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与复合橙香精油一起培养会产生具有更高抗性和耐受性的进化突变体。

Incubation with a Complex Orange Essential Oil Leads to Evolved Mutants with Increased Resistance and Tolerance.

作者信息

Berdejo Daniel, Pagán Elisa, Merino Natalia, Pagán Rafael, García-Gonzalo Diego

机构信息

Departamento de Producción Animal y Ciencia de los Alimentos, Facultad de Veterinaria, Instituto Agroalimentario de Aragón-IA2 (Universidad de Zaragoza-CITA), C/ Miguel Servet, 177, 50013 Zaragoza, Spain.

出版信息

Pharmaceuticals (Basel). 2020 Sep 9;13(9):239. doi: 10.3390/ph13090239.

Abstract

Emergence of strains with increased resistance/tolerance to natural antimicrobials was evidenced after cyclic exposure to carvacrol, citral, and (+)-limonene oxide. However, no previous studies have reported the development of resistance and tolerance to complex essential oils (EOs). This study seeks to evaluate the occurrence of strains resistant and tolerant to a complex orange essential oil (OEO) after prolonged cyclic treatments at low concentrations. Phenotypic characterization of evolved strains revealed an increase of minimum inhibitory and bactericidal concentration for OEO, a better growth fitness in presence of OEO, and an enhanced survival to lethal treatments, compared to wild-type strain. However, no significant differences ( > 0.05) in cross-resistance to antibiotics were observed. Mutations in and in evolved strains highlight the important role of oxidative stress in the cell response to OEO, as well as the relevance of the cell membrane in the cell response to these natural antimicrobials. This study demonstrates the emergence of strains that are resistant and tolerant to EO (). This phenomenon should be taken into account to assure the efficacy of natural antimicrobials in the design of food preservation strategies, in cleaning and disinfection protocols, and in clinical applications against resistant bacteria.

摘要

在对香芹酚、柠檬醛和氧化柠檬烯进行循环暴露后,出现了对天然抗菌剂具有更高抗性/耐受性的菌株。然而,此前尚无研究报道对复合精油(EOs)产生抗性和耐受性的情况。本研究旨在评估在低浓度下进行长时间循环处理后,对复合橙精油(OEO)具有抗性和耐受性的菌株的出现情况。与野生型菌株相比,进化菌株的表型特征显示出对OEO的最低抑菌浓度和杀菌浓度增加、在OEO存在下具有更好的生长适应性以及对致死处理的存活率提高。然而,在对抗生素的交叉抗性方面未观察到显著差异(>0.05)。进化菌株中 和 的突变突出了氧化应激在细胞对OEO反应中的重要作用,以及细胞膜在细胞对这些天然抗菌剂反应中的相关性。本研究证明了对EO()具有抗性和耐受性的菌株的出现。在设计食品保鲜策略、清洁和消毒方案以及针对耐药细菌的临床应用中,应考虑到这一现象,以确保天然抗菌剂的有效性。

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