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含补充量庆大霉素的丙烯酸骨水泥疗效的体外研究:对力学性能、抗生素释放及生物膜形成的影响

In vitro study of the efficacy of acrylic bone cement loaded with supplementary amounts of gentamicin: effect on mechanical properties, antibiotic release, and biofilm formation.

作者信息

Dunne Nicholas, Hill Janet, McAfee Patricia, Todd Katy, Kirkpatrick Rachel, Tunney Michael, Patrick Sheila

机构信息

School of Mechanical and Aerospace Engineering, Queen's University, Belfast, UK.

出版信息

Acta Orthop. 2007 Dec;78(6):774-85. doi: 10.1080/17453670710014545.

Abstract

BACKGROUND

Infection remains a severe complication following a total hip replacement. If infection is suspected when revision surgery is being performed, additional gentamicin is often added to the cement on an ad hoc basis in an attempt to reduce the risk of recurrent infection.

METHODS AND RESULTS

In this in vitro study, we determined the effect of incorporating additional gentamicin on the mechanical properties of cement. We also determined the degree of gentamicin release from cement, and also the extent to which biofilms of clinical Staphylococcus spp. isolates form on cement in vitro. When gentamicin was added to unloaded cement (1-4 g), there was a significant reduction in the mechanical performance of the loaded cements compared to unloaded cement. A significant increase in gentamicin release from the cement over 72 h was apparent, with the amount of gentamicin released increasing significantly with each additional 1 g of gentamicin added. When overt infection was modeled, the incorporation of additional gentamicin did result in an initial reduction in bacterial colonization, but this beneficial effect was no longer apparent by 72 h, with the clinical strains forming biofilms on the cements despite the release of high levels of gentamicin.

INTERPRETATION

Our findings indicate that the addition of large amounts of gentamicin to cement is unlikely to eradicate bacteria present as a result of an overt infection of an existing implant, and could result in failure of the prosthetic joint because of a reduction in mechanical performance of the bone cement.

摘要

背景

全髋关节置换术后感染仍是一种严重的并发症。在进行翻修手术时若怀疑有感染,通常会临时在骨水泥中额外添加庆大霉素,以试图降低反复感染的风险。

方法与结果

在这项体外研究中,我们确定了额外添加庆大霉素对骨水泥力学性能的影响。我们还测定了庆大霉素从骨水泥中的释放程度,以及临床分离的葡萄球菌属菌株在体外骨水泥上形成生物膜的程度。当向未加载的骨水泥中添加庆大霉素(1 - 4克)时,与未加载的骨水泥相比,加载骨水泥的力学性能显著降低。在72小时内,骨水泥中庆大霉素的释放量显著增加,每额外添加1克庆大霉素,释放的庆大霉素量就显著增加。当模拟明显感染时,额外添加庆大霉素确实会使细菌定植最初减少,但到72小时时这种有益效果不再明显,尽管释放了高水平的庆大霉素,临床菌株仍在骨水泥上形成生物膜。

解读

我们的研究结果表明,向骨水泥中添加大量庆大霉素不太可能根除因现有植入物明显感染而存在的细菌,并且可能由于骨水泥力学性能的降低而导致人工关节失效。

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