首页> 美国卫生研究院文献>Molecules >The Effects of Eugenol Trans-Cinnamaldehyde Citronellol and Terpineol on Escherichia coli Biofilm Control as Assessed by Culture-Dependent and -Independent Methods
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The Effects of Eugenol Trans-Cinnamaldehyde Citronellol and Terpineol on Escherichia coli Biofilm Control as Assessed by Culture-Dependent and -Independent Methods

机译:丁香酚反肉桂醛香茅醇和松油醇对大肠杆菌生物膜控制的影响(通过培养依赖性和非依赖性方法评估)

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摘要

Bacterial biofilms contribute to problems with preserving food hygiene, jeopardizing any conventional intervention method used by the food industry. Hence, the approach of using essential oil (EO) compounds effective in biofilm control has considerable merit and deserves in-depth research. In this study, the effect of selected EO compounds (eugenol, trans-cinnamaldehyde, citronellol, and terpineol) was assessed on biofilm control by plate count, resazurin assay, and Syto 9/PI (-/propidium iodide) staining coupled with flow cytometry (FCM) and confocal laser scanning microscopy (CLSM). The selected EO compounds effectively inhibited the growth of planktonic at low concentrations of 3–5 mM, revealing a high antimicrobial activity. EO compounds markedly interfered with biofilms too, with trans-cinnamaldehyde causing the most prominent effects. Its antibiofilm activity was manifested by a high reduction of cell metabolic activity (>60%) and almost complete reduction in biofilm cell culturability. In addition, almost 90% of the total cells had perturbed cell membranes. Trans-cinnamaldehyde further impacted the cell morphology resulting in the filamentation and, thus, in the creation of a mesh network of cells. Citronellol scored the second in terms of the severity of the observed effects. However, most of all, it strongly prevented native microcolony formation. Eugenol and terpineol also affected the formation of a typical biofilm structure; however, small cell aggregates were still repeatedly found. Overall, eugenol caused the mildest impairment of cell membranes where 50% of the total cells showed the Syto 9+/PI– pattern coupled with healthy cells and another 48% with injured cells (the Syto 9+/PI+). For terpineol, despite a similar percentage of healthy cells, another 45% was shared between moderately (Syto 9+PI+) and heavily (Syto 9–PI+) damaged cells. The results highlight the importance of a multi-method approach for an accurate assessment of EO compounds’ action against biofilms and may help develop better strategies for their effective use in the food industry.
机译:细菌生物膜会导致食品卫生问题,危害食品工业使用的任何常规干预方法。因此,使用有效控制生物膜的香精油(EO)化合物的方法具有相当的优点,值得深入研究。在这项研究中,通过板计数,刃天青测定,Syto 9 / PI(碘化丙锭)染色和流式细胞术结合评估了选定的EO化合物(丁子香酚,反式肉桂醛,香茅醇和萜品醇)对生物膜控制的影响。 (FCM)和共聚焦激光扫描显微镜(CLSM)。所选的EO化合物在3–5 mM的低浓度下可有效抑制浮游生物的生长,显示出较高的抗菌活性。 EO化合物也明显干扰生物膜,反式肉桂醛引起最明显的影响。其抗生物膜活性通过细胞代谢活性的高度降低(> 60%)和生物膜细胞可培养性的几乎完全降低来体现。另外,总细胞中几乎90%的细胞膜受到干扰。反式肉桂醛进一步影响细胞形态,导致丝状化,从而形成细胞网状网​​络。香茅醇在观察到的影响的严重性方面得分第二。然而,最重要的是,它强烈阻止了天然小菌落的形成。丁香酚和松油醇也影响了典型生物膜结构的形成。但是,仍然反复发现小细胞聚集体。总体而言,丁子香酚对细胞膜的损害最轻,其中总细胞的50%表现出Syto 9 + / PI–模式与健康细胞结合,另外48%表现出受损细胞(Syto 9 + / PI +)。对于松油醇,尽管健康细胞百分比相似,但中度受损(Syto 9 + PI +)和严重受损(Syto 9–PI +)的细胞又占45%。结果强调了一种多方法方法对于准确评估EO化合物对生物膜的作用的重要性,并可能有助于制定更好的策略以在食品工业中有效使用它们。

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