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Antibacterial and antibiofilm activities of thyme oil against foodborne multiple antibiotics-resistant Enterococcus faecalis

机译:百里香油对食物造成的抗菌和抗生素抗性肠球菌的抗菌和抗菌和抗菌剂活性

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摘要

The inhibitory and bactericidal activities of thyme oil against the foodborne multiple antibiotics-resistant Enterococcus faecalis biofilm were evaluated in this study. Gas chromatography-mass spectrometry revealed that more than 70% of the composition of thyme oil is thymol. Crystal violet staining assay showed that 128 and 256 μg/mL thyme oil significantly inhibited the biofilm formation of E. faecalis. The cell adherence of E. faecalis, as shown by its swimming and swarming motilities, was reduced by thyme oil. The exopolysaccharide (EPS) quantification assay showed that thyme oil inhibited the EPS synthesis in E. faecalis biofilms. The 3D-view observations through confocal laser scanning and scanning electron microscopy suggested that cell adherence and biofilm thickness were decreased in thyme oil–treated biofilms. Quantitative real-time analyses showed that the transcription of ebp and epa gene clusters, which were related to cell mobility and EPS production, was inhibited by thyme oil. Thus, thyme oil effectively inhibited the biofilm formation of E. faecalis by affecting cell adherence and EPS synthesis. Furthermore, 2,048 and 4,096 μg/mL thyme oil can effectively inactivate E. faecalis population in the mature E. faecalis biofilms by 5.75 and 7.20 log CFU/mL, respectively, after 30 min of treatment. Thus, thyme oil at different concentrations can be used as an effective antibiofilm or germicidal agent to control E. faecalis biofilms.
机译:在本研究中评估了百里香油对食品中抗性抗病性肠球菌的抑制和杀菌活性。气相色谱 - 质谱表明,超过70%的百里香油组成是胸腺酚。晶体紫染色测定显示128和256μg/ ml百里香油显着抑制了E.粪便的生物膜形成。通过游泳和肿胀的动力显示,E.粪便的细胞依从性,百里香油减少。潜水糖(EPS)定量测定表明,百里香油抑制了E.粪群生物膜中的EPS合成。通过共聚焦激光扫描和扫描电子显微镜的3D视图观察表明,在百里香的油处理的生物膜中降低了细胞粘附和生物膜厚度。定量实时分析表明,百里香油抑制了与细胞迁移率和EPS产生有关的EBP和EPA基因簇的转录。因此,百里香油通过影响细胞粘附和EPS合成而有效地抑制了E.粪便的生物膜形成。此外,2,048和4,096μg/ mL百里香油分别在30分钟后分别在成熟的大肠杆菌生物膜中有效地将E.粪便群体灭活。因此,不同浓度下的百里香油可以用作对等抗体的有效抗体或杀菌剂以控制E.AceCalis生物膜。

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