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Microbiology, Biofilm and Antibiotics

机译:微生物学,生物膜和抗生素

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Prosthetic joint infections are generally caused by a variety of gram-positive and gram-negative micro-organisms. New species are continuously isolated, including anaerobes. The pathogenic mechanisms responsible for articular infections are well studied only for some bacteria, e.g. Staphylococcus aureus and Pseudomonas aeruginosa, while others are only partially understood. The most important virulence and microbiological factors involved in these infections are the bacterial adhesion on the native joint or prosthetic material and the biofilm production by bacteria involved in the infection. Biofilm formation is the result of a developmental programme of gene expression involving intracellular signalling, or quorum sensing. The biofilm consists of bacteria embedded within an extracellular polymeric matrix (EPS), which protects micro-organisms from environmental factors, including host immune responses and normal levels of conventional antimicrobial agents. Biofilm resistance is a multi-factorial mechanism, which makes biofilm eradication difficult to obtain, and thus most biofilm-related infections require prompt removal of the device. Some antimicrobials are better than others in treating biofilm-associated bacteria and new antibiofilm substances are now being developed by research.
机译:假体关节感染通常由各种革兰氏阳性和革兰氏阴性微生物引起。持续分离新物种,包括厌氧人。对某些细菌来说,负责关节感染的病原机制很好地研究了一些细菌。金黄色葡萄球菌和假单胞菌铜绿假单胞菌,而其他物品仅部分地理解。这些感染中涉及的最重要的毒物和微生物因子是对天然关节或假体材料和参与感染的细菌的生物膜产生的细菌粘附。生物膜形成是涉及细胞内信号传导或法定传感的基因表达的发育计划的结果。生物膜由嵌入细胞外聚合物基质(EPS)内的细菌组成,其保护来自环境因素的微生物,包括宿主免疫应答和正常水平的常规抗微生物剂。生物膜电阻是一种多因素机制,使生物膜消除难以获得,因此大多数生物膜相关的感染需要迅速地去除装置。一些抗微生物比治疗生物膜相关的细菌更好,并且目前正在通过研究开发出新的抗抗菌物质。

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