首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Electrophoretic deposition of PEEK/bioactive glass composite coatings on stainless steel for orthopedic applications: an optimization for in vitro bioactivity and adhesion strength
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Electrophoretic deposition of PEEK/bioactive glass composite coatings on stainless steel for orthopedic applications: an optimization for in vitro bioactivity and adhesion strength

机译:透视/生物活性玻璃复合涂料对整形外科应用的电泳沉积:对体外生物活性和粘合强度的优化

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摘要

Polyether ether ketone (PEEK) is an increasingly investigated biocompatible material for orthopedic and spinal implants. The lack in bioactivity of PEEK has to be addressed, either by surface modification or formation of a composite with bioactive materials, such as hydroxyapatite (HA) or bioglass. The addition of bioactive materials improves the bone ingrowth of implants for biomedical application. Accordingly, this study involves electrophoretic deposition (EPD) to obtain PEEK/bioactive glass (BG) coatings on 316 L stainless steel (SS) substrates. In order to prepare the PEEK/BG suspension 2 wt.% PEEK and 6.67 wt.% BG powder were dispersed in ethanol, while citric acid was used as the charging agent. The optimum EPD parameters were applied electric field of 220 V/cm for 2 min. The deposited green coatings presented a homogeneous microstructure and uniform thickness of similar to 100 mu m. Subsequently, sintering temperature was optimized in order to obtainappropriate combination of adhesion strength and the in vitro bioactivity. The optimized sintering parameters (400 degrees C for 30 min) embedded the BG particles in a PEEK matrix, which improved the adhesion strength of coating to the substrate and also formed apatite crystals upon immersion in simulated body fluid. The coatings sintered at 400 degrees C showed significant improvement in the corrosion resistance of bare stainless steel. Moreover, the cytocompatibility tests showed that the MG-63 cells proliferate and grow on the surface of PEEK/BG coatings. The results demonstrated that EPD is a convenient method to obtain homogeneous, robust, and bioactive PEEK/BG coatings on 316 L SS substrates for biomedical applications.
机译:聚醚醚酮(PEEK)是用于整形外科和脊柱植入物的越来越多的生物相容性材料。必须通过表面改性或形成具有生物活性物质的复合材料,例如羟基磷灰石(HA)或生物制剂,所以通过表面改性或形成缺乏的生物活性。添加生物活性材料可改善生物医学应用的植入物的骨骼向期。因此,该研究涉及电泳沉积(EPD),以在316L不锈钢(SS)基材上获得PEEK / BIO活性玻璃(BG)涂层。为了制备PEEK / BG悬浮液2重量%PEEK和6.67重量%。将%BG粉末分散在乙醇中,同时使用柠檬酸作为充电剂。最佳EPD参数施加220伏/ cm的电场2分钟。沉积的绿色涂层呈现出均匀的微观结构和均匀的厚度,类似于100μm。随后,优化烧结温度以获得粘合强度和体外生物活性的不合适组合。优化的烧结参数(400摄氏度30分钟)嵌入PEEK基质中的BG颗粒,其在浸入模拟体液中时,改善了涂覆到基材的粘附强度,并且在浸入模拟体液时也形成了磷灰石晶体。在400摄氏度下烧结的涂层显示出裸露不锈钢的耐腐蚀性的显着提高。此外,细胞偶联试验表明,Mg-63细胞在Peek / Bg涂层的表面上增殖和生长。结果表明,EPD是在316LSS基板上获得均匀,鲁棒和生物活性PEEK / BG涂层的方便方法,用于生物医学应用。

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