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Silver Nanocoating Technology in the Prevention of Prosthetic Joint Infection

机译:纳米银涂层技术预防人工关节感染

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摘要

Prosthetic joint infection (PJI) is a feared complication of total joint arthroplasty associated with increased morbidity and mortality. There is a growing body of evidence that bacterial colonization and biofilm formation are critical pathogenic events in PJI. Thus, the choice of biomaterials for implanted prostheses and their surface modifications may significantly influence the development of PJI. Currently, silver nanoparticle (AgNP) technology is receiving much interest in the field of orthopaedics for its antimicrobial properties and a strong anti-biofilm potential. The great advantage of AgNP surface modification is a minimal release of active substances into the surrounding tissue and a long period of effectiveness. As a result, a controlled release of AgNPs could ensure antibacterial protection throughout the life of the implant. Moreover, the antibacterial effect of AgNPs may be strengthened in combination with conventional antibiotics and other antimicrobial agents. Here, our main attention is devoted to general guidelines for the design of antibacterial biomaterials protected by AgNPs, its benefits, side effects and future perspectives in PJI prevention.
机译:人工关节感染(PJI)是全关节置换术的恐惧并发症,与发病率和死亡率增加相关。越来越多的证据表明细菌定植和生物膜形成是PJI中的关键致病事件。因此,选择用于植入假体的生物材料及其表面修饰可能会显着影响PJI的发展。当前,银纳米颗粒(AgNP)技术因其抗菌特性和强大的生物膜潜力而在骨科领域引起了广泛兴趣。 AgNP表面修饰的最大优势是活性物质向周围组织的释放极少,并且具有长效性。结果,AgNPs的受控释放可以确保在植入物的整个生命周期内都具有抗菌保护作用。此外,与常规抗生素和其他抗微生物剂联合使用可增强AgNPs的抗菌作用。在这里,我们的主要注意力集中在设计受AgNP保护的抗菌生物材料的一般准则,其益处,副作用以及PJI预防的未来前景。

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