首页> 外文期刊>Journal of biomedical materials research, Part A >A gentamicin-releasing coating for cementless hip prostheses-longitudinal evaluation of efficacy using in vitro bio-optical imaging and its wide-spectrum antibacterial efficacy
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A gentamicin-releasing coating for cementless hip prostheses-longitudinal evaluation of efficacy using in vitro bio-optical imaging and its wide-spectrum antibacterial efficacy

机译:用于非骨水泥髋关节假体的庆大霉素释放涂层的纵向生物光学成像评价及其广谱抗菌功效

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Cementless prostheses are increasingly popular in total hip arthroplasties. Therewith, common prophylactic measures to reduce the risk of postoperative infection like the use of antibiotic-loaded bone cements, will no longer be available. Alternative prophylactic measures may include the use of antibiotic-releasing coatings. Previously, we developed a gentamicin-releasing coating for cementless titanium hip prostheses and derived an appropriate dosing of this coating by adjusting the amount of gentamicin in the coating to match the antibacterial efficacy of clinically employed gentamicin-loaded bone cement. In this manuscript, we investigated two important issues regarding the prophylactic use of this 1 mg cm -2 bioactive gentamicinreleasing coating in cementless total hip arthroplasty: (1) its ability to prevent bacterial growth in a geometrically relevant set-up and (2) its antibacterial spectrum. A geometrically relevant set-up was developed in which miniature titanium stems were surrounded by agar, contaminated with bioluminescent Staphylococcus aureus. Novel, bio-optical imaging was performed allowing noninvasive, longitudinal monitoring of staphylococcal growth around miniature stems with and without the gentamicin-releasing coating. Furthermore, the antibacterial efficacy of the gentamicinreleasing coating was determined against a wide variety of clinical isolates, including bioluminescent Staphylococcus aureus strains, using traditional zone of inhibition measurements. The gentamicin-releasing coating demonstrated a wide-spectrum of antibacterial efficacy and successfully prevented growth of bioluminescent staphylococci around a miniature stem mounted in bacterially contaminated agar for at least 60 h. This implies that the gentamicin-releasing coating has potential to contribute to the improvement of infection prophylaxis in cementless total hip arthroplasty.
机译:非骨水泥假体在全髋关节置换术中越来越受欢迎。因此,将不再提供减少术后感染风险的常用预防措施,例如使用抗生素加载的骨水泥。替代性预防措施可能包括使用抗生素释放涂层。以前,我们开发了用于非骨水泥钛髋关节假体的庆大霉素释放涂层,并通过调整涂层中庆大霉素的含量来匹配临床使用的载有庆大霉素的骨水泥的抗菌功效,从而得出了该涂层的适当剂量。在本手稿中,我们研究了有关在非骨水泥型全髋关节置换术中预防性使用1 mg cm -2生物活性庆大霉素释放涂层的两个重要问题:(1)在几何相关设置中防止细菌生长的能力;(2)抗菌谱。建立了几何相关的设置,其中微型钛茎被琼脂包围,琼脂被生物发光的金黄色葡萄球菌污染。进行了新颖的生物光学成像,可对有无庆大霉素释放涂层的微型茎周围葡萄球菌生长进行无创纵向监测。此外,使用传统的抑制区测量方法确定了庆大霉素释放涂层的抗菌功效,其针对多种临床分离株,包括生物发光金黄色葡萄球菌菌株。释放庆大霉素的涂层显示出广谱的抗菌功效,并成功地阻止了安装在被细菌污染的琼脂中的微型茎周围生物发光葡萄球菌的生长至少60 h。这意味着释放庆大霉素的涂层可能有助于改善非骨水泥型全髋关节置换术中的感染预防。

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