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Selenium and tellurium-based nanoparticles as interfering factors in quorum sensing-regulated processes: violacein production and bacterial biofilm formation

机译:基于硒和碲的纳米粒子作为法定传感调节过程中干扰因子:紫杉蛋白的生产和细菌生物膜形成

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摘要

A cell-to-cell communication system called quorum sensing (QS) promotes the transcription of certain target genes in bacterial cells leading to the activation of different cellular processes, some of them related to bacterial biofilm formation. The formation of bacterial biofilms favours antibiotic resistance, which is nowadays a significant public-health problem. In this study, the effect of selenium (SeNPs) and tellurium (TeNPs) nanoparticles was examined in two bacterial processes mediated by QS: violacein production by Chromobacterium violaceum and biofilm formation by Pseudomonas aeruginosa. For this purpose, quantification of the pigment production in the presence of these nanoparticles was monitored using the C. violaceum strain. Additionally, a combination of different microscopical imaging techniques was applied to examine the changes in the 3D biofilm structure of P. aeruginosa, which were quantified through performing architectural metric calculations (substratum area, cell area coverage and biovolume). SeNPs produce an 80% inhibition in the violacein production by C. violaceum and a significant effect on the P. aeruginosa biofilm architecture (a reduction of 80% in the biovolume of the bacterial biofilm was obtained). TeNPs similarly affect violacein production and the P. aeruginosa biofilm structure but at lower concentration levels. The results obtained suggest an important disruption of the QS signalling system by SeNPs and TeNPs, supporting nanotechnology as a promising tool to fight against the emerging problem of bacterial resistance related to bacterial biofilm formation.
机译:称为仲裁感测(QS)的细胞对细胞通信系统促进细菌细胞中某些靶基因的转录,导致不同细胞过程的激活,其中一些与细菌生物膜形成有关。细菌生物膜的形成有利于抗生素抗性,这是一个重要的公共卫生问题。在该研究中,在由QS介导的两种细菌过程中检测硒(SENP)和碲(TENPS)纳米颗粒的作用:紫杉杆菌和铜绿假单胞菌的紫杉杆菌和生物膜形成生物膜形成。为此目的,使用C. violaceum菌株监测这些纳米颗粒存在下的颜料产生的定量。另外,应用不同的显微成像技术的组合来检查通过执行架构度量计算(底层区域,细胞面积覆盖和生物宽度)来定量P. Acuginosa的3D生物膜结构的变化。塞培斯在C. violateum生产中产生80%的抑制作用,对铜绿假单胞菌的P.铜绿假单胞菌架构(在药物生物膜的生物弱中减少80%)的显着影响。 Tenps同样地影响紫牙生产和P.铜绿假单胞菌的菌丝结构,但浓度较低。所获得的结果表明,SENP和Tenps的QS信号系统的重要破坏,支持纳米技术作为对抗与细菌生物膜形成有关的细菌抗性问题的有希望的工具。

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    Univ Complutense Madrid Fac Chem Dept Analyt Chem Ave Complutense S-N Madrid 28040 Spain;

    Univ Complutense Madrid Fac Biol Dept Genet Physiol &

    Microbiol Jose Antonio Novais 12 Madrid 28040 Spain;

    Univ Complutense Madrid Fac Biol Dept Genet Physiol &

    Microbiol Jose Antonio Novais 12 Madrid 28040 Spain;

    Univ Complutense Madrid Fac Biol Dept Genet Physiol &

    Microbiol Jose Antonio Novais 12 Madrid 28040 Spain;

    Univ Complutense Madrid Fac Chem Dept Analyt Chem Ave Complutense S-N Madrid 28040 Spain;

    Univ Complutense Madrid Fac Chem Dept Analyt Chem Ave Complutense S-N Madrid 28040 Spain;

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  • 正文语种 eng
  • 中图分类 分子生物学;
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