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聚乙烯醇-乙烯卤胺膜对无害李斯特菌和大肠杆菌O157:H7的抗生物膜作用

Antibiofilm Effect of Poly(Vinyl Alcohol--Ethylene) Halamine Film against Listeria innocua and Escherichia coli O157:H7.

作者信息

Cossu Andrea, Si Yang, Sun Gang, Nitin Nitin

机构信息

Department of Food Science and Technology, University of California, Davis, Davis, California, USA.

Division of Textile and Clothing, University of California, Davis, Davis, California, USA.

出版信息

Appl Environ Microbiol. 2017 Sep 15;83(19). doi: 10.1128/AEM.00975-17. Print 2017 Oct 1.

Abstract

Bacterial biofilm formation is linked to several infections and foodborne disease outbreaks. To address this challenge, there is an unmet need to develop rechargeable antimicrobial materials that can provide continuous sanitation of contact surfaces, especially in the food industry. This study was aimed at evaluating a novel rechargeable antimicrobial polymer formed using poly(vinyl alcohol--ethylene) (PVA--PE) with halamine functionality to prevent biofilm formation with repeated exposure to high loads of bacteria and organic content and also to aid in inactivation of preformed biofilms upon contact with this novel material. The antibiofilm activity of this rechargeable antimicrobial material was evaluated using a combination of fluorescence and scanning electron microscopy techniques and biofilm metabolic activity analyses. The results determined on the basis of imaging and metabolic activity measurements demonstrated that halamine-functionalized polymer films significantly reduced and O157:H7 biofilm formation. This novel polymeric material maintained its antibiofilm activity with repeated cycles of extended exposure to high levels of bacterial load. These polymeric films were recharged using bleach and cleaned using mechanical sonication after each cycle of extended incubation with bacteria. Halamine-functionalized polymeric material also exhibited significant antibacterial activity against preformed biofilms on a model surface. In summary, our results demonstrate the potential of this antimicrobial material to provide continuous sanitation of surfaces and applications for inactivating preformed biofilms without extensive use of resources, including water and heat. This polymeric material may be used as a replacement for existing polymeric materials or as a coating on diverse materials. Conventional sanitizers can have limited efficacy in inactivating biofilms in areas with limited accessibility and buildup of organic biomass. Furthermore, none of the current approaches provide continuous sanitation of surfaces. There is a significant unmet need to develop and validate materials that can prevent biofilm formation as well as inactivate preformed biofilms. In this study, the efficacy of a copolymer film containing -halamine against biofilms of and O157:H7 was evaluated. The polymer film showed strong inhibitory activity against pregrown biofilm or prevented the growth of a new biofilm. The polymer film also maintained its antibiofilm activity after multiple cycles of exposure to high titers of bacterial load with recharging of the polymer film using bleach at intermediate steps between the cycles. Overall, the results demonstrate the potential of a novel antimicrobial material to inhibit and treat biofilms in food industry applications.

摘要

细菌生物膜的形成与多种感染及食源性疾病暴发有关。为应对这一挑战,迫切需要开发可充电的抗菌材料,以实现接触表面的持续卫生清洁,尤其是在食品工业领域。本研究旨在评估一种新型的可充电抗菌聚合物,该聚合物由具有卤胺功能的聚乙烯醇 - 乙烯(PVA - PE)制成,用于在反复暴露于高负荷细菌和有机物质的情况下防止生物膜形成,并在与这种新型材料接触时帮助灭活已形成的生物膜。使用荧光和扫描电子显微镜技术以及生物膜代谢活性分析相结合的方法,评估了这种可充电抗菌材料的抗生物膜活性。基于成像和代谢活性测量得出的结果表明,卤胺功能化聚合物膜显著减少了大肠杆菌和O157:H7生物膜的形成。这种新型聚合物材料在反复长时间暴露于高细菌负荷的情况下,仍保持其抗生物膜活性。在每次与细菌长时间孵育的循环后,使用漂白剂对这些聚合物膜进行充电,并通过机械超声处理进行清洁。卤胺功能化聚合物材料对模型表面上已形成的生物膜也表现出显著的抗菌活性。总之,我们的结果表明这种抗菌材料具有为表面提供持续卫生清洁以及在不大量使用包括水和热等资源的情况下灭活已形成生物膜的潜力。这种聚合物材料可替代现有的聚合物材料或用作多种材料的涂层。传统消毒剂在难以触及的区域以及有机生物质积累的区域灭活生物膜的效果可能有限。此外,目前的方法均无法实现表面的持续卫生清洁。迫切需要开发和验证能够防止生物膜形成以及灭活已形成生物膜的材料。在本研究中,评估了含卤胺的共聚物膜对大肠杆菌和O157:H7生物膜的功效。该聚合物膜对预先生长的生物膜表现出强烈的抑制活性,或可防止新生物膜的生长。在多次暴露于高滴度细菌负荷的循环过程中,通过在循环中间步骤使用漂白剂对聚合物膜进行充电,该聚合物膜仍保持其抗生物膜活性。总体而言,结果表明一种新型抗菌材料在食品工业应用中抑制和处理生物膜的潜力。

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Nanomaterials (Basel). 2017 Feb 22;7(2):48. doi: 10.3390/nano7020048.
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A hierarchical polymer brush coating with dual-function antibacterial capability.一种具有双功能抗菌能力的分级聚合物刷涂层。
Colloids Surf B Biointerfaces. 2017 Jan 1;149:260-270. doi: 10.1016/j.colsurfb.2016.08.012. Epub 2016 Aug 12.

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