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铜的原子分散增强氮掺杂碳点的抗菌活性

Antibacterial Activity of Nitrogen-Doped Carbon Dots Enhanced by Atomic Dispersion of Copper.

作者信息

Nichols Forrest, Lu Jia En, Mercado Rene, Rojas-Andrade Mauricio D, Ning Shunlian, Azhar Zahra, Sandhu Jasleen, Cazares Rafael, Saltikov Chad, Chen Shaowei

机构信息

Department of Chemistry and Biochemistry, University of California, 1156 High Street, Santa Cruz, California 95064, United States.

School of Environment and Energy, South China University of Technology, Guangzhou Higher Education Mega Center, Guangzhou 510006, China.

出版信息

Langmuir. 2020 Oct 6;36(39):11629-11636. doi: 10.1021/acs.langmuir.0c02293. Epub 2020 Sep 24.

Abstract

Antibiotic resistance is an imminent threat to human health, requiring the development of effective alternate antibacterial agents. One such alternative includes nanoparticle (photo)catalysts that are good at producing reactive oxygen species (ROS). Herein, we report the design and preparation of nitrogen-doped carbon dots functionalized with atomically dispersed copper centers by Cu-N coordination (Cu/NCD) that exhibit apparent antibacterial activity toward Gram-negative () under photoirradiation. The growth of cells is found to be markedly inhibited by Cu/NCD under 365 nm photoirradiation, whereas no apparent inhibition is observed in the dark or with the copper-free carbon dots alone. This is ascribed to the prolonged photoluminescence lifetime of Cu/NCD that facilitates the separation of photogenerated electron-hole pairs and ROS formation. The addition of -butyl alcohol is found to completely diminish the antimicrobial activity, suggesting that hydroxyl radicals are responsible for microbial death. Consistent results are obtained from fluorescence microscopic studies using CellROX green as the probe. Similar bactericidal behaviors are observed with Gram-positive (). The copper content within the carbon material is optimized at a low loading of 1.09 wt %, reducing the possibility of toxic copper-ion leaching. Results from this study highlight the significance of carbon-based nanocomposites with isolated metal species as potent antimicrobial reagents.

摘要

抗生素耐药性对人类健康构成了紧迫威胁,需要开发有效的替代抗菌剂。一种这样的替代物包括擅长产生活性氧(ROS)的纳米颗粒(光)催化剂。在此,我们报告了通过Cu-N配位(Cu/NCD)用原子分散的铜中心功能化的氮掺杂碳点的设计和制备,其在光照射下对革兰氏阴性菌()表现出明显的抗菌活性。发现在365nm光照射下,Cu/NCD能显著抑制细胞生长,而在黑暗中或仅使用无铜碳点时未观察到明显抑制作用。这归因于Cu/NCD延长的光致发光寿命,其促进了光生电子 - 空穴对的分离和ROS的形成。发现添加叔丁醇会完全消除抗菌活性,这表明羟基自由基是导致微生物死亡的原因。使用CellROX green作为探针的荧光显微镜研究获得了一致的结果。对革兰氏阳性菌()也观察到类似的杀菌行为。碳材料中的铜含量在低负载量1.09 wt%时得到优化,降低了有毒铜离子浸出的可能性。这项研究的结果突出了具有孤立金属物种的碳基纳米复合材料作为有效抗菌试剂的重要性。

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