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Employing high-frequency alternating magnetic fields for the non-invasive treatment of prosthetic joint infections

机译:利用高频交变磁场无创治疗人工关节感染

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摘要

Treatment of prosthetic joint infection (PJI) usually requires surgical replacement of the infected joint and weeks of antibiotic therapy, due to the formation of biofilm. We introduce a non-invasive method for thermal destruction of biofilm on metallic implants using high-frequency (>100 kHz) alternating magnetic fields (AMF). In vitro investigations demonstrate a >5-log reduction in bacterial counts after 5 minutes of AMF exposure. Confocal and scanning electron microscopy confirm removal of biofilm matrix components within 1 minute of AMF exposure, and combination studies of antibiotics and AMF demonstrate a 5-log increase in the sensitivity of Pseudomonas aeruginosa to ciprofloxacin. Finite element analysis (FEA) simulations demonstrate that intermittent AMF exposures can achieve uniform surface heating of a prosthetic knee joint. In vivo studies confirm thermal damage is confined to a localized region (<2 mm) around the implant, and safety can be achieved using acoustic monitoring for the presence of surface boiling. These initial studies support the hypothesis that AMF exposures can eradicate biofilm on metal implants, and may enhance the effectiveness of conventional antibiotics.
机译:由于生物膜的形成,假体关节感染(PJI)的治疗通常需要对感染的关节进行外科手术更换,并需要数周的抗生素治疗。我们介绍了一种使用高频(> 100 kHz)交变磁场(AMF)对金属植入物上的生物膜进行热破坏的非侵入性方法。体外研究表明,AMF暴露5分钟后细菌计数降低了> 5-log。共聚焦和扫描电子显微镜确认在AMF暴露后1分钟之内去除了生物膜基质成分,抗生素和AMF的组合研究表明铜绿假单胞菌对环丙沙星的敏感性提高了5个对数。有限元分析(FEA)模拟表明,间歇性AMF暴露可以使假肢膝关节均匀加热。体内研究证实,热损伤被限制在植入物周围的局部区域(<2 mm),并且可以通过使用声波监测表面沸腾的存在来实现安全性。这些初步研究支持以下假设:AMF暴露会根除金属植入物上的生物膜,并可能增强常规抗生素的有效性。

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