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USMB-induced synergistic enhancement of aminoglycoside antibiotics in biofilms

机译:USMB诱导生物膜中氨基糖苷类抗生素的协同增强

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This study evaluated the effect of combining antibiotics with ultrasound and microbubbles (USMB) toward the eradication of biofilms. Pseudomonas aeruginosa PAO1 biofilms were treated with the antibiotics gentamicin sulfate or streptomycin sulfate, or a combination of USMB with the respective antibiotics. Biofilm structure was quantified using confocal laser scanning microscopy with COMSTAT analysis, while activity was measured as whole-biofilm CO2 production in a continuous-flow biofilm model. The combined antibiotic-USMB treatment significantly impacted biofilm biomass, thickness and surface roughness compared to antibiotics alone (p < 0.05). USMB exposure caused the formation of craters (5-20 mu m in diameter) in the biofilms, and when combined with gentamicin, activity was significantly lower, compared to gentamicin, USMB or untreated controls, respectively. Interestingly, the CO2 production rate following combined streptomycin-USMB treatment was higher than after streptomycin alone, but significantly lower than USMB alone and untreated control. These results show strong evidence of a synergistic effect between antibiotics and USMB, although the varied response to different antibiotics emphasize the need to optimize the USMB exposure conditions to maximize this synergism and ultimately transfer this technology into clinical or industrial practice. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究评估了将抗生素与超声和微泡(USMB)联合使用对根除生物膜的影响。铜绿假单胞菌PAO1生物膜用抗生素硫酸庆大霉素或硫酸链霉素或USMB与相应抗生素的组合处理。使用共焦激光扫描显微镜和COMSTAT分析对生物膜的结构进行定量,同时在连续流生物膜模型中以全生物膜CO2的产生来测量活性。与单独使用抗生素相比,抗生素-USMB联合处理对生物膜生物量,厚度和表面粗糙度有显着影响(p <0.05)。暴露于USMB会在生物膜中形成火山口(直径5-20微米),与庆大霉素,USMB或未经处理的对照相比,与庆大霉素合用时,活性明显降低。有趣的是,链霉素-USMB联合处理后的CO2产生率高于单独的链霉素后,但明显低于单独的USMB和未处理的对照。这些结果显示出强有力的证据证明了抗生素与USMB之间的协同效应,尽管对不同抗生素的反应各不相同,这表明有必要优化USMB暴露条件以最大程度地发挥这种协同作用,并最终将该技术应用于临床或工业实践。 (C)2016 Elsevier B.V.保留所有权利。

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