Melaleuca alternifolia Concentrate Inhibits in Vitro Entry of Influenza Virus into Host Cells Li, Xinghua Duan, Songwei Chu, Cordia Xu, Jun Zeng, Gucheng Lam, Alfred King-Yin Zhou, Junmei Yin, Yue Fang, Danyun Reynolds, Maxwell John Gu, Huaiyu Jiang, Lifang Molecules Article Influenza virus causes high morbidity among the infected population annually and occasionally the spread of pandemics. Melaleuca alternifolia Concentrate (MAC) is an essential oil derived from a native Australian tea tree. Our aim was to investigate whether MAC has any in vitro inhibitory effect on influenza virus infection and what mechanism does the MAC use to fight the virus infection. In this study, the antiviral activity of MAC was examined by its inhibition of cytopathic effects. In silico prediction was performed to evaluate the interaction between MAC and the viral haemagglutinin. We found that when the influenza virus was incubated with 0.010% MAC for one hour, no cytopathic effect on MDCK cells was found after the virus infection and no immunofluorescence signal was detected in the host cells. Electron microscopy showed that the virus treated with MAC retained its structural integrity. By computational simulations, we found that terpinen-4-ol, which is the major bioactive component of MAC, could combine with the membrane fusion site of haemagglutinin. Thus, we proved that MAC could prevent influenza virus from entering the host cells by disturbing the normal viral membrane fusion procedure. MDPI 2013-08-09 /pmc/articles/PMC6270578/ /pubmed/23966077 http://dx.doi.org/10.3390/molecules18089550 Text en © 2013 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0/ This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Li, Xinghua
Duan, Songwei
Chu, Cordia
Xu, Jun
Zeng, Gucheng
Lam, Alfred King-Yin
Zhou, Junmei
Yin, Yue
Fang, Danyun
Reynolds, Maxwell John
Gu, Huaiyu
Jiang, Lifang
Melaleuca alternifolia Concentrate Inhibits in Vitro Entry of Influenza Virus into Host Cells
title Melaleuca alternifolia Concentrate Inhibits in Vitro Entry of Influenza Virus into Host Cells
title_full Melaleuca alternifolia Concentrate Inhibits in Vitro Entry of Influenza Virus into Host Cells
title_fullStr Melaleuca alternifolia Concentrate Inhibits in Vitro Entry of Influenza Virus into Host Cells
title_full_unstemmed Melaleuca alternifolia Concentrate Inhibits in Vitro Entry of Influenza Virus into Host Cells
title_short Melaleuca alternifolia Concentrate Inhibits in Vitro Entry of Influenza Virus into Host Cells
title_sort melaleuca alternifolia concentrate inhibits in vitro entry of influenza virus into host cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6270578/
https://www.ncbi.nlm.nih.gov/pubmed/23966077
http://dx.doi.org/10.3390/molecules18089550
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