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Enterococcus faecalis Polymicrobial Interactions Facilitate Biofilm Formation, Antibiotic Recalcitrance, and Persistent Colonization of the Catheterized Urinary Tract

机译:肠球菌粪便多发性相互作用有助于生物膜形成,抗生素重核和导尿尿​​路的持续定植

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摘要

Indwelling urinary catheters are common in health care settings and can lead to catheter-associated urinary tract infection (CAUTI). Long-term catheterization causes polymicrobial colonization of the catheter and urine, for which the clinical significance is poorly understood. Through prospective assessment of catheter urine colonization, we identified Enterococcus faecalis and Proteus mirabilis as the most prevalent and persistent co-colonizers. Clinical isolates of both species successfully co-colonized in a murine model of CAUTI, and they were observed to co-localize on catheter biofilms during infection. We further demonstrate that P. mirabilis preferentially adheres to E. faecalis during biofilm formation, and that contact-dependent interactions between E. faecalis and P. mirabilis facilitate establishment of a robust biofilm architecture that enhances antimicrobial resistance for both species. E. faecalis may therefore act as a pioneer species on urinary catheters, establishing an ideal surface for persistent colonization by more traditional pathogens such as P. mirabilis.
机译:留置尿道导管在医疗保健环境中是常见的,可以导致导管相关的泌尿道感染(Cauti)。长期导管插入导致导管和尿液的多发性殖民化,临床意义知之甚少。通过对导管尿液定殖的前瞻性评估,我们将肠球菌粪便和蛋白质Mirabilis鉴定为最普遍和持久的共殖民单。在Cauti的鼠模型中成功共殖的两种物种的临床分离物,并且在感染期间观察到它们在导管生物膜上共定。我们进一步证明,米拉巴里斯在生物膜形成期间优先粘附在E.粪便中,并且E.Afecalis和P.Mirabilis之间的接触相互作用促进了建立鲁棒的生物膜结构,增强了两种物种的抗微生物抗性。因此,粪便可以作为泌尿导管上的先驱物种,建立理想的表面,用于通过更传统的病原体如P. Mirabilis。

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