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Bacteria/Material Interfaces: Role of the Material and Cell Wall Properties

机译:细菌/材料界面:材料和细胞壁特性的作用

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Most of the implant-associated infections are attributed to bacteria adhering to biomaterial surfaces as "biofflm" communities. Bacterial transport, first contact with the surface as well as some of the further developments can be considered and can be described using physical-chemical concepts. However, far from simple colloidal particles, bacteria have various macromolecular structures at their cell wall surface for interacting with their surroundings through specific and non-specific bindings. They are also able to modify composition and features of their cell wall in response to specific surrounding conditions. Therefore, bacteria/surface material interface is a complex topic, involving chemical and physical-chemical characteristics of both material surface and bacterial cell wall, as well as biological characteristics of bacteria. Furthermore, proteins and other biomolecules coming from surrounding medium influence the bacteria/material interface by adsorbing onto the material surface prior to any adhesion of bacteria. Finally, bacterial adhesion and biofilm formation phenomena occur at the same time as eukaryotic cell adhesion in an acute competition for adhering to and colonising the biomaterial surface. Therefore, developing biomaterials able to favour cell adhesion without promoting also bacterial adhesion appears still to be a challenge. In this article, we describe briefly the common development and particularities of biofilms before focusing on what for and whether bacterial features and material surface properties are likely to be involved in bacterial adhesion, the first step in biofilm formation. The influence of adsorbed biomolecules at the bacteria/material interface is finally addressed, as well as the current knowledge about the competition between bacteria and eukaryotic cells.
机译:大多数与植入物相关的感染均归因于细菌附着在生物材料表面上,成为“生物膜”群落。细菌运输,首先与表面接触以及一些进一步的发展都可以考虑并可以使用物理化学概念来描述。然而,除了简单的胶体颗粒外,细菌在其细胞壁表面还具有各种大分子结构,可通过特异性和非特异性结合与周围环境相互作用。它们还能够响应于特定的周围条件而改变其细胞壁的组成和特征。因此,细菌/表面材料的界面是一个复杂的话题,涉及材料表面和细菌细胞壁的化学和物理化学特性,以及细菌的生物学特性。此外,来自周围介质的蛋白质和其他生物分子通过在细菌的任何粘附之前吸附到材料表面上而影响细菌/材料界面。最后,细菌粘附和生物膜形成现象与真核细胞粘附同时发生,这是对粘附和定居生物材料表面的激烈竞争。因此,开发能够促进细胞粘附而不促进细菌粘附的生物材料似乎仍然是一个挑战。在本文中,我们先简要介绍生物膜的共同发展和特殊性,然后再着重于细菌粘附和形成细菌膜的第一步及目的是什么以及细菌的特征和材料表面特性是否可能参与细菌粘附。最后讨论了吸附的生物分子在细菌/材料界面的影响,以及有关细菌与真核细胞之间竞争的当前知识。

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