首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Characterization of mechanical properties of hydroxyapatite-silicon-multi walled carbon nano tubes composite coatings synthesized by EPD on NiTi alloys for biomedical application
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Characterization of mechanical properties of hydroxyapatite-silicon-multi walled carbon nano tubes composite coatings synthesized by EPD on NiTi alloys for biomedical application

机译:EPD在生物医学应用中合成的羟基磷灰石 - 硅式多壁碳纳米管复合涂料的羟基磷灰石 - 硅 - 多壁碳纳米管复合涂层的表征

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Release of Ni1+ ions from NiTi alloy into tissue environment, biological response on the surface of NiTi and the allergic reaction of atopic people towards Ni are challengeable issues for biomedical application. In this study, composite coatings of hydroxyapatite-silicon multi walled carbon nano-tubes with 20 wt% Silicon and 1 wt% multi walled carbon nano-tubes of HA were deposited on a NiTi substrate using electrophoretic methods. The SEM images of coated samples exhibit a continuous and compact morphology for hydroxyapatite-silicon and hydroxyapatite-silicon-multi walled carbon nano-tubes coatings. Nano-indentation analysis on different locations of coatings represents the highest elastic modulus (45.8 GPa) for HA-Si-MWCNTs which is between the elastic modulus of NiTi substrate (66.5 GPa) and bone tissue ( GPa). This results in decrease of stress gradient on coating-substrate-bone interfaces during performance. The results of nano scratch analysis show the highest critical distance of delamination (2.5 mm) and normal load before failure (837 mN) as well as highest critical contact pressure for hydroxyapatitesilicon-multi walled carbon nano-tubes coating. The cell culture results show that human mesenchymal stem cells are able to adhere and proliferate on the pure hydroxyapatite and composite coatings. The presence of both silicon and multi walled carbon nano-tubes (CS3) in the hydroxyapatite coating induce more adherence of viable human mesenchymal stem cells in contrast to the HA coated samples with only silicon (CS2). These results make hydroxyapatite-silicon-multi walled carbon nano-tubes a promising composite coating for future bone implant application. (C) 2016 Elsevier Ltd. All rights reserved.
机译:NiTi合金中Ni1+离子向组织环境的释放、NiTi表面的生物反应以及特应性人群对Ni的过敏反应是生物医学应用中具有挑战性的问题。在本研究中,采用电泳法在NiTi基底上沉积了含有20 wt%硅和1 wt%HA多壁碳纳米管的羟基磷灰石-硅多壁碳纳米管复合涂层。涂层样品的SEM图像显示,羟基磷灰石-硅和羟基磷灰石-硅多壁碳纳米管涂层具有连续且致密的形态。涂层不同位置的纳米压痕分析表明,HA-Si多壁碳纳米管的最高弹性模量(45.8 GPa),介于NiTi基底(66.5 GPa)和骨组织(GPa)之间。这导致性能期间涂层-基体-骨界面上的应力梯度降低。纳米划痕分析结果显示,羟基磷灰石-硅多壁碳纳米管涂层的最高临界分层距离(2.5mm)和失效前的正常载荷(837mn)以及最高临界接触压力。细胞培养结果表明,人骨髓间充质干细胞能够在纯羟基磷灰石和复合涂层上粘附和增殖。与仅含硅(CS2)的HA涂层样品相比,羟基磷灰石涂层中同时存在硅和多壁碳纳米管(CS3)可诱导更多存活的人类间充质干细胞粘附。这些结果使羟基磷灰石-硅多壁碳纳米管成为未来骨植入应用的有希望的复合涂层。(C) 2016爱思唯尔有限公司版权所有。

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