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首页> 外文期刊>Molecules >Flavones as Quorum Sensing Inhibitors Identified by a Newly Optimized Screening Platform Using Chromobacterium violaceum as Reporter Bacteria
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Flavones as Quorum Sensing Inhibitors Identified by a Newly Optimized Screening Platform Using Chromobacterium violaceum as Reporter Bacteria

机译:黄酮作为仲裁感抑制剂由新优化的筛选平台鉴定,该筛选平台使用紫罗兰色杆菌作为报告细菌。

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摘要

Quorum sensing (QS) is the process by which bacteria produce and detect signal molecules to coordinate their collective behavior. This intercellular communication is a relevant target for anti-biofilm therapies. Here we have optimized a screening-applicable assay to search for new quorum sensing inhibitors from natural compound libraries. In this system, QS is correlated with the production of violacein, which is directly controlled by the LuxI/LuxR system in Chromobacterium violaceum ATCC 31532. The parallel use of C. violaceum Tn5-mutant CV026, which depends on auto-inducer addition, allows simultaneous discrimination of compounds that act as quenchers of the AHL signal (quorum quenchers). The incorporation of a redox stain into the platform allowed further distinction between QS inhibitors, quorum quenchers and antibacterial compounds. A pilot screening was performed with 465 natural and synthetic flavonoids. All the most active compounds were flavones and they displayed potencies (IC50) in the range of 3.69 to 23.35 μM. These leads were particularly promising as they inhibited the transition from microcolonies into mature biofilms from Escherichia coli and Pseudomonas aeruginosa strains. This approach can be very effective in identifying new antimicrobials posing lesser risks of resistance. View Full-Text
机译:群体感应(QS)是细菌产生和检测信号分子以协调其集体行为的过程。这种细胞间通讯是抗生物膜疗法的相关目标。在这里,我们优化了筛选适用的检测方法,以从天然化合物库中搜索新的群体感应抑制剂。在该系统中,QS与紫胶素的产生相关,紫胶素的生产直接由紫胶杆菌ATCC 31532中的LuxI / LuxR系统控制。紫胶杆菌Tn5突变体CV026的并行使用允许自动添加诱导剂同时识别充当AHL信号猝灭剂的化合物(群体猝灭剂)。将氧化还原染料掺入平台后,可以进一步区分QS抑制剂,群体猝灭剂和抗菌化合物。用465种天然和合成类黄酮进行了初步筛选。所有活性最高的化合物均为黄酮,其效价(IC50)在3.69至23.35μM之间。这些引线特别有希望,因为它们抑制了大肠杆菌和铜绿假单胞菌菌株从微菌落到成熟生物膜的转化。这种方法在鉴定具有较小耐药风险的新抗生素方面可能非常有效。查看全文

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