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Antimicrobial Activity of Some Essential Oils—Present Status and Future Perspectives

机译:某些香精油的抗菌活性-现状和未来展望

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摘要

Extensive documentation on the antimicrobial properties of essential oils and their constituents has been carried out by several workers. Although the mechanism of action of a few essential oil components has been elucidated in many pioneering works in the past, detailed knowledge of most of the compounds and their mechanism of action is still lacking. This knowledge is particularly important for the determination of the effect of essential oils on different microorganisms, how they work in combination with other antimicrobial compounds, and their interaction with food matrix components. Also, recent studies have demonstrated that nanoparticles (NPs) functionalized with essential oils have significant antimicrobial potential against multidrug- resistant pathogens due to an increase in chemical stability and solubility, decreased rapid evaporation and minimized degradation of active essential oil components. The application of encapsulated essential oils also supports their controlled and sustained release, which enhances their bioavailability and efficacy against multidrug-resistant pathogens. In the recent years, due to increasingly negative consumer perceptions of synthetic preservatives, interest in essential oils and their application in food preservation has been amplified. Moreover, the development of resistance to different antimicrobial agents by bacteria, fungi, viruses, parasites, etc. is a great challenge to the medical field for treating the infections caused by them, and hence, there is a pressing need to look for new and novel antimicrobials. To overcome these problems, nano-encapsulation of essential oils and exploiting the synergies between essential oils, constituents of essential oils, and antibiotics along with essential oils have been recommended as an answer to this problem. However, less is known about the interactions that lead to additive, synergistic, or antagonistic effects. A contributing role of this knowledge could be the design of new and more potent antimicrobial blends, and understanding of the interplay between the components of crude essential oils. This review is written with the purpose of giving an overview of current knowledge about the antimicrobial properties of essential oils and their mechanisms of action, components of essential oils, nano-encapsulated essential oils, and synergistic combinations of essential oils so as to find research areas that can facilitate applications of essential oils to overcome the problem of multidrug-resistant micro-organisms.
机译:几名工人进行了有关精油及其成分的抗菌性能的广泛文献记载。尽管在过去的许多开创性工作中已经阐明了几种精油成分的作用机理,但仍缺乏对大多数化合物及其作用机理的详细了解。该知识对于确定精油对不同微生物的作用,它们如何与其他抗菌化合物结合使用以及与食物基质成分的相互作用特别重要。同样,最近的研究表明,由于化学稳定性和溶解度的提高,快速蒸发的降低以及活性精油成分的降解降到最低,精油功能化的纳米颗粒(NPs)对多药耐药病原体具有显着的抗菌潜力。胶囊化精油的应用还支持其控释和持续释放,从而增强了其对多种药物耐药病原体的生物利用度和功效。近年来,由于消费者对合成防腐剂的负面看法日益增加,对精油的兴趣及其在食品防腐中的应用得到了扩大。此外,细菌,真菌,病毒,寄生虫等对各种抗菌剂的抗药性的发展对医学领域提出了巨大挑战,以治疗由它们引起的感染,因此,迫切需要寻找新的抗微生物剂。新型抗菌剂。为了克服这些问题,已建议将精油进行纳米包封并利用精油,精油的成分以及抗生素与精油之间的协同作用来解决此问题。然而,关于导致加性,协同或拮抗作用的相互作用的了解还很少。这种知识的重要作用可能是新型和更有效的抗菌混合物的设计,以及对原油精油各成分之间相互作用的理解。撰写此评论的目的是概述有关精油的抗菌特性及其作用机理,精油的成分,纳米囊封的精油以及精油的协同组合的最新知识,以便找到研究领域可以促进精油的应用,以克服耐多药微生物的问题。

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