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A novel synthetic flavonoid with potent antibacterial properties: In vitro activity and proposed mode of action

机译:具有有效抗菌特性的新型合成类黄酮:体外活性和拟议的作用方式

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摘要

The emergence of pathogenic multidrug-resistant bacteria demands new approaches in finding effective antibacterial agents. Synthetic flavonoids could be a reliable solution due to their important antimicrobial activity. We report here the potent in vitro antibacterial activity of >ClCl-flav—a novel synthetic tricyclic flavonoid. The antimicrobial effects were tested using the minimum inhibitory concentration (MIC), time kill and biofilm formation assays. Fluorescence microscopy and scanning electron microscopy were employed to study the mechanism of action. MTT test was used to assess the cytotoxicity of >ClCl-flav. Our results showed that Gram positive bacteria were more sensitive (MIC = 0.24 μg/mL) to >ClCl-flav compared to the Gram negative ones (MIC = 3.9 μg/mL). We found that our compound showed significantly enhanced antibacterial activities, 32 to 72-fold more active than other synthetic flavonoids. >ClCl-flav showed bactericidal activity at concentrations ranging from 0.48 to 15.62 μg/mL. At twice the MIC, all Escherichia coli and Klebsiella pneumoniae cells were killed within 1 h. Also >ClCl-flav presented good anti-biofilm activity. The mechanism of action is related to the impairment of the cell membrane integrity. No or very low cytotoxicity was evidenced at effective concentrations against Vero cells. Based on the strong antibacterial activity and cytotoxicity assessment, >ClCl-flav has a good potential for the design of new antimicrobial agents.
机译:致病性多药耐药细菌的出现需要寻找有效抗菌剂的新方法。合成类黄酮由于其重要的抗菌活性,可能是一种可靠的解决方案。我们在这里报告> ClCl-flav (一种新型的合成三环类黄酮)的强效体外抗菌活性。使用最小抑菌浓度(MIC),时间杀灭和生物膜形成测定法测试了抗菌作用。使用荧光显微镜和扫描电子显微镜研究作用机理。用MTT法评估> ClCl-flav 的细胞毒性。我们的结果表明,革兰氏阳性细菌对> ClCl-flav 的敏感性高于革兰氏阴性细菌(MIC = 3.9μg/ mL)。我们发现我们的化合物显示出显着增强的抗菌活性,其活性比其他合成类黄酮高32至72倍。 > ClCl-flav 在0.48至15.62μg/ mL的浓度下均具有杀菌活性。在两倍的MIC下,所有大肠杆菌和肺炎克雷伯菌都在1小时内被杀死。另外,> ClCl-黄酮具有良好的抗生物膜活性。作用机理与细胞膜完整性的损害有关。在有效浓度下对Vero细胞没有或只有极低的细胞毒性。基于强大的抗菌活性和细胞毒性评估,> ClCl-flav 在设计新型抗菌剂方面具有良好的潜力。

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