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Development and characterization of silver containing calcium phosphate coatings on pure iron foam intended for bone scaffold applications

机译:用于骨支架应用的纯铁泡沫上的含银磷酸钙涂层的开发和表征

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Despite its high structural strength and degradability, the potentiality of pure iron foam for bone scaffolds is low due to its lack of surface bioactivity. This work aims to provide a surface bioactivity to the iron foam by developing a calcium phosphate (CaP) conversion coating. Silver (Ag), known for its antibacterial property, was then incorporated onto the CaP coating via co-deposition (Ag/CaP-c) and post-treatment (Ag/CaP-p). By tuning the Ca/P ion ratio and Ag concentration during the coating process, an optimum coating parameter was obtained. All coatings were found to enhance mineralization ability and mechanical integrity of the iron foam over time. Electrochemical and immersion tests indicated that the coatings regulated the degradation rate of the iron foam via a variation of coating resistance and capacitance. Silver ions were released slowly from the Ag/CaP coating during the immersion test indicating a potential long-term antibacterial property of the coating. Details on the coating design and process optimization, the effects of three different simulated physiological solutions, and the mechanical property of the coated iron foam are discussed in this report. (C) 2018 Elsevier Ltd. All rights reserved.
机译:尽管具有高结构强度和可降解性,但由于缺乏表面生物活性,纯铁泡沫在骨支架上的潜力仍然很低。这项工作旨在通过开发磷酸钙(CaP)转化涂层为泡沫铁提供表面生物活性。然后,通过共沉积(Ag / CaP-c)和后处理(Ag / CaP-p)将以抗菌性能闻名的银(Ag)掺入CaP涂层中。通过在涂覆过程中调节Ca / P离子比率和Ag浓度,可以获得最佳的涂覆参数。随着时间的推移,发现所有涂层都能增强泡沫铁的矿化能力和机械完整性。电化学和浸没测试表明,涂层通过改变涂层电阻和电容来调节泡沫铁的降解速率。在浸入测试过程中,银离子从Ag / CaP涂层中缓慢释放,表明该涂层具有潜在的长期抗菌性能。本报告讨论了有关涂层设计和工艺优化,三种不同的模拟生理溶液的影响以及涂层泡沫铁的机械性能的详细信息。 (C)2018 Elsevier Ltd.保留所有权利。

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