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近年来,利用精油解决微生物多药耐药性的新进展:组合和基于纳米的策略。

Recent advances in tackling microbial multidrug resistance with essential oils: combinatorial and nano-based strategies.

机构信息

Department of Pharmacognosy, Faculty of Pharmacy, Grigore T. Popa University of Medicine and Pharmacy Iasi, Iasi, Romania.

Biothermodynamics, TUM School of Life Sciences Weihenstephan, Technical University of Munich, Freising, Germany.

出版信息

Crit Rev Microbiol. 2020 May;46(3):338-357. doi: 10.1080/1040841X.2020.1782339. Epub 2020 Jul 1.

Abstract

The emergence of multidrug resistant pathogens is a great challenge to the medical field and a major global health threat requiring novel therapeutic strategies. Among plant products, essential oils have significant antimicrobial properties that make them promising agents in the fight against drug resistant human pathogens. The aim of the present review was to highlight the most important essential oil-based antimicrobial strategies as revealed by recent studies. Synergistic interactions between essential oils or their bioactive compounds in combination with known antibiotics are presented. Also, nanoformulation approaches to boost the antimicrobial activity of essential oils are reviewed in terms of bioefficiency, stability and design of the nanostructured delivery systems. The focus was mainly put on the antimicrobial activity against multi-drug resistant pathogens, also called "ESKAPE" organisms ( spp., , spp., , , and spp.). Thus, essential oils in combinatorial and nano-based strategies may cope with infections caused by drug-resistant bacteria and may offer possibilities for reducing antibiotic use. Research on the efficacy and safety of such strategies is required for further clinical antimicrobial chemotherapy. In this regard, the understanding of the interactions between essential oil-based strategies and biological interface is essential.

摘要

耐药病原体的出现是对医学界的巨大挑战,也是一个重大的全球健康威胁,需要新的治疗策略。在植物产品中,精油具有显著的抗菌特性,使其成为对抗耐药人类病原体的有前途的药物。本综述的目的是强调最近的研究揭示的基于精油的最重要的抗菌策略。本文介绍了精油或其生物活性化合物与已知抗生素联合使用的协同作用。此外,还从生物效率、纳米结构递送系统的稳定性和设计等方面综述了纳米制剂方法来增强精油的抗菌活性。重点主要放在对抗多药耐药病原体(也称为“ESKAPE”生物体,即 spp.、 spp.、 spp.、 spp.、 spp. 和 spp.)的抗菌活性上。因此,组合和基于纳米的策略中的精油可能有助于应对耐药细菌引起的感染,并为减少抗生素的使用提供可能性。需要对这些策略的 疗效和安全性进行研究,以便进一步进行临床抗菌化疗。在这方面,理解基于精油的策略与生物界面之间的相互作用是至关重要的。

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