Institute of Physics and Technologies, North-Eastern Federal University, 677000 Yakutsk, Russia.
Medical Institute, North-Eastern Federal University, 677000 Yakutsk, Russia.
Int J Mol Sci. 2024 May 14;25(10):5328. doi: 10.3390/ijms25105328.
The rise in the antibiotic resistance of bacteria has increased scientific interest in the study of materials with unique mechanisms of antimicrobial action. This paper presents the results of studies on the antimicrobial activity of carbon materials and textiles decorated with them. A comparative analysis of the bactericidal and fungicidal activities of graphene oxide, electrochemically exfoliated multigraphene, carbon dots, and their combinations was performed. Microbiological studies on reference strains of , , and showed that graphene oxide inhibited growth with up to 98% efficiency. Electrochemically exfoliated multigraphene was less effective (up to 40%). This study found no significant antimicrobial activity of carbon dots and the combination of carbon dots with graphene oxide significantly weakened their effectiveness. However, the combination of electrochemically exfoliated multigraphene and carbon dots exhibits a synergistic effect (up to 76%). A study on the antimicrobial activity of decorated cotton textiles demonstrated the effectiveness of antimicrobial textiles with graphene oxide, electrochemically exfoliated multigraphene, and a combination of carbon dots with electrochemically exfoliated multigraphene.
细菌对抗生素的耐药性不断上升,这增加了科学界对具有独特抗菌作用机制的材料的研究兴趣。本文介绍了对具有抗菌活性的碳材料及其纺织品进行研究的结果。对氧化石墨烯、电化学剥离的多石墨烯、碳点及其组合的杀菌和杀菌活性进行了比较分析。对 、 、 参考菌株的微生物研究表明,氧化石墨烯的抑制生长效率高达 98%。电化学剥离的多石墨烯的效果较低(最高可达 40%)。本研究发现碳点和氧化石墨烯组合没有显著的抗菌活性,而碳点和氧化石墨烯的组合显著降低了它们的效果。然而,电化学剥离的多石墨烯和碳点的组合表现出协同效应(最高可达 76%)。对经过修饰的棉纺织品的抗菌活性的研究表明,具有氧化石墨烯、电化学剥离的多石墨烯和碳点与电化学剥离的多石墨烯组合的抗菌纺织品是有效的。