抗菌活性
活性氧
化学
石墨烯
细菌
纳米材料
量子点
机制(生物学)
纳米技术
生物物理学
组合化学
生物化学
材料科学
生物
哲学
认识论
遗传学
作者
Wanfeng Wu,Yanan Qin,Yan Fang,Yukun Zhang,Shuxuan Shao,Fanxing Meng,Minwei Zhang
标识
DOI:10.1016/j.jhazmat.2022.129954
摘要
Currently, graphene quantum dots (GQDs) are widely used as antibacterial agents, and their effects are dependent on the reactive oxygen species (ROS) generated by photodynamic and peroxidase activities. Nevertheless, the supply of substrates or light greatly limits GQDs application. Besides, due to compensatory mechanisms in bacteria, comprehensive analysis of the molecular mechanism underlying the effects of GQDs based on cellular-level experiments is insufficient. Therefore, N-GQDs with inherent excellent, broad-spectrum antibacterial efficacy under acidic conditions were successfully synthesized. Then, via multi-omics analyses, the antibacterial mechanisms of the N-GQDs were found to not only involve generation ROS but also be associated with changes in osmotic pressure, interference with nucleic acid synthesis and inhibition of energy metabolism. More surprisingly, the N-GQDs could destroy intracellular acid-base homeostasis, causing bacterial cell death. In conclusion, this study provides important insights into the antibacterial mechanism of GQDs, offering a basis for the engineering design of antibacterial nanomaterials.
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