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Surface-Attached Molecules Control Staphylococcus aureus Quorum Sensing and Biofilm Development

机译:表面附着的分子控制金黄色葡萄球菌群体感应和生物膜的发展。

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摘要

Bacteria use a process called quorum sensing to communicate and orchestrate collective behaviors including virulence factor secretion and biofilm formation. Quorum sensing relies on production, release, accumulation, and population-wide detection of signal molecules called autoinducers. Here, we develop concepts to coat surfaces with quorum-sensing-manipulation molecules as a method to control collective behaviors. We probe this strategy using Staphylococcus aureus. Pro- and anti-quorum-sensing molecules can be covalently attached to surfaces using click chemistry, where they retain their abilities to influence bacterial behaviors. We investigate key features of the compounds, linkers, and surfaces necessary to appropriately position molecules to interact with cognate receptors, and the ability of modified surfaces to resist long-term storage, repeated infections, host plasma components, and flow-generated stresses. Our studies highlight how this surface approach can be used to make colonization-resistant materials against S. aureus and other pathogens and how the approach can be adapted to promote beneficial behaviors of bacteria on surfaces.
机译:细菌使用称为群体感应的过程来传达和协调包括毒力因子分泌和生物膜形成在内的集体行为。仲裁感测依赖于称为自动诱导剂的信号分子的产生,释放,积累和在整个种群范围内的检测。在这里,我们提出了使用群体感应操纵分子覆盖表面的概念,以此来控制集体行为。我们使用金黄色葡萄球菌探讨这一策略。可以使用点击化学将前和后群体感应分子共价连接到表面,从而保持其影响细菌行为的能力。我们研究了化合物,接头和表面的关键特征,以适当地定位分子与同源受体相互作用,以及修饰的表面抵抗长期储存,反复感染,宿主血浆成分和血流产生的应力的能力。我们的研究突出了如何使用这种表面方法来制作抗金黄色葡萄球菌和其他病原体的定植抗性材料,以及如何将该方法改进以促进细菌在表面上的有益行为。

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