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Different binding mechanisms ofStaphylococcus aureusto hydrophobic and hydrophilic surfaces

机译:不同的绑定机制ofStaphylococcusaureusto疏水性和亲水性的表面

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摘要

Bacterial adhesion to surfaces is a crucial step in initial biofilm formation. In a combined experimental and computational approach, we studied the adhesion of the pathogenic bacteriumStaphylococcus aureusto hydrophilic and hydrophobic surfaces. We used atomic force microscopy-based single-cell force spectroscopy and Monte Carlo simulations to investigate the similarities and differences of adhesion to hydrophilic and hydrophobic surfaces. Our results reveal that binding to both types of surfaces is mediated by thermally fluctuating cell wall macromolecules that behave differently on each type of substrate: on hydrophobic surfaces, many macromolecules are involved in adhesion, yet only weakly tethered, leading to high variance between individual bacteria, but low variance between repetitions with the same bacterium. On hydrophilic surfaces, however, only few macromolecules tether strongly to the surface. Since during every repetition with the same bacterium different macromolecules bind, we observe a comparable variance between repetitions and different bacteria. We expect these findings to be of importance for the understanding of the adhesion behaviour of many bacterial species as well as other microorganisms and even nanoparticles with soft, macromolecular coatings, usede.g.for biological diagnostics.
机译:细菌粘附表面是一个至关重要的一步在最初的生物膜的形成。实验和计算的方法,我们研究了致病的附着力bacteriumStaphylococcus aureusto亲水和疏水表面。microscopy-based单细胞力光谱学和蒙特卡罗模拟研究粘附的异同亲水和疏水表面。显示,结合这两种类型的表面由热波动细胞壁在每个大分子,表现出不同的行为类型的衬底:疏水表面,许多大分子参与粘连,但只有弱受,导致高之间的方差个人的细菌,但是低之间的方差重复相同的细菌。亲水表面,然而,只有几个大分子范围强烈表面。因为在每次重复相同的细菌不同的大分子结合,我们观察比较重复之间的方差和不同的细菌。的重要性的理解许多细菌的粘附行为和其他微生物,甚至纳米粒子与柔软,高分子涂料,usede.g.for生物诊断。

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