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首页> 外文期刊>The Journal of Antibiotics: An International Journal >Combining biofilm matrix measurements with biomass and viability assays in susceptibility assessments of antimicrobials against Staphylococcus aureus biofilms
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Combining biofilm matrix measurements with biomass and viability assays in susceptibility assessments of antimicrobials against Staphylococcus aureus biofilms

机译:将生物膜基质测量值与生物量和生存力分析相结合,评估抗金黄色葡萄球菌生物膜的抗菌剂的敏感性

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Despite that three types of assays (measuring biofilm viability, biomass, or matrix) are described to assess anti-biofilm activity, they are rarely used together. As infections can easily reappear if the matrix is not affected after antibiotic treatments, our goal was to explore the simultaneous effects of antibiotics on the viability, biomass and matrix of Staphylococcus aureus biofilms (ATCC 25923). Viability and biomass were quantified using resazurin and crystal violet staining sequentially in the same plate, while matrix staining was conducted with a wheat germ agglutinin-Alexa Fluor 488 fluorescent conjugate. Establishment of the detection limits and linearity ranges allowed concluding that all three methods were able to estimate biofilm formation in a similar fashion. In a susceptibility study with 18-h biofilms, two model compounds (penicillin G and ciprofloxacin) caused a reduction on the viability and biomass accompanied by an increase or not changed levels of the matrix, respectively. This response pattern was also proven for S. aureus Newman, S. epidermidis and E. coli biofilms. A classification of antibiotics based on five categories according to their effects on viability and matrix has been proposed earlier. Our data suggests a sixth group, represented by penicillin, causing decrease in bacterial viability but showing stimulatory effects on the matrix. Further, if effects on the matrix are not taken into account, the long-term chemotherapeutic effect of antibiotics can be jeopardized in spite of the positive effects on biofilms viability and biomass. Thus, measuring all these three endpoints simultaneously provide a more complete and accurate picture.
机译:尽管描述了评估抗生物膜活性的三种类型的测定法(测量生物膜生存力,生物量或基质),但很少将它们一起使用。由于如果在抗生素治疗后不影响基质,感染很容易重新出现,因此我们的目标是探索抗生素对金黄色葡萄球菌生物膜(ATCC 25923)的活力,生物量和基质的同时影响。在同一平板上依次使用刃天青和结晶紫染色定量活力和生物量,同时用小麦胚芽凝集素-Alexa Fluor 488荧光偶联物进行基质染色。确定检测限和线性范围可以得出结论,所有这三种方法均能够以类似方式估算生物膜的形成。在对18小时生物膜的敏感性研究中,两种模型化合物(青霉素G和环丙沙星)分别导致活力和生物量降低,同时基质水平增加或不变。对于金黄色葡萄球菌纽曼,表皮葡萄球菌和大肠杆菌生物膜也证明了这种反应模式。较早前已经提出了根据对生存力和基质的影响将抗生素分为五类的分类方法。我们的数据表明,以青霉素为代表的第六组引起细菌生存力下降,但对基质表现出刺激作用。此外,如果不考虑对基质的影响,尽管对生物膜的生存能力和生物量具有积极作用,但仍可能损害抗生素的长期化学治疗作用。因此,同时测量所有这三个端点可提供更完整和准确的图像。

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