Liu Rong, Wang Xuandong, Ye Jun, Xue Ximei, Zhang Fangrong, Zhang Huicong, Hou Xuemei, Liu Xiaolong, Zhang Yun
Department of Translational Medicine, Xiamen Institute of Rare Earth Materials, Chinese Academy of Sciences, Xiamen 361021, People's Republic of China. Key Laboratory of Design and Assembly of Functional Nanostructures, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, People's Republic of China.
Nanotechnology. 2018 Mar 9;29(10):105704. doi: 10.1088/1361-6528/aaa624.
Drug resistance of bacteria has become a global health problem, as it makes conventional antibiotics less efficient. It is urgently needed to explore novel antibacterial materials and develop effective treatment strategies to overcome the drug resistance of antibiotics. Herein, we successfully synthesized silver decorated sandwich-like mesoporous silica/reduced graphene oxide nanosheets (rGO/MSN/Ag) as a novel antibacterial material through facile method. The rGO and Ag nanoparticles can be reduced in the reaction system without adding any other reductants. In addition, the rGO/MSN/Ag showed higher photothermal conversion capacity due to the modification of silver nanoparticles and exhibited excellent antibacterial activities against Pseudomonas putida, Escherichia coli and Rhodococcus at relatively low dosages, which was confirmed by the minimum inhibitory concentration (MIC) test. Meanwhile, the E. coli with a high concentration was selected for exposure using an 808 nm laser, and the antibacterial effect was obviously enhanced by the near-infrared irradiation induced photothermal effect. Moreover, the hepatocyte LO2 were used for the cytotoxicity evaluation, and the rGO/MSN/Ag showed low toxicity and were without detectable cytotoxicity at the antimicrobial dose. As the prepared rGO/MSN/Ag nanosheets have the advantages of low-cost and high antibacterial activity, they might be of promising and useful antibacterial agents for different applications.
细菌耐药性已成为一个全球性的健康问题,因为它使传统抗生素的效率降低。迫切需要探索新型抗菌材料并制定有效的治疗策略,以克服抗生素的耐药性。在此,我们通过简便的方法成功合成了银修饰的三明治状介孔二氧化硅/还原氧化石墨烯纳米片(rGO/MSN/Ag)作为一种新型抗菌材料。在不添加任何其他还原剂的情况下,rGO和银纳米颗粒可以在反应体系中被还原。此外,由于银纳米颗粒的修饰,rGO/MSN/Ag表现出更高的光热转换能力,并在相对较低的剂量下对恶臭假单胞菌、大肠杆菌和红球菌表现出优异的抗菌活性,这通过最低抑菌浓度(MIC)测试得到证实。同时,选择高浓度的大肠杆菌用808 nm激光照射,近红外辐射诱导的光热效应明显增强了抗菌效果。此外,使用肝细胞LO2进行细胞毒性评估,rGO/MSN/Ag表现出低毒性,在抗菌剂量下没有可检测到的细胞毒性。由于所制备的rGO/MSN/Ag纳米片具有低成本和高抗菌活性的优点,它们可能是用于不同应用的有前景且有用的抗菌剂。