首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Antimicrobial photodynamic therapy alone or in combination with antibiotic local administration against biofilms of Fusobacterium nucleatum and Porphyromonas gingivalis
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Antimicrobial photodynamic therapy alone or in combination with antibiotic local administration against biofilms of Fusobacterium nucleatum and Porphyromonas gingivalis

机译:单独的抗菌光动力学治疗或与抗生素局部给药反对Fusobacterium核心核和卟啉核糖菌的生物膜组合

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Antimicrobial photodynamic therapy (aPDT) kills several planktonic pathogens. However, the susceptibility of biofilm-derived anaerobic bacteria to aPDT is poorly characterized. Here, we evaluated the effect of Photodithazine (PDZ)-mediated aPDT on Fusobacterium nucleatum and Porphyromonas gingivalis biofilms. In addition, aPDT was tested with metronidazole (MTZ) to explore the potential antimicrobial effect of the treatment. The minimum inhibitory concentration (MIC) of MTZ was defined for each bacterial species. Single-species biofilms of each species were grown on polystyrene plates under anaerobic conditions for five days. aPDT was performed by applying PDZ at concentrations of 50, 75 and 100 mg/L, followed by exposure to 50 J/cm(2) LED light (660 nm) with or without MTZ. aPDT exhibited a significant reduction in bacterial viability at a PDZ concentration of 100 mg/L, with 1.12 log(10) and 2.66 log(10) reductions for F. nucleatum and P. gingivalis in biofilms, respectively. However, the antimicrobial effect against F. nucleatum was achieved only when aPDT was combined with MTZ at 100 x MIC. Regarding P. gingivalis, the combination of PDZ-mediated aPDT at 100 mg/L with MTZ 100 x MIC resulted in a 5 log(10) reduction in the bacterial population. The potential antimicrobial effects of aPDT in combination with MTZ for both single pathogenic biofilms were confirmed by live/dead staining. These results suggest that localized antibiotic administration may be an adjuvant to aPDT to control F. nucleatum and P. gingivalis biofilms.
机译:抗微生物光动力学治疗(APDT)杀死几种浮鳞病原体。然而,生物膜衍生的厌氧细菌对APDT的敏感性表征不佳。在这里,我们评估了光标(PDZ)介导的APDT对Fusobacterium核和卟啉核糖菌的作用。此外,用甲硝唑(MTZ)测试APDT以探讨治疗的潜在抗微生物效果。为每种细菌物种定义MTZ的最小抑制浓度(MIC)。在厌氧条件下在聚苯乙烯板上生长每种物种的单一物种生物膜5天。通过在50,75和100mg / L的浓度下施加PDZ来进行APDT,然后用或没有MTZ暴露于50J / cm(2)led光(660nm)。 APDT在PDZ浓度为100mg / L的PDZ浓度下表现出显着降低,分别为1.12对数核(10)和2.66 log(10)分别在生物膜中的核核和P.Gingivivis降低。然而,仅当APDT在100×MIC时将APDT与MTZ结合时,才能实现对F.核心肌的抗微生物效应。关于P. Gingivalis,PDZ介导APDT在100mg / L的中,MTZ 100 x MIC的组合导致细菌群的5个log(10)降低。通过活/死染色证实APDT与MTZ联合MTZ的潜在抗微生物效应。这些结果表明,局部化抗生素给药可以是对控制F.核和P.Gingivalis Biofilms的APDT的佐剂。

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