Dipartimento di Chimica e Tecnologie del Farmaco, Istituto Pasteur-Fondazione Cenci Bolognetti, Sapienza University of Rome, p.le Aldo Moro 5, I-00185 Rome, Italy.
Department of Public Health and Infectious Diseases, Laboratory Affiliated to Istituto Pasteur-Fondazione Cenci Bolognetti, Sapienza University of Rome, p.le Aldo Moro 5, I-00185 Rome, Italy.
Molecules. 2022 Jun 9;27(12):3718. doi: 10.3390/molecules27123718.
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 , , and vapor EOs against influenza virus type A. In the vapor phase, and strongly reduced viral cytopathic effect without exerting any cytotoxicity. The vapor EO reduced viral infection by 78% with no cytotoxicity, while 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 . 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.
流感病毒通过空气飞沫在人与人之间传播,也可以通过受污染的环境表面传播。一些研究已经证明了精油(EOs)作为抗菌和抗病毒剂的功效,但大多数研究都检查了液相,而液相通常对口服应用具有毒性。在我们的研究中,我们描述了 、 、 和 蒸汽型 EOs 对甲型流感病毒的抗病毒活性。在蒸汽相中, 和 强烈降低了病毒的细胞病变效应,而没有产生任何细胞毒性。 蒸汽 EO 在没有细胞毒性的情况下将病毒感染减少了 78%,而 则无效。此外,我们通过顶空气相色谱-质谱联用技术对 EOs 及其蒸汽相进行了表征,观察到每种液体 EO 中的主要成分与相应蒸汽相中的主要成分相同, 除外。为了深入研究作用机制,通过负染色透射电子显微镜检查了病毒粒子的形态完整性,结果表明它们干扰了病毒包膜的脂质双层,导致膜分解。我们推测,蒸汽 EOs 中最丰富的成分可能直接干扰流感病毒包膜结构,或掩盖病毒结构对病毒感染早期步骤的重要性。