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Small Polar Hits against S. aureus: Screening, Initial Hit Optimization, and Metabolomic Studies

机译:针对金黄色葡萄球菌的极小极性命中:筛选,初始命中优化和代谢组学研究

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The global prevalence of antibacterial resistance requires new antibacterial drugs with novel chemical scaffolds and modes of action. It is also vital to design compounds with optimal physicochemical properties to permeate the bacterial cell envelope. We described an approach of combining and integrating whole cell screening and metabolomics into early antibacterial drug discovery using a library of small polar compounds. Whole cell screening of a diverse library of small polar compounds against Staphylococcus aureus gave compound 2. Hit expansion was carried out to determine structure–activity relationships. A selection of compounds from this series, together with other screened active compounds, was subjected to an initial metabolomics study to provide a metabolic fingerprint of the mode of action. It was found that compound 2 and its analogues have a different mode of action from some of the known antibacterial compounds tested. This early study highlighted the potential of whole cell screening and metabolomics in early antibacterial drug discovery. Future works will require improving potency and performing orthogonal studies to confirm the modes of action.
机译:抗菌素耐药性的全球流行需要具有新颖化学支架和作用方式的新型抗菌药。设计具有最佳理化特性的化合物以渗透细菌细胞膜也是至关重要的。我们描述了一种使用小极性化合物库将全细胞筛选和代谢组学结合并整合到早期抗菌药物发现中的方法。对金黄色葡萄球菌的小极性化合物的各种文库的全细胞筛选得到了化合物2。进行了命中扩增以确定结构与活性之间的关系。从该系列中选择的化合物,与其他筛选出的活性化合物一起,进行了初始代谢组学研究,以提供作用方式的代谢指纹。发现化合物2及其类似物与某些已知的测试抗菌化合物具有不同的作用方式。这项早期研究强调了全细胞筛选和代谢组学在早期抗菌药物发现中的潜力。未来的工作将需要提高效力并进行正交研究以确认作用方式。

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