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银涂层在关节置换部件中的作用。

The role of silver coating for arthroplasty components.

机构信息

Department of Surgical Sciences, Uppsala University Hospital, Uppsala, Sweden.

出版信息

Bone Joint J. 2021 Mar;103-B(3):423-429. doi: 10.1302/0301-620X.103B3.BJJ-2020-1370.R1.

Abstract

Periprosthetic joint infection (PJI) is one of the most dreaded complications after arthroplasty surgery; thus numerous approaches have been undertaken to equip metal surfaces with antibacterial properties. Due to its antimicrobial effects, silver is a promising coating for metallic surfaces, and several types of silver-coated arthroplasty implants are in clinical use today. However, silver can also exert toxic effects on eukaryotic cells both in the immediate vicinity of the coated implants and systemically. In most clinically-used implants, silver coatings are applied on bulk components that are not in direct contact with bone, such as in partial or total long bone arthroplasties used in tumour or complex revision surgery. These implants differ considerably in the coating method, total silver content, and silver release rates. Safety issues, such as the occurrence of argyria, have been a cause for concern, and the efficacy of silver coatings in terms of preventing PJI is also controversial. The application of silver coatings is uncommon on parts of implants intended for cementless fixation in host bone, but this option might be highly desirable since the modification of implant surfaces in order to improve osteoconductivity can also increase bacterial adhesion. Therefore, an optimal silver content that inhibits bacterial colonization while maintaining osteoconductivity is crucial if silver were to be applied as a coating on parts intended for bone contact. This review summarizes the different methods used to apply silver coatings to arthroplasty components, with a focus on the amount and duration of silver release from the different coatings; the available experience with silver-coated implants that are in clinical use today; and future strategies to balance the effects of silver on bacteria and eukaryotic cells, and to develop silver-coated titanium components suitable for bone ingrowth. Cite this article:  2021;103-B(3):423-429.

摘要

人工关节假体周围感染(PJI)是关节置换术后最可怕的并发症之一;因此,人们已经尝试了许多方法来使金属表面具有抗菌性能。由于其抗菌作用,银是金属表面有前途的涂层,并且今天有几种类型的银涂层关节置换植入物在临床使用。然而,银也可以对涂层植入物附近的真核细胞以及系统性地产生毒性作用。在大多数临床使用的植入物中,银涂层应用于与骨不直接接触的大块组件上,例如在用于肿瘤或复杂翻修手术的部分或全长骨关节置换术中。这些植入物在涂层方法、总银含量和银释放率方面有很大差异。安全性问题,如银沉着症的发生,一直令人担忧,银涂层在预防 PJI 方面的疗效也存在争议。银涂层在用于宿主骨无水泥固定的植入物部分上的应用并不常见,但这可能是非常可取的,因为为了提高骨传导性而修改植入物表面也会增加细菌粘附。因此,如果将银作为用于与骨接触的部件的涂层,则抑制细菌定植同时保持骨传导性的最佳银含量至关重要。这篇综述总结了将银涂层应用于关节置换部件的不同方法,重点介绍了不同涂层的银释放量和持续时间;今天在临床使用的银涂层植入物的现有经验;以及平衡银对细菌和真核细胞的影响的未来策略,并开发适合骨长入的银涂覆钛部件。引用本文:2021;103-B(3):423-429.

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