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Interference Disturbance Analysis Enables Single-Cell Level Growth and Mobility Characterization for Rapid Antimicrobial Susceptibility Testing

机译:干扰干扰分析使单细胞级生长和移动性表征能够快速抗菌易感性测试

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To support the emerging battle against antimicrobial resistance (AMR), detection methods that allow fast and accurate antimicrobial susceptibility testing (AST) are urgently needed. The early identification and application of an appropriate antibiotic treatment leads to lower mortality rates and substantial cost savings and prevents the development of resistant pathogens. In this work, we present a diffraction-based method, which is capable of quantitative bacterial growth, mobility, and susceptibility measurements. The method is based on the temporal analysis of the intensity of a light diffraction peak, which arises due to interference at a periodic pattern of gold nanostructures. The presence of bacteria disturbs the constructive interference, leading to an intensity decrease and thus allows the monitoring of bacterial growth in very low volumes. We demonstrate the direct correlation of the decrease in diffraction peak intensity with bacterial cell number starting from single cells and show the capability for rapid high-throughput AST measurements by determining the minimum inhibitory concentration for three different antimicrobials in less than 2-3 h as well as the susceptibility in less than 30-40 min. Furthermore, bacterial mobility is obtained from short-term fluctuations of the diffraction peak intensity and is shown to decrease by a factor of 3 during bacterial attachment to a surface. This multiparameter detection method allows for rapid AST of planktonic and of biofilm-forming bacterial strains in low volumes and in real-time without the need of high initial cell numbers.
机译:为了支持对抗抗微生物抗性(AMR)的新兴战斗,迫切需要允许快速准确的抗微生物易感性测试的检测方法(AST)。适当的抗生素治疗的早期鉴定和应用导致降低死亡率和大量节省,并防止抗性病原体的发展。在这项工作中,我们提出了一种基于衍射的方法,其能够进行定量细菌生长,迁移率和易感性测量。该方法基于光衍射峰的强度的时间分析,其由于在金纳米结构的周期性图案中的干涉而产生。细菌的存在扰乱了建设性干扰,导致强度降低,从而允许在非常低的体积中监测细菌生长。我们证明了衍射峰强度的降低与从单细胞开始的细菌细胞数的直接相关性,并通过在小于2-3小时内测定三种不同抗微生物的最小抑制浓度来显示快速高通量AST测量的能力作为易感性在不到30-40分钟内。此外,从衍射峰强度的短期波动获得细菌迁移率,并且显示在细菌附着到表面的细菌附着期间将3倍。该多脉冲检测方法允许在低体积中的浮游和生物膜形成细菌菌株的快速AST,实时,而不需要高初始细胞数。

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