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The Effect of Bacterial Adhesion on Grafted Chains Revealed by the Non-Invasive Sum Frequency Generation Spectroscopy

机译:细菌黏附对无创和频产生光谱揭示的接枝链的影响

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In biomedical and food industry, surface colonization by bacteria is harmful it leads to biofilm formation, a microbial consortia more resistant to antibiotics than planktonic bacteria. In order to design materials able to limit the biofilm formation, the effect of bacteria on materials has to be well characterized. In this work, a well-defined surface composed of a self-assembled monolayer (SAM) of octadecanethiol (ODT) onto a gold surface is probed in situ. The SAM conformation is obtained using the femtosecond vibrational sum frequency generation (SFG) spectroscopy. This technique provides selectively the molecular vibrational signature of the interface. The behaviour of the ODT SAM is studied in different environments in air, in water, and upon exposure to hydrophilic or hydrophobic Lactococcus lactis bacteria. Modelling the experimental SFG spectra reveals a measurable change of the SAM conformation which depends on the environment, especially on the hydrophilic-hydrophobic character.
机译:在生物医学和食品工业中,细菌在表面的定居是有害的,它会导致生物膜的形成,这是一种微生物群落,比浮游细菌更能抵抗抗生素。为了设计能够限制生物膜形成的材料,必须充分表征细菌对材料的影响。在这项工作中,在金表面上探查了由十八烷硫醇(ODT)的自组装单分子层(SAM)组成的轮廓分明的表面。 SAM构型是使用飞秒振动和频率生成(SFG)光谱获得的。该技术选择性地提供界面的分子振动特征。在空气,水中和暴露于亲水性或疏水性乳酸乳球菌的不同环境中研究了ODT SAM的行为。对实验性SFG光谱进行建模可以揭示SAM构象的可测量变化,该变化取决于环境,尤其是亲水-疏水特性。

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