首页> 美国卫生研究院文献>Infection and Immunity >Role of Klebsiella pneumoniae Type 1 and Type 3 Fimbriae in Colonizing Silicone Tubes Implanted into the Bladders of Mice as a Model of Catheter-Associated Urinary Tract Infections
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Role of Klebsiella pneumoniae Type 1 and Type 3 Fimbriae in Colonizing Silicone Tubes Implanted into the Bladders of Mice as a Model of Catheter-Associated Urinary Tract Infections

机译:1型和3型肺炎克雷伯菌在定植于小鼠膀胱的硅胶管作为导管相关性尿路感染模型中的作用

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摘要

Catheter-associated urinary tract infections are biofilm-mediated infections that cause a significant economic and health burden in nosocomial environments. Using a newly developed murine model of this type of infection, we investigated the role of fimbriae in implant-associated urinary tract infections by the Gram-negative bacterium Klebsiella pneumoniae, which is a proficient biofilm former and a commonly isolated nosocomial pathogen. Studies have shown that type 1 and type 3 fimbriae are involved in attachment and biofilm formation in vitro, and these fimbrial types are suspected to be important virulence factors during infection. To test this hypothesis, the virulence of fimbrial mutants was assessed in independent challenges in which mouse bladders were inoculated with the wild type or a fimbrial mutant and in coinfection studies in which the wild type and fimbrial mutants were inoculated together to assess the results of a direct competition in the urinary tract. Using these experiments, we were able to show that both fimbrial types serve to enhance colonization and persistence. Additionally, a double mutant had an additive colonization defect under some conditions, indicating that both fimbrial types have unique roles in the attachment and persistence in the bladder and on the implant itself. All of these mutants were outcompeted by the wild type in coinfection experiments. Using these methods, we are able to show that type 1 and type 3 fimbriae are important colonization factors in the murine urinary tract when an implanted silicone tube is present.
机译:导管相关的尿路感染是生物膜介导的感染,在医院环境中会造成巨大的经济和健康负担。使用这种类型的感染的新开发的小鼠模型,我们调查了革兰氏阴性细菌肺炎克雷伯菌肺炎中菌毛在与植入物相关的尿路感染中的作用,这是一种有效的生物膜形成剂,并且是常见的医院内病原体。研究表明,1型和3型菌毛在体外参与附着和生物膜形成,并且这些纤维类型被认为是感染过程中的重要毒力因子。为了检验该假设,在独立挑战中评估了纤维突变体的毒性,在独立挑战中,小鼠膀胱接种了野生型或纤维突变体,在共感染研究中,野生型和纤维突变体一起接种以评估尿路直接竞争。使用这些实验,我们能够证明两种纤维类型都可以增强定植和持久性。此外,双突变体在某些情况下具有加性定植缺陷,表明这两种纤维类型在膀胱和植入物本身的附着和持久性中均具有独特的作用。在共转染实验中,所有这些突变体都与野生型竞争。使用这些方法,我们能够证明存在植入的硅胶管时,1型和3型菌毛是鼠尿道中的重要定居因子。

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