Rabbit model of a biofilm-contaminated, percutaneous orthopaedic endoprosthesis.

Christopher Rivet, Jonathan Thomas Elliott, Jason R Gunn, J Scott Sottosanti, Bailey V Fearing, Joseph R Hsu, Ida Leah Gitajn
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引用次数: 0

Abstract

Preclinical models of osseointegrated orthopaedic implants tend to focus on implant stability, surface modifications to enhance integration with host tissue, and reduction in iatrogenic contamination through antibiotic-eluting/bacteria-resistant coatings. While these studies are imperative to early success in osseointegration, continued success of percutaneous devices throughout the lifespan of the patient is also critically important. A perpetual challenge to the implant is formation of bacterial biofilm on the abutment. Once adhered, biofilm-based bacteria are recalcitrant and readily contaminate the subcutaneous soft tissue of the stoma. To this end, the rabbit model reported herein replicates the clinical scenario of a patient with a biofilm-contaminated abutment. This model enables preclinical testing of advanced therapeutics beyond the traditional antibiotic-based approach, potentially increasing the longevity of the device.

生物膜污染的兔经皮骨科假体模型。
骨整合骨科种植体的临床前模型倾向于关注种植体的稳定性、表面修饰以增强与宿主组织的结合,以及通过抗生素洗脱/耐细菌涂层减少医源性污染。虽然这些研究对骨整合的早期成功至关重要,但在患者的整个生命周期中,经皮装置的持续成功也至关重要。种植体面临的一个永恒的挑战是在基牙上形成细菌生物膜。一旦附着,生物膜细菌是顽固的,很容易污染皮下软组织的造口。为此,本文报道的兔模型复制了生物膜污染基台患者的临床情况。该模型使先进治疗的临床前测试超越了传统的基于抗生素的方法,潜在地延长了设备的使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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