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探究多彩 Ag、Au 和 Cu 纳米团簇的抗菌性能。

Exploring the Antibacteria Performance of Multicolor Ag, Au, and Cu Nanoclusters.

机构信息

College of Pharmaceutical Sciences, Key Laboratory of Luminescent and Real-Time Analytical Chemistry (Ministry of Education) , Southwest University , Chongqing 400715 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Feb 27;11(8):8461-8469. doi: 10.1021/acsami.8b22143. Epub 2019 Feb 15.

Abstract

Integrating kinds of bactericides as one entirety shows prospect for improving antibacterial efficiency, thus a new type of nanoclusters based on bactericide-directed herein emerged as a combination for achieving a higher antibacterial effect. Specifically, an easily operated approach for preparing bacitracin-directed silver, gold, and copper nanoclusters (AgNCs, AuNCs, and CuNCs, respectively) was proposed. Meanwhile, AgNCs@Bacitracin, AuNCs@Bacitracin, and CuNCs@Bacitracin emitted cyan, yellow, and red colors of fluorescence, respectively, and different sizes and nitrogen contents of these nanoclusters played a critical role for their fluorescence alterations. Significantly, AgNCs@Bacitracin exhibited robust bacteria-killing efficiency than other nanoclusters, owing to its marked damage on the bacterial membrane. Additionally, propidium iodide (PI) staining indicated the bacterial membrane damage of 72.3% to the bacteria population followed by the treatment with AgNCs@Bacitracin, and the introduction of AgNCs@Bacitracin lead to the higher reactive oxygen species (ROS) production, facilitating their attractive antibacterial activity. Moreover, this strategy of developing new nanoclusters broadened the avenues for designing the improved antibacterial materials.

摘要

将各种杀菌剂整合为一体显示出提高抗菌效率的前景,因此,一种新型的基于杀菌剂导向的纳米团簇作为实现更高抗菌效果的组合出现了。具体来说,提出了一种简便的制备杆菌肽导向银、金和铜纳米团簇(分别为 AgNCs、AuNCs 和 CuNCs)的方法。同时,AgNCs@Bacitracin、AuNCs@Bacitracin 和 CuNCs@Bacitracin 分别发出青色、黄色和红色荧光,这些纳米团簇的不同尺寸和氮含量对其荧光变化起着关键作用。重要的是,AgNCs@Bacitracin 表现出比其他纳米团簇更强的杀菌效率,这归因于其对细菌膜的显著损伤。此外,碘化丙啶(PI)染色表明,AgNCs@Bacitracin 处理后的细菌群体中,细菌膜的损伤率达到 72.3%,并且 AgNCs@Bacitracin 的引入导致更高的活性氧(ROS)产生,从而促进了其具有吸引力的抗菌活性。此外,这种开发新型纳米团簇的策略拓宽了设计改进型抗菌材料的途径。

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