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Biofilm Inhibition by Novel Natural Product- and Biocide-Containing Coatings Using High-Throughput Screening

机译:使用高通量筛选的新型天然产物和含杀生物剂涂层对生物膜的抑制作用

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摘要

The use of natural products (NPs) as possible alternative biocidal compounds for use in antifouling coatings has been the focus of research over the past decades. Despite the importance of this field, the efficacy of a given NP against biofilm (mainly bacteria and diatoms) formation is tested with the NP being in solution, while almost no studies test the effect of an NP once incorporated into a coating system. The development of a novel bioassay to assess the activity of NP-containing and biocide-containing coatings against marine biofilm formation has been achieved using a high-throughput microplate reader and highly sensitive confocal laser scanning microscopy (CLSM), as well as nucleic acid staining. Juglone, an isolated NP that has previously shown efficacy against bacterial attachment, was incorporated into a simple coating matrix. Biofilm formation over 48 h was assessed and compared against coatings containing the NP and the commonly used booster biocide, cuprous oxide. Leaching of the NP from the coating was quantified at two time points, 24 h and 48 h, showing evidence of both juglone and cuprous oxide being released. Results from the microplate reader showed that the NP coatings exhibited antifouling efficacy, significantly inhibiting biofilm formation when compared to the control coatings, while NP coatings and the cuprous oxide coatings performed equally well. CLSM results and COMSTAT analysis on biofilm 3D morphology showed comparable results when the NP coatings were tested against the controls, with higher biofilm biovolume and maximum thickness being found on the controls. This new method proved to be repeatable and insightful and we believe it is applicable in antifouling and other numerous applications where interactions between biofilm formation and surfaces is of interest.
机译:在过去的几十年中,使用天然产物(NPs)作为防污涂料的替代杀生物化合物一直是研究的重点。尽管该领域很重要,但是给定的NP对生物膜(主要是细菌和硅藻)形成的功效是在溶液中溶解NP的情况下进行测试的,而几乎没有研究测试将NP掺入涂层系统后的效果。使用高通量酶标仪和高灵敏度共聚焦激光扫描显微镜(CLSM)以及核酸染色技术,已经开发出了一种新型的生物检测方法,用于评估含NP和含杀生物剂的涂层对海洋生物膜形成的活性。 。 Juglone是一种分离的NP,以前已显示出抗细菌附着的功效,已被并入简单的涂层基质中。评估了48小时内的生物膜形成情况,并将其与含有NP和常用的增强型杀生物剂氧化亚铜的涂层进行了比较。在两个时间点(24小时和48小时)对NP从涂层中的浸出进行了定量,显示出朱胶和氧化亚铜均被释放的证据。从酶标仪读取的结果表明,与对照涂层相比,NP涂层具有防污功效,可显着抑制生物膜的形成,而NP涂层和氧化亚铜涂层的性能相同。当将NP涂层与对照进行测试时,CLSM结果和COMSTAT对生物膜3D形态的分析显示了可比的结果,在对照上发现了更高的生物膜生物量和最大厚度。这种新方法被证明是可重复的和有见地的,我们相信它可用于防污和其他许多需要关注生物膜形成和表面之间相互作用的应用中。

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