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用于光诱导抗菌应用的二维纳米材料。

Two-Dimensional Nanomaterials for Photoinduced Antibacterial Applications.

作者信息

Zhao Jun, Huang Shuyi, Ravisankar Priyaharshini, Zhu Houjuan

机构信息

Institute of Solid State Physics, Chinese Academy of Sciences, Hefei, Anhui 230031, China.

Key Laboratory of Photovoltaic and Energy Conservation Materials, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China.

出版信息

ACS Appl Bio Mater. 2020 Dec 21;3(12):8188-8210. doi: 10.1021/acsabm.0c00950. Epub 2020 Nov 23.

Abstract

Nanomaterials used as novel antimicrobial agents are developed to combat wide-spectrum bacteria as well as alleviate the problem of bacterial resistance to traditional antibiotics. Two-dimensional (2D) nanomaterials are regarded as promising and widely applicable wide-spectrum antibacterial nanoagents due to their outstanding characteristics, including large surface area, stable structure, good biocompatibility, and cheap raw materials, especially excellent photocatalytic or photothermal properties. The advantages of less resistance, rapid sterilization, local action mode, and non-invasive make 2D nanomaterials with photoinduced property stand out in novel sterilization agents. Here, we systematically summarize various kinds of 2D nanomaterials that were used in photoinduced antibacterial field and introduce the synthesis methods and physicochemical properties related to antibacterial capability. Besides, the sterilization mechanisms of different 2D nanomaterials are also introduced in detail including a direct temperature generation, ROS production or ROS-independent oxidative stress, or various synergistic antibacterial modes. Lastly, we have also discussed the current problems of 2D nanomaterials as light-inducing antibacterial agents and their future application prospects in the fields of biomedicine, sewage treatment, food, and other application scenarios. We envision that this review will assist investigators with quick and in-depth understanding of the latest progress in 2D nanomaterials for photoinduced sterilization, inspiring the development of multiply strategies to design and synthesize novel 2D materials with strong bactericidal capability and high biological safety, and expand 2D materials with photoinduced sterilization to more application scenarios.

摘要

用作新型抗菌剂的纳米材料被开发用于对抗广谱细菌,并缓解细菌对传统抗生素的耐药问题。二维(2D)纳米材料因其突出的特性,包括大表面积、稳定结构、良好的生物相容性、廉价的原材料,尤其是优异的光催化或光热性能,而被视为有前景且广泛适用的广谱抗菌纳米剂。具有光诱导特性的二维纳米材料在新型杀菌剂中脱颖而出,其优点包括耐药性低、杀菌迅速、局部作用模式和非侵入性。在此,我们系统地总结了用于光诱导抗菌领域的各种二维纳米材料,并介绍了与抗菌能力相关的合成方法和物理化学性质。此外,还详细介绍了不同二维纳米材料的杀菌机制,包括直接产生温度、产生活性氧或不依赖活性氧的氧化应激,或各种协同抗菌模式。最后,我们还讨论了二维纳米材料作为光诱导抗菌剂目前存在的问题以及它们在生物医学、污水处理、食品和其他应用场景领域的未来应用前景。我们设想,这篇综述将帮助研究人员快速深入了解二维纳米材料用于光诱导杀菌的最新进展,激发开发多种策略来设计和合成具有强大杀菌能力和高生物安全性的新型二维材料,并将具有光诱导杀菌性能的二维材料扩展到更多应用场景。

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