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Non-invasive SFG spectroscopy: a tool to reveal the conformational change of grafted chains due to bacterial adhesion

机译:SFG非侵入性光谱:揭示细菌粘附导致嫁接链构象变化的工具

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In many fields such as biomedical or food industry, surface colonization by micro-organisms leads to biofilms formation that are tridimentional biostructures highly resistant to the action of antimicrobials, by mechanisms still unclear. In order to deepen our understanding of the initial interaction of bacteria cells with a solid surface, we analyze by in situ vibrational Sum Frequency Generation (SFG) spectroscopy the effect of the adhesion of hydrophilic Lactoccocus lactis bacteria and its hydrophobic mutants in distilled water on a self-assembled monolayer (SAM) of octadecanethiol (ODT) on a gold film. When a homogeneous bacterial monolayer is deposited on this ordered surface, SFG spectrum of the ODT SAM shows significant intensity changes from that in air or in water. Its modelling as a function of conformation allows to distinguish optical effects due to the water solution surrounding bacteria from conformational changes of the ODT SAM due to the presence of the bacteria cells. Futhermore, bacterial adhesion induces different measurable effects on the ODT SAM conformation, depending on the hydrophobic / hydrophilic character of the bacterial surface. Such a result deserves to be taken into account for the design of new materials with improved properties or to control biofilm formation.
机译:在许多领域,例如生物医学或食品工业中,微生物的表面定殖会导致形成生物膜,这些生物膜是三维结构的生物结构,对微生物的作用具有高度抵抗性,其机制尚不清楚。为了加深我们对细菌细胞与固体表面的初始相互作用的了解,我们通过原位振动总和频率生成(SFG)光谱分析了亲水乳酸乳球菌及其疏水突变体在蒸馏水中的黏附作用。金膜上十八烷硫醇(ODT)的自组装单分子层(SAM)。当均匀的细菌单层沉积在该有序表面上时,ODT SAM的SFG光谱显示出与空气或水中相比明显的强度变化。其作为构象的函数的模型允许区分由于细菌周围的水溶液引起的光学效应与由于细菌细胞的存在而导致的ODT SAM构象变化。另外,取决于细菌表面的疏水/亲水特性,细菌粘附对ODT SAM构象诱导不同的可测量作用。在设计具有改进性能的新材料或控制生物膜形成时,应考虑到这种结果。

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