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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

机译:补充量庆大霉素的丙烯酸骨水泥功效的体外研究:对机械性能,抗生素释放和生物膜形成的影响

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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.
机译:背景?在全髋关节置换术后感染仍然是严重的并发症。如果在进行翻修手术时怀疑有感染,通常会临时将额外的庆大霉素加到水泥中,以降低反复感染的风险。方法和结果在这项体外研究中,我们确定了掺入其他庆大霉素对水泥力学性能的影响。我们还确定了庆大霉素从水泥中释放的程度,以及临床葡萄球菌属菌种生物膜的程度。分离物在体外在水泥上形成。当庆大霉素被加入到卸荷的水泥中(1-4微克)时,与卸荷的水泥相比,其力学性能显着降低。在72小时内,庆大霉素从水泥中的释放明显增加,每增加1微克庆大霉素,庆大霉素的释放量就会明显增加。当对明显的感染进行建模时,额外的庆大霉素的掺入确实导致细菌定殖的初始减少,但是这种有益效果在72 h时不再明显,尽管释放了高含量的庆大霉素,临床菌株仍在水泥上形成生物膜。 。解释?我们的研究结果表明,在水泥中添加大量庆大霉素不太可能根除由于现有植入物的明显感染而导致的细菌,并且可能由于假体的机械性能降低而导致假体关节衰竭。骨水泥。

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