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首页> 外文期刊>Journal of biomedical materials research, Part A >Antibacterial polyetheretherketone implants immobilized with silver ions based on chelate-bonding ability of inositol phosphate: Processing, material characterization, cytotoxicity, and antibacterial properties
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Antibacterial polyetheretherketone implants immobilized with silver ions based on chelate-bonding ability of inositol phosphate: Processing, material characterization, cytotoxicity, and antibacterial properties

机译:基于磷酸肌醇螯合能力的银离子固定的抗菌聚醚醚酮植入物:加工,材料表征,细胞毒性和抗菌性能

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摘要

We developed a novel antibacterial implant by forming a hydroxyapatite (HAp) film on polyetheretherketone (PEEK) substrate, and then immobilizing silver ions (Ag+) on the HAp film based on the chelate-bonding ability of inositol phosphate (IP6). First, the PEEK surface was modified by immersion into concentrated sulfuric acid for 10 min. HAp film was formed on the acid-treated PEEK via the soft-solution process using simulated body fluid (SBF), urea, and urease. After HAp coating, specimens were immersed into IP6 solution, and followed by immersion into silver nitrite solution at concentrations of 0, 0.5, 1, 5 or 10 mM. Ag+ ions were immobilized on the resulting HAp film due to the chelate-bonding ability of IP6. On cell-culture tests under indirect conditions by Transwell (R), MC3T3-E1 cells on the specimens derived from the 0.5 and 1 mM Ag+ solutions showed high relative growth when compared with controls. Furthermore, on evaluation of antibacterial activity in halo test, elution of Ag+ ions from Ag+-immobilized HAp film inhibited bacterial growth. Therefore, the above-mentioned results demonstrated that specimens had both biocompatibility and strong antibacterial activity. The present coating therefore provides bone bonding ability to the implant surface and prevents the formation of biofilms in the early postoperative period. (c) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 103A: 57-64, 2015.
机译:我们通过在聚醚醚酮(PEEK)基底上形成羟基磷灰石(HAp)膜,然后基于肌醇磷酸酯(IP6)的螯合能力将银离子(Ag +)固定在HAp膜上,从而开发了一种新型的抗菌植入物。首先,将PEEK表面浸入浓硫酸中10分钟以对其进行改性。通过使用模拟体液(SBF),尿素和脲酶的软溶工艺,在酸处理的PEEK上形成HAp膜。 HAp涂层后,将样品浸入IP6溶液中,然后浸入浓度为0、0.5、1、5或10 mM的亚硝酸银溶液中。由于IP6的螯合能力,Ag +离子被固定在所得的HAp膜上。在Transwell(R)间接条件下进行的细胞培养测试中,与对照相比,在0.5和1 mM Ag +溶液衍生的标本上的MC3T3-E1细胞显示出较高的相对生长。此外,在光晕测试中评估抗菌活性时,从固定有Ag +的HAp膜洗脱Ag +离子会抑制细菌的生长。因此,上述结果表明样品具有生物相容性和强的抗菌活性。因此,本发明的涂层提供了与植入物表面的骨结合能力,并防止了术后早期的生物膜形成。 (c)2014 Wiley Periodicals,Inc.《生物医学物质研究》 A部分:103A:57-64,2015年。

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