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Optimization of a High-Throughput 384-Well Plate-Based Screening Platform with Staphylococcus aureus ATCC 25923 and Pseudomonas aeruginosa ATCC 15442 Biofilms

机译:金黄色葡萄球菌ATCC 25923和铜绿假单胞菌ATCC 15442生物膜的高通量384孔板筛选平台的优化

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摘要

In recent years, bacterial infections have become a main concern following the spread of antimicrobial resistance. In addition, bacterial biofilms are known for their high tolerance to antimicrobials and they are regarded as a main cause of recalcitrant infections in humans. Many efforts have been deployed in order to find new antibacterial therapeutic options and the high-throughput screening (HTS) of large libraries of compounds is one of the utilized strategies. However, HTS efforts for anti-biofilm discovery remain uncommon. Here, we miniaturized a 96-well plate (96WP) screening platform, into a 384-well plate (384WP) format, based on a sequential viability and biomass measurements for the assessment of anti-biofilm activity. During the assay optimization process, different parameters were evaluated while using and as the bacterial models. We compared the performance of the optimized 384WP platform to our previously established 96WP-based platform by carrying out a pilot screening of 100 compounds, followed by the screening of a library of 2000 compounds to identify new repurposed anti-biofilm agents. Our results show that the optimized 384WP platform is well-suited for screening purposes, allowing for the rapid screening of a higher number of compounds in a run in a reliable manner.
机译:近年来,随着抗菌素耐药性的传播,细菌感染已成为主要关注的问题。另外,细菌生物膜以其对抗菌剂的高耐受性而闻名,它们被认为是人类顽固感染的主要原因。为了找到新的抗菌治疗选择,已经进行了许多努力,并且大型化合物库的高通量筛选(HTS)是所采用的策略之一。但是,HTS进行抗生物膜发现的努力仍很少见。在这里,我们基于顺序生存力和生物量测量以评估抗生物膜活性,将96孔板(96WP)筛选平台小型化为384孔板(384WP)格式。在分析优化过程中,使用和作为细菌模型评估了不同的参数。通过对100种化合物进行先导筛选,然后筛选2000种化合物的文库以鉴定新的重新用途的抗生物膜药物,我们将优化的384WP平台的性能与我们先前建立的基于96WP的平台进行了比较。我们的结果表明,优化的384WP平台非常适合用于筛选目的,从而可以可靠的方式快速筛选出更多的化合物。

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