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Polyphenols from Salix tetrasperma Impair Virulence and Inhibit Quorum Sensing of Pseudomonas aeruginosa

机译:来自Salix Tetrasperma的多酚损害毒力和抑制假单胞菌铜绿假单胞菌的抑制群体感应

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摘要

Bacterial resistance represents one of the emerging obstacles in plants, animals, and humans that impairs treatment with antibacterial agents. Targeting of the bacterial quorum sensing system is one of the strategies to overcome this problem. Recently, research has been focused on natural and food components which can function as quorum sensing inhibitors. In this study, a methanol extract from Salix tetrasperma stem bark was phytochemically profiled by LC-MS analysis. This resulted in the identification of 38 secondary metabolites with (epi)catechin-(epi)catechin, epicatechin, tremulacin, salicortin, and trichocarposide as the major constituents. The extracts of both stem bark and the previously profiled flower of S. tetrasperma were tested for anti-quorum sensing activity in a common and widely distributed pathogen Pseudomonas aeruginosa. The natural products inhibited swimming and swarming motilities, as well as proteolytic and hemolytic activities in a dose-dependent manner. Molecular docking of the constituents from both extracts against the quorum sensing controlling systems Lasl/LasR, rhll/rhlR, and PQS/MvfR showed that epicatechin, (epi)catechin-(epi)catechin, p-hydroxy benzoyl galloyl glucose, p-hydroxy benzoyl protocatechuic acid glucose, and caffeoylmalic acid could be the main active components. This study supports the importance of secondary metabolites, especially polyphenols, as quorum sensing inhibitors.
机译:细菌抗性代表植物,动物和人类的新出现的障碍物之一,其用抗菌剂损害治疗。靶向细菌法定传感系统是克服这个问题的策略之一。最近,研究专注于天然和食物组分,其可以用作批量传感抑制剂。在该研究中,通过LC-MS分析,来自Salix Tetrasperma Step Bark的甲醇提取物植物植物分析。这导致鉴定具有(EPI)儿茶素(EPI)儿茶素,EPICATECHIN,TREMULACIN,SALICORIN和TRICHOCARPOSIDE作为主要成分的38次次生代谢物。在常见的和广泛分布的病原体假单胞菌铜绿假单胞菌中测试茎吠胚和S.Tetrasperma的先前成型的S.Tetrasperma的提取物。天然产品抑制游泳和蜂拥而至的动力,以及剂量依赖性的蛋白水解和溶血活性。分子对组分从两种提取物中取决于仲裁传感控制系统Lasl / Lasr,Rhll / Rhlr和PQs / MVFR显示,EPICATECHIN,(EPI)儿茶素 - (EPI)儿茶素,对羟基苯甲酰基甘胶葡萄糖,P-羟基苯甲酰基Protocatechuic酸葡萄糖,咖啡酰胺酸可以是主要的活性组分。本研究支持次级代谢物,尤其是多酚作为仲裁感测抑制剂的重要性。

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