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首页> 外文期刊>Nanoscale >Conjugating AIE-featured AuAg nanoclusters with highly luminescent carbon dots for improved visible-light-driven antibacterial activity
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Conjugating AIE-featured AuAg nanoclusters with highly luminescent carbon dots for improved visible-light-driven antibacterial activity

机译:接合AIE-featured AuAg发光机制高荧光碳点的改善visible-light-driven抗菌活性

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摘要

Metal nanoclusters (NCs) have emerged as novel antibacterial agents featuring broad-spectrum antibacterial activity without drug resistance for bacteria, but suffer from fast antibacterial invalidation due to their consumption by bacteria. Herein we report the design of a visible-light-driven photodynamic antibacterial agent based on conjugating aggregation-induced emission (AIE)-featured AuAg NCs with highly luminescent carbon dots (CDs). The conjugation of CDs with AuAg NCs could not only enhance the visible-light harvest, but also promote charge carrier generation/separation via charge/energy transfer, leading to the production of abundant reactive oxygen species (ROS) for bacterial killing under visible-light irradiation. Consequently, the as-obtained CDs@AuAg NCs display excellent photodynamic antibacterial activity against both Gram-positive and Gram-negative bacteria with 4–5 orders of magnitude reduction in colony forming units, which is different from the conventional metal NC-based analogue relying on self-consumption for bacterial killing. In addition, the CDs@AuAg NCs are found to be free of cytotoxicity; the ROS capture experiments indicate that the photoproduced H2O2 by CDs@AuAg NCs is the main active species for bacterial killing, accounting for nearly 48% of the total antibacterial efficacy. This study provides a paradigm for the design of metal NC-based photodynamic antibacterial agents for diverse bactericidal applications.
机译:金属纳米束(nc)已成为小说抗菌药物具有广谱抗菌活性没有耐药性细菌,但遭受快速抗菌由于他们的消费失效细菌。visible-light-driven光动力抗菌基于共扼aggregation-induced代理发射(AIE)特色AuAg nc与高度荧光碳点(CDs)。光盘,AuAg nc不仅可以提高可见光收获,也促进电荷船代/通过电荷分离/能量转移,导致丰富的生产活性氧(ROS)的细菌在可见光照射下死亡。因此,适用于CDs@AuAg nc显示良好的光动力抗菌对革兰氏阳性和活动革兰氏阴性细菌的4 - 5个订单级减少集落形成单位,有别于传统的金属NC-based模拟依赖self-consumption细菌杀死。发现无细胞毒性;捕获实验表明photoproduced过氧化氢的CDs@AuAg nc是主要的活跃的物种的细菌杀死,会计抗菌总数的近48%功效。设计的金属NC-based光能为不同的杀菌抗菌药物应用程序。

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