Maksimova Yuliya, Pyankova Ekaterina, Nesterova Larisa, Maksimov Aleksandr
Laboratory of Molecular Biotechnology, Institute of Ecology and Genetics of Microorganisms UB RAS, 614081 Perm, Russia.
Department of Microbiology and Immunology, Perm State University, 614990 Perm, Russia.
Int J Mol Sci. 2025 May 15;26(10):4728. doi: 10.3390/ijms26104728.
Photothermal therapy combines the effects of near-infrared laser (NIR laser) and strong light-absorbing materials to combat pathogens and unwanted biofilms. Graphene derivatives have a negative effect on microorganisms, and the combination of NIR laser irradiation and carbon nanomaterials (CNMs) can enhance their antibacterial effect. This investigation is devoted to the determination of the expression level of bacterial stress response genes ( and ) under graphene oxide (GO), reduced graphene oxide (rGO), and NIR laser irradiation (1270 nm). GO, rGO and NIR laser irradiation separately and irradiation in the presence of graphene derivatives cause an increase in the expression level of associated with the general stress response of bacteria. GO and rGO do not change the expression level of associated with the cell response to oxidative stress, and decrease it in the presence of a strong oxidizing agent paraquat (PQ). The expression of increases under laser irradiation, but decreases under NIR laser irradiation in combination with graphene derivatives. The effect of GO, rGO, and NIR laser irradiation on the formation and eradication of biofilms was studied. NIR laser with GO and rGO suppresses the metabolic rate and decreases the intracellular ATP content by 94 and 99.6%, respectively. CNMs are shown to reduce biofilm biomass and the content of extracellular polymeric substances (EPSs), both exopolysaccharides and protein in the biofilm matrix. Graphene derivatives in combination with NIR laser irradiation may be an effective means of combating emerging and mature biofilms of Gram-negative bacteria.
光热疗法结合了近红外激光(NIR激光)和强吸光材料的作用来对抗病原体和不需要的生物膜。石墨烯衍生物对微生物有负面影响,近红外激光照射与碳纳米材料(CNMs)的结合可以增强其抗菌效果。本研究致力于测定在氧化石墨烯(GO)、还原氧化石墨烯(rGO)和近红外激光照射(1270 nm)下细菌应激反应基因(和)的表达水平。单独的GO、rGO和近红外激光照射以及在石墨烯衍生物存在下的照射会导致与细菌一般应激反应相关的表达水平增加。GO和rGO不会改变与细胞对氧化应激反应相关的的表达水平,而在强氧化剂百草枯(PQ)存在下会使其降低。在激光照射下的表达增加,但在近红外激光照射与石墨烯衍生物结合时会降低。研究了GO、rGO和近红外激光照射对生物膜形成和根除的影响。与GO和rGO结合的近红外激光分别抑制代谢率并使细胞内ATP含量降低94%和99.6%。碳纳米材料可减少生物膜生物量以及生物膜基质中细胞外聚合物(EPSs)的含量,包括胞外多糖和蛋白质。石墨烯衍生物与近红外激光照射相结合可能是对抗革兰氏阴性菌新出现和成熟生物膜的有效手段。