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Combining Biofilm-Controlling Compounds and Antibiotics as a Promising New Way to Control Biofilm Infections

机译:结合生物膜控制化合物和抗生素作为控制生物膜感染的有希望的新方法

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Many bacteria grow on surfaces forming biofilms. In this structure, they are well protected and often high dosages of antibiotics cannot clear infectious biofilms. The formation and stabilization of biofilms are mediated by diffusible autoinducers (e.g. N-acyl homoserine lactones, small peptides, furanosyl borate diester). Metabolites interfering with this process have been identified in plants, animals and microbes, and synthetic analogues are known. Additionally, this seems to be not the only way to control biofilms. Enzymes capable of cleaving essential components of the biofilm matrix, e.g. polysaccharides or extracellular DNA, and thus weakening the biofilm architecture have been identified. Bacteria also have mechanisms to dissolve their biofilms and return to planktonic lifestyle. Only a few compounds responsible for the signalling of these processes are known, but they may open a completely novel line of biofilm control. All these approaches lead to the destruction of the biofilm but not the killing of the pathogens. Therefore, a combination of biofilm-destroying compounds and antibiotics to handle biofilm infections is proposed. In this article, different approaches to combine biofilm-controlling compounds and antibiotics to fight biofilm infections are discussed, as well as the balance between biofilm formation and virulence.
机译:许多细菌在形成生物膜的表面上生长。在这种结构中,它们得到了很好的保护,通常高剂量的抗生素无法清除感染性生物膜。生物膜的形成和稳定是由可扩散的自诱导剂(例如N-酰基高丝氨酸内酯,小肽,呋喃糖基硼酸酯二酯)介导的。已经在植物,动物和微生物中鉴定了干扰该过程的代谢物,并且合成类似物是已知的。另外,这似乎不是控制生物膜的唯一方法。能够裂解生物膜基质基本成分的酶,例如已经鉴定出多糖或细胞外DNA,从而削弱了生物膜的结构。细菌还具有溶解其生物膜并恢复浮游生活方式的机制。已知只有少数化合物负责这些过程的信号传导,但它们可能会开启一条全新的生物膜控制路线。所有这些方法都导致了生物膜的破坏,但没有杀死病原体。因此,提出了破坏生物膜的化合物和抗生素的组合以处理生物膜感染。在本文中,讨论了结合生物膜控制化合物和抗生素来对抗生物膜感染的不同方法,以及生物膜形成和毒力之间的平衡。

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