首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >New bone cements with Pluronic (R) F127 for prophylaxis and treatment of periprosthetic joint infections
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New bone cements with Pluronic (R) F127 for prophylaxis and treatment of periprosthetic joint infections

机译:具有pluronic(R)F127的新骨水泥,用于预防和治疗围页孢子瘤关节感染

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摘要

In line with the increase in orthopedic prosthetic surgeries, there has been a significant rise in periprosthetic joint infections (PJI) due to Methicillin-Resistant Staphylococcus Aureus (MRSA) bacteria. In case of infection, antibiotic-added spacers are temporarily placed into the periprosthetic region. With the release of antibiotics usually failing to work in fighting off infection, recent studies have centered around developing more effective approaches. New polymethylmethacrylate (PMMA) cement mixtures were prepared for this study with Pluronic (R) F127, bicarbonate, and citric acid addition. Optimal solutions were searched by monitoring vancomycin release on consecutive days with HPLC in in-vitro. The strengths of the samples were measured via four-point bending tests. Compared to conventional PMMA, strength values were observed to have improved by about 20% with 1.0 g of Pluronic (R) F127. According to HPLC studies, the highest increase for the area under the curve value was obtained for Pluronic (R) F127 doped mixture with a value of about 20%. It is understood from SEM and BET studies that addition of Pluronic (R) F127 helps increase porosity. The present study concludes that the optimum concentration of Pluronic (R) F127 could improve the strength and drug-releasing capacity of the spacer by increasing its porosity.
机译:随着骨科修复手术的增加,由耐甲氧西林金黄色葡萄球菌(MRSA)细菌引起的假体周围关节感染(PJI)显著增加。在感染的情况下,添加抗生素的间隔物被临时放置在假体周围区域。由于抗生素的释放通常无法抵抗感染,最近的研究集中在开发更有效的方法上。为本研究制备了新型聚甲基丙烯酸甲酯(PMMA)水泥混合物,添加了Pluronic(R)F127、碳酸氢盐和柠檬酸。通过在体外连续几天用HPLC监测万古霉素的释放,寻找最佳解决方案。通过四点弯曲试验测量样品的强度。与传统聚甲基丙烯酸甲酯相比,使用1.0克Pluronic(R)F127后,强度值提高了约20%。根据HPLC研究,Pluronic(R)F127掺杂混合物的曲线下面积值的最大增加值约为20%。SEM和BET研究表明,添加Pluronic(R)F127有助于增加孔隙率。本研究得出结论,Pluronic(R)F127的最佳浓度可以通过增加其孔隙率来提高间隔物的强度和药物释放能力。

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