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A Model of Implant-Associated Infection in the Tibial Metaphysis of Rats

机译:大鼠胫骨干physi端的植入物相关感染模型

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摘要

Objective. Implant-associated infections remain serious complications in orthopaedic and trauma surgery. A main scientific focus has thus been drawn to the development of anti-infective implant coatings. Animal models of implant-associated infections are considered helpful in the in vivo testing of new anti-infective implant coatings. The aim of the present study was to evaluate a novel animal model for generation of implant-associated infections in the tibial metaphysis of rats. Materials and Methods. A custom-made conical implant made of Ti6Al4V was inserted bilaterally at the medial proximal tibia of 26 female Sprague-Dawley rats. Staphylococcus aureus in amounts spanning four orders of magnitude and each suspended in 15 μl phosphate buffered saline (PBS) was inoculated into the inner cavity of the implant after the implantation into the defined position. Controls were treated accordingly with PBS alone. Animals were then followed for six weeks until sacrifice. Implant-associated infection was evaluated by microbiological investigation using swabs and determination of viable bacteria in the bone around the implant and the biofilm on the implants after sonification. Results. Irrespective of the initial inoculum, all animals in the various groups harbored viable bacteria in the intraoperative swabs as well as the sonication fluid of the implant and the bone samples. No correlation could be established between initially inoculated CFU and population sizes on implant surfaces at sacrifice. However, a significantly higher viable count was observed from peri-implant bone samples for animals inoculated with 106 CFU. Macroscopic signs of animal infection (pus and abscess formation) were only observed for implants inoculated with at least 105 CFU S. aureus. Discussion/Conclusion. The results demonstrate the feasibility of this novel animal model to induce an implant-associated infection in the metaphysis of rats, even with comparatively low bacterial inocula. The specific design of the implant allows an application of bacteria in reproducible numbers at well-defined contact sites to the animal bone.
机译:目的。在整形外科和创伤外科手术中,植入物相关感染仍然是严重的并发症。因此,主要的科学重点已转移到抗感染植入物涂层的开发上。植入物相关感染的动物模型被认为有助于新型抗感染植入物涂层的体内测试。本研究的目的是评估一种新的动物模型,用于在大鼠胫骨干physi端上产生植入物相关感染。材料和方法。在26只雌性Sprague-Dawley大鼠的胫骨内侧近端双侧插入由Ti6Al4V制成的定制圆锥形植入物。在植入到指定位置后,将金黄色葡萄球菌的量跨越四个数量级,并分别悬浮于15μl磷酸盐缓冲盐水(PBS)中。因此,仅用PBS处理对照。然后将动物追踪六周直至处死。使用棉签通过微生物学调查评估植入物相关感染,并确定超声后植入物周围骨中的活细菌和植入物上的生物膜。结果。不管最初的接种物是什么,各组中的所有动物在术中拭子以及植入物和骨样品的超声处理液中都带有活菌。在牺牲时,最初接种的CFU与植入物表面的种群大小之间没有建立相关性。但是,从种植体周围骨样品中观察到接种10 6 CFU的动物的活菌计数显着更高。仅在接种了至少10 5 CFU金黄色葡萄球菌的植入物中观察到动物感染的肉眼可见的迹象(脓和脓肿形成)。讨论/结论。结果表明,即使细菌接种量相对较低,该新型动物模型在大鼠干physi端诱发植入相关感染的可行性。植入物的特殊设计允许在可明确定义的与动物骨骼接触的位置以可重复的数量施加细菌。

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