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Mechanisms of biofilm inhibition and degradation by antimicrobial peptides

机译:抗菌肽抑制和降解生物膜的机制

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pMany bacteria live as biofilms to cope with unfavourable surroundings. Biofilms start from (i) a planktonic stage, (ii) initial adhesion to surfaces and (iii) formation of sessile micro-colonies that secrete extracellular polymeric substance (EPS), leading to bacterial resistance to antibiotics. Antimicrobial peptides (AMPs) are extensively studied with regard to planktonic bacteria but much less so with regard to biofilm formation. In the present study, we investigated how the above three steps are affected by the properties of the AMPs using a series of peptides composed of six lysines and nine leucines, which differ in their sequences and hence their biophysical properties. Treatment with bactericidal peptides at non-inhibitory concentrations resulted in reduced biofilm growth, for some starting from 25 nM which is 0.2 and 0.4% of their minimum inhibitory concentration (MIC 6.3 and 12.5 μM, respectively), continuing in a dose-dependent manner. We suggest that reduced bacterial adhesion to surfaces and decreased biofilm growth are due to the peptide9s ability to coat either the biomaterial surface or the bacterium itself. Degradation of established biofilms by bactericidal and non-bactericidal peptides, within 1 h of incubation, occurs by either killing of embedded bacteria or detachment of live ones. In addition to shedding light on the mechanism of biofilm inhibition and degradation, these data may assist in the design of anti-biofilm AMPs./p
机译:>许多细菌以生物膜的形式生活,以应对不利的环境。生物膜从(i)浮游阶段开始,(ii)最初附着在表面上,以及(iii)形成分泌细胞外聚合物(EPS)的无柄微菌落,导致细菌对抗生素产生抗性。关于浮游细菌,对抗菌肽(AMPs)进行了广泛的研究,但对生物膜形成的研究则少得多。在本研究中,我们使用一系列由六个赖氨酸和九个亮氨酸组成的肽,研究了上述三个步骤如何受到AMPs特性的影响,这些肽的序列及其生物物理特性各不相同。在非抑制浓度下使用杀菌肽进行处理会导致生物膜生长减少,某些情况始于25nM,分别是其最低抑制浓度的0.2%和0.4%(分别为MIC 6.3和12.5μM),并以下列剂量持续:依赖方式。我们建议减少细菌对表面的粘附和减少生物膜的生长是由于肽9s覆盖生物材料表面或细菌本身的能力。在孵育的1小时内,通过杀菌肽和非杀菌肽对已建立的生物膜的降解是通过杀死嵌入的细菌或使活细菌脱离而发生的。这些数据除了可以揭示生物膜抑制和降解的机理外,还可以帮助设计抗生物膜AMP。

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