抗菌活性
细菌
金黄色葡萄球菌
微生物学
材料科学
抗菌剂
抗生素耐药性
抗生素
大肠杆菌
溶血
伤口愈合
生物
生物化学
免疫学
基因
遗传学
作者
Xiaoli Hao,Lingling Huang,Chengfei Zhao,Sining Chen,Wanjing Lin,Yinning Lin,Lirong Zhang,An’an Sun,Chenfang Miao,Xinhua Lin,Min Chen,Shaohuang Weng
标识
DOI:10.1016/j.msec.2021.111971
摘要
Widespread bacterial infection and the spread of antibiotic resistance exhibit increasing threat to the public and thus require new antibacterial strategies. Carbon quantum dots (CQDs) have been extensively investigated to play fluorescent, catalytic roles and even potential biomedical functions containing sterilization. However, synthetic understanding of the interaction of CQDs and bacteria, the exhibition of antibacterial ability, and the risk of resistance evolution remain lacking. Herein, a simple one-pot method was fabricated to prepare positively charged CQDs (PC-CQDs) as a broad-spectrum antibacterial agent. PC-CQDs possessed effective antibacterial activity against all tested Gram-positive, Gram-negative, and drug-resistant bacteria. Investigation of the antibacterial mechanism of PC-CQDs indicated that small-sized PC-CQDs functionalized with –NH2 and –NH induced strong adherence behavior on the bacterial cell membrane. Moreover, the entry of PC-CQDs caused conformational changes in the genes and generation of reactive oxygen species in the bacteria. Safety evaluation illustrated that PC-CQDs did not trigger detectable drug resistance or hemolysis. Furthermore, PC-CQDs effectively promoted the antibacterial treatment of mixed Staphylococcus aureus and Escherichia coli infected wound in rats with low in vivo toxicity. These results suggested that PC-CQDs are a potential antibacterial candidate for real wound healing applications in complex bacterial infections and even resistant bacteria-caused infections.
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