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首页> 外文期刊>Coatings >Facile Route of Fabricating Long-Term Microbicidal Silver Nanoparticle Clusters against Shiga Toxin-Producing Escherichia coli O157:H7 and Candida auris
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Facile Route of Fabricating Long-Term Microbicidal Silver Nanoparticle Clusters against Shiga Toxin-Producing Escherichia coli O157:H7 and Candida auris

机译:用于滋阴毒素的长期微生物银纳米粒子簇的容易途径,产生滋阴毒素的大肠杆菌O157:H7和Candida Auris

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Microbial contamination remains a significant issue for many industrial, commercial, and medical applications. For instance, microbial surface contamination is detrimental to numerous aspects of food production, infection transfer, and even marine applications. As such, intense scientific interest has focused on improving the antimicrobial properties of surface coatings via both chemical and physical routes. However, there is a lack of synthetic coatings that possess long-term microbiocidal performance. In this study, silver nanoparticle cluster coatings were developed on copper surfaces via an ion-exchange and reduction reaction, followed by a silanization step. The durability of the microbiocidal activity for these develped surfaces was tested against pathogenic bacterial and fungal species, specifically Escherichia coli O157:H7 and Candida auris, over periods of 1- and 7-days. It was observed that more than 90% of E. coli and C. auris were found to be non-viable following the extended exposure times. This facile material fabrication presents as a new surface design for the production of durable microbicidal coatings which can be applied to numerous applications.
机译:微生物污染仍然是许多工业,商业和医疗应用的重要问题。例如,微生物表面污染对食品生产,感染转移和甚至海洋应用的许多方面有害。因此,强烈的科学兴趣重点是通过化学和物理途径改善表面涂层的抗微生物性质。然而,缺乏具有长期微生物性能的合成涂层。在该研究中,通过离子交换和还原反应在铜表面上在铜表面上开发银纳米粒子簇涂层,其次是硅烷化步骤。对这些开发表面的微生物活性的耐久性针对病原细菌和真菌物种进行了测试,特别是大肠杆菌O157:H7和Candida Auris,超过1-8天。观察到,在延长的暴露时间后发现超过90%的大肠杆菌和C.αuris是不可行的。该容器的制造作为一种新的表面设计,用于生产可耐用的微生物涂层,其可应用于许多应用。

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