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CeO 纳米酶涂覆的透明聚碳酸酯排斥 PA14 生物膜。

Transparent polycarbonate coated with CeO nanozymes repel PA14 biofilms.

机构信息

Johannes Gutenberg-Universität Mainz, Department Chemie, Duesbergweg 10-14, D-55128 Mainz, Germany.

Johannes-Gutenberg-Universität Mainz, Institut für Molekulare Physiologie, Biozentrum II, Mikrobiologie und Weinforschung, Hanns-Dieter-Hüsch-Weg 17, D-55128 Mainz, Germany.

出版信息

Nanoscale. 2021 Dec 23;14(1):86-98. doi: 10.1039/d1nr03320d.

DOI:10.1039/d1nr03320d
PMID:34897345
Abstract

Highly transparent CeO/polycarbonate surfaces were fabricated that prevent adhesion, proliferation, and the spread of bacteria. CeO nanoparticles with diameters of 10-15 nm and lengths of 100-200 nm for this application were prepared by oxidizing aqueous dispersions of Ce(OH) with HO in the presence of nitrilotriacetic acid (NTA) as the capping agent. The surface-functionalized water-dispersible CeO nanorods showed high catalytic activity in the halogenation reactions, which makes them highly efficient functional mimics of haloperoxidases. These enzymes are used in nature to prevent the formation of biofilms through the halogenation of signaling compounds that interfere with bacterial cell-cell communication ("quorum sensing"). Bacteria-repellent CeO/polycarbonate plates were prepared by dip-coating plasma-treated polycarbonate plates in aqueous CeO particle dispersions. The quasi-enzymatic activity of the CeO coating was demonstrated using phenol red enzyme assays. The monolayer coating of CeO nanorods (1.6 μg cm) and the bacteria repellent properties were demonstrated by atomic force microscopy, biofilm assays, and fluorescence measurements. The engineered polymer surfaces have the ability to repel biofilms as green antimicrobials on plastics, where HO is present in humid environments such as automotive parts, greenhouses, or plastic containers for rainwater.

摘要

制备了具有高透明性的 CeO/聚碳酸酯表面,可防止细菌黏附、增殖和扩散。为此应用,通过在氮三乙酸(NTA)作为封端剂存在下用 HO 氧化 Ce(OH)的水分散体,制备了直径为 10-15nm、长度为 100-200nm 的 CeO 纳米颗粒。表面功能化的水分散 CeO 纳米棒在卤化反应中表现出高催化活性,使其成为卤过氧化物酶的高效功能模拟物。这些酶在自然界中被用来通过卤化干扰细菌细胞间通信的信号化合物(“群体感应”)来防止生物膜的形成。通过将等离子体处理的聚碳酸酯板浸入 CeO 颗粒分散体中进行浸涂,制备了具有抗细菌性能的 CeO/聚碳酸酯板。通过苯酚红酶测定法证明了 CeO 涂层的准酶活性。通过原子力显微镜、生物膜测定法和荧光测量法证明了 CeO 纳米棒的单层涂层(1.6μg cm)和抗细菌性能。在存在 HO 的潮湿环境(如汽车零件、温室或雨水用塑料容器)中,工程聚合物表面具有作为塑料的绿色抗菌剂排斥生物膜的能力。

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