首页> 外文会议>Conference on BioMEMS and Nanotechnology; 20071205-07; Canberra(AU) >Atomic force microscopy study on the attachment of E. coli and S. aureus to a patterned surface of different materials
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Atomic force microscopy study on the attachment of E. coli and S. aureus to a patterned surface of different materials

机译:原子力显微镜研究大肠埃希菌和金黄色葡萄球菌附着在不同材料的图案化表面上

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Many bacterial species are able to colonize the surfaces of biomedical tools or devices and form biofilms creating a source of infection and other deleterious effects. Biofilms constitute environments in which bacteria grow and are protected from the host's immune system and antimicrobial medications. The bacterial adhesion, which is an important and first step in biofilm formation, is influenced by several physico-chemical and topographical factors at the interfaces between the bacterial cell and the surface. Therefore, the mechanism of initial adhesion needs to be investigated to better understand the events of anchorage and film formation as bacteria colonise surfaces. In this work, atomic force microscopy (AFM) in the tapping mode of imaging has been employed to investigate the attachment of bacteria onto a structured surface patterned with different hydrophilic and hydrophobic areas. The interactions of Escherichia coli and Staphylococcus aureus with these structures were also monitored by fluorescence microscopy. AFM was successfully employed for the study of the cell responses to both nanotopography and the surface chemistry via observation of various cell functions; including extracellular polymeric substance (EPS) mediated cellular adhesion.
机译:许多细菌能够在生物医学工具或设备的表面定居,并形成生物膜,从而形成感染和其他有害作用的来源。生物膜构成细菌在其中生长的环境,并受到保护,使其免受宿主的免疫系统和抗菌药物的侵害。细菌粘附是生物膜形成中的重要且第一步,它受到细菌细胞与表面之间界面处的几种物理化学和形貌因素的影响。因此,需要研究初始粘附的机制,以更好地了解细菌在表面上定殖时的锚固和膜形成事件。在这项工作中,已采用以成像敲击模式的原子力显微镜(AFM)来研究细菌在具有不同亲水和疏水区域的结构化表面上的附着。大肠埃希菌和金黄色葡萄球菌与这些结构的相互作用也通过荧光显微镜监测。通过观察各种细胞功能,原子力显微镜已成功地用于研究细胞对纳米形貌和表面化学的反应。包括细胞外聚合物(EPS)介导的细胞粘附。

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