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首页> 外文期刊>Journal of Clinical Microbiology >Escherichia coli Variants in Periprosthetic Joint Infection: Diagnostic Challenges with Sessile Bacteria and Sonication
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Escherichia coli Variants in Periprosthetic Joint Infection: Diagnostic Challenges with Sessile Bacteria and Sonication

机译:假体周围感染中的大肠杆菌变异:无细菌和超声处理的诊断挑战

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The diagnostic yield of prosthetic joint-associated infection is hampered by the phenotypic change of bacteria into a sessile and resistant form, also called biofilm. With sonication, adherent bacteria can be dislodged from the prosthesis. Species identification may be difficult because of their variations in phenotypic appearance and biochemical reaction. We have studied the phenotypic, genotypic, and biochemical properties of Escherichia coli variants isolated from a periprosthetic joint infection. The strains were collected from synovial fluid, periprosthetic tissue, and fluid from the explanted and sonicated prosthesis. Isolates from synovial fluid revealed a normal phenotype, whereas a few variants from periprosthetic tissue and all isolates from sonication fluid showed different morphological features (including small-colony variants). All isolates from sonication fluid were beta-galactosidase negative and nonmotile; most were indole negative. Because of further variations in biochemical properties, species identification was false or not possible in 50% of the isolates included in this study. In contrast to normal phenotypes, variants were resistant to aminoglycosides. Typing of the isolates using pulsed-field gel electrophoresis yielded nonidentical banding patterns, but all strains were assigned to the same clonal origin when compared with 207 unrelated E. coli isolates. The bacteria were repeatedly passaged on culture media and reanalyzed. Thereafter, most variants reverted to normal phenotype and regained their motility and certain biochemical properties. In addition, some variants displayed aminoglycoside susceptibility after reversion. Sonication of an explanted prosthesis allows insight into the lifestyle of bacteria in biofilms. Since sonication fluid also reveals dislodged sessile forms, species identification of such variants may be misleading.
机译:假体关节相关感染的诊断产量受到细菌表型改变为无柄和抗性形式(也称为生物膜)的阻碍。通过超声处理,附着的细菌可以从假体中清除。由于物种在表型外观和生化反应方面的差异,可能难以进行物种鉴定。我们研究了从假体周围关节感染中分离的大肠杆菌变体的表型,基因型和生化特性。从滑液,假体周围组织以及植入的和超声处理的假体中收集液体。滑液分离株表现出正常的表型,而假体周围组织的一些变体以及超声处理液的所有分离株均表现出不同的形态特征(包括小菌落变体)。来自超声处理液的所有分离物均为β-半乳糖苷酶阴性且无运动能力。大多数是吲哚阴性的。由于生化特性的进一步变化,本研究中包括的50%分离株中的物种鉴定是错误的或不可能的。与正常表型相反,变体对氨基糖苷具有抗性。使用脉冲场凝胶电泳对分离株进行分型会产生不同的条带图谱,但与207个无关的Eem菌株相比,所有菌株均被指定为相同的克隆起源。大肠杆菌分离株。细菌在培养基上反复传代并重新分析。此后,大多数变体恢复为正常表型,并恢复了它们的运动性和某些生化特性。另外,一些变体在逆转后显示出氨基糖苷敏感性。植入假体的超声处理可以深入了解生物膜中细菌的生活方式。由于超声处理液也显示出无柄的无柄形式,因此此类变体的物种鉴定可能会产生误导。

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