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Influence of Bacterial Biofilm Polysaccharide Structure on Interactions with Antimicrobial Peptides: A Study on Klebsiella pneumoniae

机译:细菌生物膜多糖结构对与抗菌肽相互作用的影响:肺炎克雷伯菌的研究

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摘要

Biofilms are complex systems produced by bacteria and constituted by macromolecular matrix embedding cells. They provide advantages to bacteria including protection against antimicrobials. The protection given by biofilms produced by Klebsiella pneumoniae strains towards antimicrobial peptides of the innate immune system was investigated. In particular, the role of matrix bacterial exopolysaccharides was explored. Three clinical strains producing exopolysaccharides with different chemistry were selected and the interaction of purified biofilm polysaccharides with two bovine cathelicidins was studied by circular dichroism spectroscopy and microbiological assays to establish their influence on the peptide’s antimicrobial activity. The spectroscopic data indicated a different extent of interaction with the two peptides, in a manner dependent on their sugar composition, and in particular the presence of rhamnose residues correlated with a lower interaction. The extent of interaction was then related to the protection towards antimicrobial peptides, conferred by the addition of the different exopolysaccharides, in minimum inhibitory concentration (MIC) assays against a reference Escherichia coli strain. Microbiological results were in very good agreement with spectroscopic data, confirming the active role of matrix polysaccharides in determining a biofilm’s protective capacity and indicating lower protection levels afforded by rhamnose containing exopolysaccharides.
机译:生物膜是由细菌产生的复杂系统,由大分子基质包埋细胞组成。它们为细菌提供了优势,包括针对抗菌素的保护。研究了由肺炎克雷伯菌产生的生物膜对先天免疫系统的抗菌肽的保护作用。特别是,探索了基质细菌胞外多糖的作用。选择了三种产生不同化学形式的胞外多糖的临床菌株,并通过圆二色光谱和微生物学方法研究了纯化的生物膜多糖与两种牛毛乳链菌素的相互作用,以确定它们对肽的抗菌活性的影响。光谱数据表明与两种肽相互作用的程度不同,这取决于它们的糖组成,特别是鼠李糖残基的存在与较低的相互作用有关。然后,在针对参考大肠杆菌菌株的最小抑制浓度(MIC)分析中,相互作用的程度与对抗菌肽的保护有关,该保护作用是通过添加不同的胞外多糖来实现的。微生物学结果与光谱数据非常吻合,证实了基质多糖在确定生物膜的保护能力方面的积极作用,并表明鼠李糖含胞外多糖的保护水平较低。

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