Efficacy of Synthetic Furanones on Listeria monocytogenes Biofilm Formation.

IF 5.5 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2019-12-05 DOI:10.3390/foods8120647
Pedro Rodríguez-López, Andrea Emparanza Barrenengoa, Sergio Pascual-Sáez, Marta López Cabo
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Abstract

Furanones are analogues of acylated homoserine lactones with proven antifouling activity in both Gram-positive and Gram-negative bacteria though the interference of various quorum sensing pathways. In an attempt to find new strategies to prevent and control Listeria monocytogenes biofilm formation on stainless steel (SS) surfaces, different concentrations of six synthetic furanones were applied on biofilms formed by strains isolated from food, environmental, and clinical sources grown onto AISI 316 SS coupons. Among the furanones tested, (Z-)-4-Bromo-5-(bromomethylene)-2(5H)-furanone and 3,4-Dichloro-2(5H)-furanone significantly (p < 0.05) reduced the adhesion capacity (>1 log CFU cm-2) in 24 h treated biofilms. Moreover, individually conducted experiments demonstrated that (Z-)-4-Bromo-5-(bromomethylene)-2(5H)-furanone was able to not only significantly (p < 0.05) prevent L. monocytogenes adhesion but also to reduce the growth rate of planktonic cells up to 48 h in a dose-dependent manner. LIVE/DEAD staining followed by epifluorescence microscopy visualisation confirmed these results show an alteration of the structure of the biofilm in furanone-treated samples. Additionally, it was demonstrated that 20 µmol L-1 of 3,4-Dichloro-2(5H)-furanone dosed at 0, 24 and 96 h was able to maintain a lower level of adhered cells (>1 log CFU cm-2; p < 0.05). Since furanones do not pose a selective pressure on bacteria, these results represent an appealing novel strategy for the prevention of L. monocytogenes biofilm grown onto SS.

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合成呋喃酮对单核增生李斯特菌生物膜形成的影响
呋喃酮是酰化高丝氨酸内酯的类似物,通过各种群体感应途径的干扰,在革兰氏阳性菌和革兰氏阴性菌中都具有防污活性。为了寻找预防和控制单核细胞增多性李斯特菌在不锈钢(SS)表面形成生物膜的新策略,将不同浓度的六种合成呋喃酮应用于从食品、环境和临床来源分离的菌株在AISI 316 SS试片上形成的生物膜上。在测试的呋喃酮中,(Z-)-4-溴-5-(溴亚甲基)-2(5H)-呋喃酮和3,4-二氯-2(5H)-呋喃酮类显著降低了24小时处理的生物膜的粘附能力(>1 log CFU cm−2)(p<0.05)。此外,单独进行的实验表明,(Z-)-4-溴-5-(溴亚甲基)-2(5H)-呋喃酮不仅能够显著(p<0.05)阻止单核细胞增多性李斯特菌的粘附,而且能够以剂量依赖的方式降低浮游细胞长达48小时的生长速率。LIVE/DEAD染色和荧光显微镜观察证实,这些结果显示呋喃酮处理的样品中生物膜的结构发生了变化。此外,研究表明,在0、24和96小时给药20µmol L−1的3,4-二氯-2(5H)-呋喃酮能够保持较低水平的粘附细胞(>1 log CFU cm−2;p<0.05)。由于呋喃酮不会对细菌造成选择性压力,这些结果代表了一种有吸引力的新策略,用于预防生长在SS上的单核细胞增多性李斯特菌生物膜。
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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