The effect of antibacterial peptide ε-Polylysine against Pseudomonas aeruginosa biofilm in marine environment

IF 6.6 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY npj Materials Degradation Pub Date : 2024-11-29 DOI:10.1038/s41529-024-00539-6
Siwei Wu, Quantong Jiang, Dongzhu Lu, Xiaofan Zhai, Jizhou Duan, Baorong Hou
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Abstract

Natural antibacterial agents with antimicrobial properties have a broad potential to prevent bacterial from forming biofilms adhesion in marine environments. ε-Polylysine (E-PL) consist of homomeric polymer with 25–30 lysine residues with stability, nontoxicity, and biodegradability. ε-Polylysine is a natural cationic antibacterial peptide that can resist microbial forming biofilm adhesion. The current study investigated the action of E-PL against Pseudomonas aeruginosa biofilm isolated from a marine environment. Crystal violet staining was used to examine the effects of E-PL on the formation and destruction of mature biofilms. Scanning Electron and fluorescence microscopy revealed that E-PL treatment damaged the biofilm structure and affected the secretion of extracellular polymers. The CCK8 colorimetric assay showed that E-PL also decreased the metabolic activity and motility of biofilm bacteria. QPCR and transcriptome analysis revealed that E-PL affected biofilm formation and transcriptional regulation by downregulating genes involved in flagellar synthesis (flgE, PA4651, pilW), chemotaxis transduction (PA1251, PA4951, PA4788), biofilm biosynthesis (pelC, pelD, pslK, plsM), transcriptional regulation (PA3973, PA3508, PA0268), phenazine biosynthesis (phzM, phzH, phzS), and electron transfer (PA5401, PA5400, PA3492). This study used multiple methods to identify the mechanism of E-PL action against biofilm, informing the design of novel biofilm treatment methods.

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抗菌肽ε-聚赖氨酸对海洋环境中铜绿假单胞菌生物膜的影响
具有抗菌性能的天然抗菌剂在防止细菌在海洋环境中形成生物膜粘附方面具有广阔的潜力。ε-聚赖氨酸(E-PL)由25-30个赖氨酸残基组成,具有稳定性、无毒性和可生物降解性。ε-聚赖氨酸是一种天然阳离子抗菌肽,能抵抗微生物形成生物膜粘附。本研究研究了E-PL对海洋环境中铜绿假单胞菌生物膜的作用。结晶紫染色检测E-PL对成熟生物膜形成和破坏的影响。扫描电镜和荧光显微镜显示,E-PL处理破坏了生物膜结构,影响了细胞外聚合物的分泌。CCK8比色分析表明,E-PL还降低了生物膜细菌的代谢活性和运动性。QPCR和转录组分析显示,E-PL通过下调鞭毛合成基因(flgE、PA4651、pilW)、趋化转导基因(PA1251、PA4951、PA4788)、生物膜生物合成基因(pelC、pelD、pslK、plsM)、转录调控基因(PA3973、PA3508、PA0268)、非那酮生物合成基因(phzM、phzH、phzS)和电子传递基因(PA5401、PA5400、PA3492)影响生物膜的形成和转录调控。本研究通过多种方法确定E-PL对生物膜的作用机制,为新型生物膜处理方法的设计提供依据。
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索莱宝
Crystal violet
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Crystal violet
来源期刊
npj Materials Degradation
npj Materials Degradation MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.80
自引率
7.80%
发文量
86
审稿时长
6 weeks
期刊介绍: npj Materials Degradation considers basic and applied research that explores all aspects of the degradation of metallic and non-metallic materials. The journal broadly defines ‘materials degradation’ as a reduction in the ability of a material to perform its task in-service as a result of environmental exposure. The journal covers a broad range of topics including but not limited to: -Degradation of metals, glasses, minerals, polymers, ceramics, cements and composites in natural and engineered environments, as a result of various stimuli -Computational and experimental studies of degradation mechanisms and kinetics -Characterization of degradation by traditional and emerging techniques -New approaches and technologies for enhancing resistance to degradation -Inspection and monitoring techniques for materials in-service, such as sensing technologies
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