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Inhibition and Dispersal of Pseudomonas aeruginosa Biofilms by Combination Treatment with Escapin Intermediate Products and Hydrogen Peroxide

机译:Escapin中间产物和过氧化氢联合处理对铜绿假单胞菌生物膜的抑制和分散

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摘要

Escapin is an L-amino acid oxidase that acts on lysine to produce hydrogen peroxide (H2O2), ammonia, and equilibrium mixtures of several organic acids collectively called escapin intermediate products (EIP). Previous work showed that the combination of synthetic EIP and H2O2 functions synergistically as an antimicrobial toward diverse planktonic bacteria. We initiated the present study to investigate how the combination of EIP and H2O2 affected bacterial biofilms, using Pseudomonas aeruginosa as a model. Specifically, we examined concentrations of EIP and H2O2 that inhibited biofilm formation or fostered disruption of established biofilms. High-throughput assays of biofilm formation using microtiter plates and crystal violet staining showed a significant effect from pairing EIP and H2O2, resulting in inhibition of biofilm formation relative to biofilm formation in untreated controls or with EIP or H2O2 alone. Similarly, flow cell analysis and confocal laser scanning microscopy revealed that the EIP and H2O2 combination reduced the biomass of established biofilms relative to that of the controls. Area layer analysis of biofilms posttreatment indicated that disruption of biomass occurs down to the substratum. Only nanomolar to micromolar concentrations of EIP and H2O2 were required to impact biofilm formation or disruption, and these concentrations are significantly lower than those causing bactericidal effects on planktonic bacteria. Micromolar concentrations of EIP and H2O2 combined enhanced P. aeruginosa swimming motility compared to the effect of either EIP or H2O2 alone. Collectively, our results suggest that the combination of EIP and H2O2 may affect biofilms by interfering with bacterial attachment and destabilizing the biofilm matrix.
机译:Escapin是一种L-氨基酸氧化酶,作用于赖氨酸以产生过氧化氢(H2O2),氨和几种有机酸的平衡混合物,统称为escapin中间产物(EIP)。先前的工作表明,合成的EIP和H2O2的组合具有协同作用,对多种浮游细菌具有抗菌作用。我们启动了本研究,以铜绿假单胞菌为模型,研究EIP和H2O2的组合如何影响细菌生物膜。具体来说,我们检查了抑制生物膜形成或促进已建立生物膜破坏的EIP和H2O2浓度。使用微量滴定板和结晶紫染色进行生物膜形成的高通量分析显示,配对EIP和H2O2具有显着效果,相对于未经处理的对照或单独使用EIP或H2O2,生物膜形成受到抑制。同样,流式细胞分析和共聚焦激光扫描显微镜显示,EIP和H2O2的组合相对于对照减少了已建立生物膜的生物量。生物膜后处理的区域层分析表明,生物质的破坏发生到基底。仅需要从纳摩尔到微摩尔浓度的EIP和H2O2影响生物膜的形成或破坏,并且这些浓度显着低于对浮游细菌产生杀菌作用的浓度。与单独使用EIP或H2O2的效果相比,微摩尔浓度的EIP和H2O2可以增强铜绿假单胞菌的游泳运动能力。总体而言,我们的研究结果表明,EIP和H2O2的组合可能会通过干扰细菌附着并破坏生物膜基质的稳定性来影响生物膜。

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