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Optimization of a resazurin-based microplate assay for large-scale compound screenings against Klebsiella pneumoniae

机译:基于刃天青素的微孔板检测试剂盒的优化用于大规模筛选肺炎克雷伯菌

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摘要

A new resazurin-based assay was evaluated and optimized using a microplate (384-well) format for high-throughput screening of antibacterial molecules against Klebsiella pneumoniae. Growth of the bacteria in 384-well plates was more effectively measured and had a > sixfold higher signal-to-background ratio using the resazurin-based assay compared with absorbance measurements at 600 nm. Determination of minimum inhibitory concentrations of the antibiotics revealed that the optimized assay quantitatively measured antibacterial activity of various antibiotics. An edge effect observed in the initial assay was significantly reduced using a 1-h incubation of the bacteria-containing plates at room temperature. There was an approximately 10% decrease in signal variability between the edge and the middle wells along with improvement in the assay robustness (Z′ = 0.99). This optimized resazurin-based assay is an efficient, inexpensive, and robust assay that can quantitatively measure antibacterial activity using a high-throughput screening system to assess a large number of compounds for discovery of new antibiotics against K. pneumoniae.
机译:使用微孔板(384孔)形式评估和优化了一种基于刃天青的新测定方法,用于高通量筛选针对肺炎克雷伯菌的抗菌分子。与基于600nm的吸光度测量相比,使用基于刃天青的测定法可以更有效地测量384孔板中细菌的生长,并且其信噪比高出六倍。测定抗生素的最小抑菌浓度表明,优化的测定法定量测量了各种抗生素的抗菌活性。使用含细菌的平板在室温下孵育1小时,可以显着降低初始测定中观察到的边缘效应。边缘孔和中间孔之间的信号变异性降低了约10%,同时测定的鲁棒性得到了改善(Z'= 0.99)。这种优化的基于刃天青的测定方法是一种高效,廉价且强大的测定方法,可以使用高通量筛选系统定量评估抗菌活性,以评估大量化合物以发现针对肺炎克雷伯菌的新抗生素。

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