Antibacterial TaN-Ag coatings on titanium dental implants

IF 6.1 2区 材料科学 Q1 MATERIALS SCIENCE, COATINGS & FILMS Surface & Coatings Technology Pub Date : 2010-11-25 Epub Date: 2010-08-03 DOI:10.1016/j.surfcoat.2010.07.096
Heng-Li Huang , Yin-Yu Chang , Meng-Cheng Lai , Cai-Rong Lin , Chih-Ho Lai , Tzong-Ming Shieh
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引用次数: 123

Abstract

Titanium-based materials have been used for dental implants due to their excellent biological compatibility, superior mechanical strength and high corrosion resistance. The osseointegration of titanium dental implants is related to their composition and surface treatment. A better anti-bacterial performance of the abutment seated in the prosthetic crown is beneficial for the osseointegration and for avoiding the infection after implantation surgery. In this study, TaN-Ag coatings with different Ag contents were deposited on a bio-grade pure Ti dental implant material. A twin-gun magnetron sputtering system was used for the deposition of TaN-Ag coatings. The Ag content in the deposited coatings was controlled by the magnetron power ratio of Ag/(Ta + Ag) targets. To verify the susceptibility of implant surface to bacterial adhesion, Staphylococcus aureus, one of the major pathogen frequently found in the implant-associated infections, was chosen for in vitro anti-bacterial analyses. In addition, the biocompatibility of human gingival fibroblast (HGF) cells on coatings was also evaluated. A composite structure of crystalline TaN and Ag nanoparticles was identified. The TaN-Ag coating with the highest Ag content of 21.4 at.% possessed the lowest bacterial retention and viability of S. aureus. From the MTT assay test, the mean optical density values for the TaN and TaN-Ag coated samples after 72 h of HGF adhesion were greater than the value obtained from the uncoated Ti. The results suggested that the TaN-Ag coatings improve antibacterial performance with compatible biological response.

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钛牙种植体抗菌鞣银涂层
钛基材料因其优异的生物相容性、优异的机械强度和高的耐腐蚀性而被广泛应用于种植体。钛牙种植体的骨整合与其成分和表面处理有关。义齿冠内基牙具有良好的抗菌性能,有利于骨整合,避免种植术后感染。在本研究中,将不同Ag含量的TaN-Ag涂层沉积在生物级纯钛牙种植材料上。采用双枪磁控溅射系统沉积TaN-Ag涂层。镀层中Ag的含量由Ag/(Ta + Ag)靶的磁控管功率比控制。为了验证种植体表面对细菌粘附的敏感性,选择种植体相关感染中常见的主要病原菌之一金黄色葡萄球菌进行体外抗菌分析。此外,还对人牙龈成纤维细胞(HGF)在涂层上的生物相容性进行了评价。发现了一种晶体化的TaN和Ag纳米颗粒的复合结构。Ag含量最高的TaN-Ag涂层为21.4 at。金黄色葡萄球菌的细菌滞留率和生存力最低。从MTT分析测试中,在HGF粘附72小时后,TaN和TaN- ag涂层样品的平均光密度值大于未涂层Ti的值。结果表明,TaN-Ag涂层提高了抗菌性能,并具有相容性生物反应。
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来源期刊
Surface & Coatings Technology
Surface & Coatings Technology 工程技术-材料科学:膜
CiteScore
10.00
自引率
11.10%
发文量
921
审稿时长
19 days
期刊介绍: Surface and Coatings Technology is an international archival journal publishing scientific papers on significant developments in surface and interface engineering to modify and improve the surface properties of materials for protection in demanding contact conditions or aggressive environments, or for enhanced functional performance. Contributions range from original scientific articles concerned with fundamental and applied aspects of research or direct applications of metallic, inorganic, organic and composite coatings, to invited reviews of current technology in specific areas. Papers submitted to this journal are expected to be in line with the following aspects in processes, and properties/performance: A. Processes: Physical and chemical vapour deposition techniques, thermal and plasma spraying, surface modification by directed energy techniques such as ion, electron and laser beams, thermo-chemical treatment, wet chemical and electrochemical processes such as plating, sol-gel coating, anodization, plasma electrolytic oxidation, etc., but excluding painting. B. Properties/performance: friction performance, wear resistance (e.g., abrasion, erosion, fretting, etc), corrosion and oxidation resistance, thermal protection, diffusion resistance, hydrophilicity/hydrophobicity, and properties relevant to smart materials behaviour and enhanced multifunctional performance for environmental, energy and medical applications, but excluding device aspects.
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