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Novel derivatives of plant monomeric phenolics: act as inhibitors of bacterial cell-to-cell communication

机译:植物单体酚类新衍生物:充当细菌细胞对细胞通信的抑制剂

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The aim of the present study was to synthesize novel active Anti-Quorum sensing derivatives from secondary metabolites viz. Gallic acid, Protocatechuic acid and Vanillic acid present in the plant Bergenia ciliata. Efficacy of all synthesized derivatives have been evaluated on the formation of bacterial biofilm and inhibition of cell-to-cell communication. Anti-Quorum Sensing activity and biofilm formation of all synthesized compounds was measured on biomonitor strain Chrobacterium violaceum, ATCC 12472 using standard paper disk-diffusion assay and quantification of violacein pigment. Among all derivatives, five derivatives 3,4,5-Trihydroxybenzoic acid methyl ester (9a), 3,4-Dihydroxy-benzoic acid methyl ester (10a), 3,4,5-Tris-(2,4-dichloro-benzyloxy)-benzoic acid methyl ester (12), 3,4,5-Tris-(2,5-dichloro-benzyloxy)-benzoic acid methyl ester (13) and 4-(2,4-Dichloro-benzyloxy)-3-methoxy-benzoic acid methyl ester (15) has shown Anti-Quorum Sensing activity by inhibiting violacein pigment production and biofilm formation without interfering with its growth. The inhibitory effects in violacein pigment production were: positive control (C-30) 72%, (9a), (10a) 47.2%, (12) 27.3%, (13) 40.1% and (15) 22.7% at the concentration of 1 mg/mL and biofilm percent inhibition were found (C-30) 64% (9a) 46.2%, (10a) 40.3%, (12) 18.4%, (13) 35.2%, and (15) 17.3% when compared with the untreated control. Results reveal that synthesized derivatives seem to be good compounds for inhibition and formation of biofilm and AHL-mediated Quorum-sensing mechanism. The present article highlights the importance of derivatives derived from secondary metabolites as potent drug for biofilm formation and inhibition of cell-to-cell communication.
机译:本研究的目的是将新的活性抗法力感测衍生物合成来自次级代谢物viz。在植物Bergenia ciliata中存在着Gallic acid,protocatechuic acid和香草酸。所有合成衍生物的疗效都已对细菌生物膜的形成和对细胞对细胞连通的抑制进行了评估。用标准纸盘扩散测定法测量抗法力传感活性和所有合成化合物的生物膜形成所有合成化合物的菌株,ATCC 12472。在所有衍生物中,五种衍生物3,4,5-三羟基苯甲酸甲酯(9a),3,4-二羟基 - 苯甲酸甲酯(10a),3,4,5-三甲基 - (2,4-二氯 - 苄氧基) - 苯甲酸甲酯(12),3,4,5-三甲基(2,5-二氯苄氧基) - 苯甲酸甲酯(13)和4-(2,4-二氯 - 苄氧基)-3-甲氧基 - 苯甲酸甲酯(15)通过抑制紫杉蛋白颜料生产和生物膜形成而显示抗法量感测,而不会干扰其生长。紫杉蛋白颜料生产中的抑制作用是:阳性对照(C-30)72%,(9a),(10a)47.2%,(12)27.3%,(13)40.1%和(15)浓度为22.7%发现1mg / ml和生物膜抑制(C-30)64%(9a)46.2%,(10a)40.3%,(12)18.4%,(13)35.2%,与(15)相比未经处理的控制。结果表明,合成衍生物似乎是抑制和形成生物膜的良好化合物和介导的批量传感机制。本文突出了衍生物衍生自二次代谢物的重要性,作为生物膜形成的有效药物和细胞对细胞通信的抑制。

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