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用于骨科应用的小梁钛:通过改变银含量平衡抗菌与骨传导性能。

Trabecular Titanium for Orthopedic Applications: Balancing Antimicrobial with Osteoconductive Properties by Varying Silver Contents.

机构信息

Ortholab, Department of Surgical Sciences─Orthopaedics, Uppsala University, Uppsala 751 85, Sweden.

Zoonosis Science Center, Department of Medical Sciences, Uppsala University, Uppsala 751 85, Sweden.

出版信息

ACS Appl Mater Interfaces. 2022 Sep 21;14(37):41751-41763. doi: 10.1021/acsami.2c11139. Epub 2022 Sep 7.

Abstract

Periprosthetic joint infection (PJI) and implant loosening are the most common complications after joint replacement surgery. Due to their increased surface area, additively manufactured porous metallic implants provide optimal osseointegration but they are also highly susceptible to bacterial colonization. Antibacterial surface coatings of porous metals that do not inhibit osseointegration are therefore highly desirable. The potential of silver coatings on arthroplasty implants to inhibit PJI has been demonstrated, but the optimal silver content and release kinetics have not yet been defined. A tight control over the silver deposition coatings can help overcome bacterial infections while reducing cytotoxicity to human cells. In this regard, porous titanium sputtered with silver and titanium nitride with increasing silver contents enabled controlling the antibacterial effect against common PJI pathogens while maintaining the metabolic activity of human primary cells. Electron beam melting additively manufactured titanium alloys, coated with increasing silver contents, were physico-chemically characterized and investigated for effects against common PJI pathogens. Silver contents from 7 at % to 18 at % of silver were effective in reducing bacterial growth and biofilm formation. was more susceptible to silver ions than . Importantly, all silver-coated titanium scaffolds supported primary human osteoblasts proliferation, differentiation, and mineralization up to 28 days. A slight reduction of cell metabolic activity was observed at earlier time points, but no detrimental effects were found at the end of the culture period. Silver release from the silver-coated scaffolds also had no measurable effects on primary osteoblast gene expression since similar expression of genes related to osteogenesis was observed regardless the presence of silver. The investigated silver-coated porous titanium scaffolds may thus enhance osseointegration while reducing the risk of biofilm formation by the most common clinically encountered pathogens.

摘要

人工关节置换术后最常见的并发症是假体周围关节感染(PJI)和假体松动。由于其表面积增加,增材制造的多孔金属植入物提供了最佳的骨整合,但它们也极易受到细菌定植。因此,具有良好的骨整合效果且不抑制骨整合的多孔金属抗菌表面涂层是非常需要的。已经证明了银涂层在抑制 PJI 方面的潜力,但最佳的银含量和释放动力学尚未确定。对银沉积涂层进行严格控制有助于克服细菌感染,同时降低对人细胞的细胞毒性。在这方面,多孔钛溅射银和氮化钛,随着银含量的增加,可以控制对常见 PJI 病原体的抗菌作用,同时保持人原代细胞的代谢活性。用电子束熔化增材制造的钛合金,随着银含量的增加进行涂层,对其进行了理化特性表征,并研究了其对常见 PJI 病原体的作用。银含量为 7 at %到 18 at %的银可有效减少细菌生长和生物膜形成。 比 更易受银离子的影响。重要的是,所有银涂层钛支架均支持原代人成骨细胞增殖、分化和矿化,直至 28 天。在早期时间点观察到细胞代谢活性略有下降,但在培养期末未发现有害影响。银从银涂层支架中的释放也没有对原代成骨细胞基因表达产生可测量的影响,因为无论是否存在银,与成骨相关的基因表达相似。因此,所研究的银涂层多孔钛支架可能在增强骨整合的同时,降低最常见临床遇到的病原体形成生物膜的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f84c/9501801/e379c880c409/am2c11139_0002.jpg

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