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Genetic and Physiological Effects of Noncoherent Visible Light Combined with Hydrogen Peroxide on Streptococcus mutans in Biofilm

机译:非相干可见光与过氧化氢结合对生物膜中变形链球菌的遗传和生理影响

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摘要

Oral biofilms are associated with the most common infections of the oral cavity. Bacteria embedded in the biofilms are less sensitive to antibacterial agents than planktonic bacteria are. Recently, an antibacterial synergic effect of noncoherent blue light and hydrogen peroxide (H2O2) on planktonic Streptococcus mutans was demonstrated. In this study, we tested the effect of a combination of light and H2O2 on the vitality and gene expression of S. mutans embedded in biofilm. Biofilms of S. mutans were exposed to visible light (wavelengths, 400 to 500 nm) for 30 or 60 s (equivalent to 34 or 68 J/cm2) in the presence of 3 to 300 mM H2O2. The antibacterial effect was assessed by microbial counts of each treated sample compared with that of the control. The effect of light combined with H2O2 on the different layers of the biofilm was evaluated by confocal laser scanning microscopy. Gene expression was determined by real-time reverse transcription-PCR. Our results show that noncoherent light, in combination with H2O2, has a synergistic antibacterial effect through all of the layers of the biofilm. Furthermore, this treatment was more effective against bacteria in biofilm than against planktonic bacteria. The combined light and H2O2 treatment up-regulated the expression of several genes such as gtfB, brp, smu630, and comDE but did not affect relA and ftf. The ability of noncoherent visible light in combination with H2O2 to affect bacteria in deep layers of the biofilm suggests that this treatment may be applied in biofilm-related diseases as a minimally invasive antibacterial procedure.
机译:口腔生物膜与口腔最常见的感染有关。与浮游细菌相比,嵌入生物膜中的细菌对抗菌剂的敏感性较低。最近,证明了非相干蓝光和过氧化氢(H2O2)对浮游变形链球菌的抗菌协同作用。在这项研究中,我们测试了光和H2O2组合对生物膜中嵌入的变形链球菌活力和基因表达的影响。在3至300 mM H2O2存在下,将变形链球菌的生物膜暴露于可见光(波长为400至500 nm)中30或60 s(相当于34或68 J / cm 2 ) 。通过与对照相比每个处理样品的微生物计数来评估抗菌效果。通过共聚焦激光扫描显微镜评估了光与H2O2结合对生物膜不同层的影响。基因表达通过实时逆转录PCR确定。我们的结果表明,非相干光与H2O2结合,在生物膜的所有层中均具有协同抗菌作用。此外,这种处理对生物膜中的细菌比对浮游细菌更有效。光和H2O2的联合处理上调了gtfB,brp,smu630和comDE等几种基因的表达,但不影响relA和ftf。非相干可见光与H2O2结合影响生物膜深层细菌的能力表明,这种治疗可作为微创抗菌程序应用于生物膜相关疾病。

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