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The involvement of rhamnolipids in microbial cell adhesion and biofilm development - an approach for control?

机译:鼠李糖脂参与微生物细胞粘附和生物膜形成-一种控制方法吗?

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摘要

Biofilms are omnipresent in clinical and industrial settings and most of the times cause detrimental side effects. Finding efficient strategies to control surface-growing communities of micro-organisms remains a significant challenge. Rhamnolipids are extracellular secondary metabolites with surface-active properties mainly produced by Pseudomonas aeruginosa. There is growing evidence for the implication of this biosurfactant in different stages of biofilm development of this bacterium. Furthermore, rhamnolipids display a significant potential as anti-adhesive and disrupting agents against established biofilms formed by several bacterial and fungal species. Their low toxicity, biodegradability, efficiency and specificity, compared to synthetic surfactants typically used in biofilm control, might compensate for the economic hurdle still linked to their superior production costs and make them promising antifouling agents.
机译:生物膜在临床和工业环境中无处不在,大多数时候会造成有害的副作用。寻找有效的策略来控制表面生长的微生物群落仍然是一项重大挑战。鼠李糖脂是具有表面活性的细胞外次级代谢产物,主要由铜绿假单胞菌(Pseudomonas aeruginosa)产生。越来越多的证据表明这种生物表面活性剂在该细菌生物膜发育的不同阶段具有影响。此外,鼠李糖脂具有作为对抗由几种细菌和真菌形成的生物膜的抗粘连剂和破坏剂的显着潜力。与通常用于生物膜控制的合成表面活性剂相比,它们的低毒性,可生物降解性,效率和特异性,可能弥补了仍与它们较高的生产成本相关的经济障碍,并​​使其成为有前途的防污剂。

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