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Impact of the Charge-Regulated Nature of the Bacterial Cell Surface on the Activity of Adhered Cells

机译:细菌细胞表面的电荷调节性质对粘附细胞活性的影响

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摘要

Since the first reported observations by Zobell in 1943, it has been recognized that the metabolic activity of adhered bacteria can differ from that of their planktonic counterparts. Many studies have been performed and the overwhelming evidence is that bacterial adhesion to surfaces can result in changes to cellular metabolic activity and that the changes are a function of the surface properties of both the bacterial and adhering surfaces. However, the mechanism that results in these observations has remained elusive. The authors have approached this problem by focusing on cellular bioenergetics, which describes how bacteria obtain, store and use energy, and how adhesion can affect this process. In a series of experimental and numerical studies, the authors developed a hypothesis linking cellular bioenergetics to the physicochemical charge-regulation effect, which causes variations in surface electrostatic properties as a surface containing acid/base functional groups (e.g., the bacterial cell surface) approaches another surface. The purpose of this paper is to synthesize these prior studies and provide a cohesive presentation of the hypothesis. If this hypothesis is ultimately shown to be true, it will provide a fundamental basis for the engineered design of surface materials and coatings that can enhance or inhibit bacterial activity and colonization, depending on the requirements of the system at hand.
机译:自1943年Zobell首次报道观察以来,已经认识到粘附细菌的代谢活性可能不同于浮游细菌。已经进行了许多研究,并且绝大多数的证据表明细菌对表面的粘附可以导致细胞代谢活性的改变,并且该改变是细菌和粘附表面的表面性质的函数。但是,导致这些观察的机制仍然难以捉摸。通过关注细胞生物能学,作者已经解决了这个问题,它描述了细菌如何获取,储存和使用能量,以及粘附如何影响这个过程。在一系列的实验和数值研究中,作者提出了一种假设,将细胞生物能学与理化电荷调节效应联系起来,随着含酸/碱官能团(例如细菌细胞表面)的接近,表面静电特性发生变化。另一个表面。本文的目的是综合这些先前的研究,并提供该假设的整体介绍。如果这一假设最终被证明是正确的,那么它将为表面材料和涂层的工程设计提供基础,这些材料可以根据手头系统的要求来增强或抑制细菌的活性和定殖。

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