首页> 美国卫生研究院文献>Frontiers in Cellular and Infection Microbiology >Seed Extract of Psoralea corylifolia and Its Constituent Bakuchiol Impairs AHL-Based Quorum Sensing and Biofilm Formation in Food- and Human-Related Pathogens
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Seed Extract of Psoralea corylifolia and Its Constituent Bakuchiol Impairs AHL-Based Quorum Sensing and Biofilm Formation in Food- and Human-Related Pathogens

机译:补骨脂的种子提取物及其组成的补骨脂酚会损害基于AHL的群体和动物相关病原体的群体感应和生物膜形成。

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摘要

The emergence of multi-drug resistance in pathogenic bacteria in clinical settings as well as food-borne infections has become a serious health concern. The problem of drug resistance necessitates the need for alternative novel therapeutic strategies to combat this menace. One such approach is targeting the quorum-sensing (QS) controlled virulence and biofilm formation. In this study, we first screened different fractions of Psoralea corylifolia (seed) for their anti-QS property in the Chromobacterium violaceum 12472 strain. The methanol fraction was found to be the most active fraction and was selected for further bioassays. At sub-inhibitory concentrations, the P. corylifolia methanol fraction (PCMF) reduced QS-regulated virulence functions in C. violaceum CVO26 (violacein); Pseudomonas aeruginosa (elastase, protease, pyocyanin, chitinase, exopolysaccharides (EPS), and swarming motility), A. hydrophila (protease, EPS), and Serratia marcescens (prodigiosin). Biofilm formation in all the test pathogens was reduced significantly (p ≤ 0.005) in a concentration-dependent manner. The β-galactosidase assay showed that the PCMF at 1,000 μg/ml downregulated las-controlled transcription in PAO1. In vivo studies with C. elegans demonstrated increased survival of the nematodes after treatment with the PCMF. Bakuchiol, a phytoconstituent of the extract, demonstrated significant inhibition of QS-regulated violacein production in C. violaceum and impaired biofilm formation in the test pathogens. The molecular docking results suggested that bakuchiol efficiently binds to the active pockets of LasR and RhlR, and the complexes were stabilized by several hydrophobic interactions. Additionally, the molecular dynamics simulation of LasR, LasR–bakuchiol, RhlR, and RhlR–bakuchiol complexes for 50 ns revealed that the binding of bakuchiol to LasR and RhlR was fairly stable. The study highlights the anti-infective potential of the PCMF and bakuchiol instead of bactericidal or bacteriostatic action, as the extract targets QS-controlled virulence and the biofilm.
机译:在临床环境中,致病菌以及食源性感染中出现的多药耐药性已成为严重的健康问题。耐药性的问题使得需要替代的新颖治疗策略来对抗这种威胁。一种这样的方法是针对群体感应(QS)控制的毒力和生物膜形成。在这项研究中,我们首先筛选了紫菜叶(种子)的不同级分,以了解其在紫细菌12472菌株中的抗QS特性。发现甲醇馏分是活性最高的馏分,并被选择用于进一步的生物测定。在亚抑制浓度下,紫花苜蓿甲醇级分(PCMF)降低了紫胶衣CVO26(紫精)中QS调节的毒力功能。铜绿假单胞菌(弹性蛋白酶,蛋白酶,绿脓素,几丁质酶,胞外多糖(EPS)和成群运动),亲水性链球菌(蛋白酶,EPS)和粘质沙雷氏菌(prodigiosin)。所有受试病原体中生物膜的形成均以浓度依赖的方式显着减少(p≤0.005)。 β-半乳糖苷酶检测结果表明,1,000μg/ ml的PCMF下调了PAO1中las调控的转录。秀丽隐杆线虫的体内研究表明,用PCMF处理后,线虫的存活率提高了。提取物的植物成分Bakuchiol表现出显着抑制QS调节的紫色紫胶衣藻中紫精的产生,并削弱了测试病原体中生物膜的形成。分子对接结果表明,补骨脂酚可以有效地结合到LasR和RhlR的活性口袋上,并且该复合物通过几种疏水相互作用而稳定了。此外,LasR,LasR-bakuchiol,RhlR和RhlR-bakuchiol配合物的分子动力学模拟持续了50 ns,这表明巴库酚与LasR和RhlR的结合相当稳定。该研究强调了PCMF和补骨脂酚的抗感染潜力,而不是杀菌作用或抑菌作用,因为该提取物靶向QS控制的毒力和生物膜。

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