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首页> 外文期刊>Applied Surface Science >The effect of graphene oxide on surface features, biological performance and bio-stability of calcium phosphate coating applied by pulse electrochemical deposition
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The effect of graphene oxide on surface features, biological performance and bio-stability of calcium phosphate coating applied by pulse electrochemical deposition

机译:氧化石墨烯对脉冲电化学沉积施加的磷酸钙涂层的表面特征,生物学性能和生物稳定性的影响

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摘要

In the current study, the effect of second phase of graphene oxide (GO) on the surface features and biological behavior of calcium phosphate (CaP) coating was evaluated. To do so, the GO-CaP composite coating was applied on TiO2 nanotubular arrays using pulse electrochemical deposition. The SEM and AFM images showed that, the CaP-based coating with uniform and refined microstructure could be formed through its compositing with GO sheets. The biological assessment of the coatings was also conducted by cell culture test and MTT assay. Based on findings, the GO-CaP coating showed the better biocompatibility compared to the CaP coating. This could be owing to the fact that the composite coating provided the lower roughness, moderately wettable surface with a contact angle of 23.5 degrees +/- 2.6 degrees and the higher stability in the biological environments because of being involved with only the stable phase of CHA. However, in the CaP coating, spreading of cells could be limited by the plate-like crystals with larger size. The higher solubility of the CaP coating in the cell culture medium possibly owing to the existence of some metastable CaP phases like OCP in addition to the dominant phase of CHA in this coating could be another reason for its less biocompatibility. At last, the CaP coating showed the higher apatite-forming ability in SBF solution after its compositing with GO. (C) 2017 Elsevier B.V. All rights reserved.
机译:在当前的研究中,评估了氧化石墨烯(GO)的第二相对磷酸钙(CaP)涂层的表面特征和生物学行为的影响。为此,使用脉冲电化学沉积将GO-CaP复合涂层应用于TiO2纳米管阵列。 SEM和AFM图像表明,通过与GO片材复合可以形成具有均匀细化的CaP基涂层。还通过细胞培养试验和MTT测定法对涂层进行了生物学评估。基于发现,GO-CaP涂层与CaP涂层相比具有更好的生物相容性。这可能是由于以下事实:复合涂层由于仅涉及CHA的稳定相,因此具有较低的粗糙度,适度可润湿的表面,接触角为23.5度+/- 2.6度,并且在生物环境中具有较高的稳定性。 。但是,在CaP涂层中,细胞的扩散可能会受到较大尺寸的板状晶体的限制。 CaP涂层在细胞培养基中的溶解度较高,这可能是由于该涂层中CHA的显性相以及OCP等亚稳态CaP相的存在所致,这可能是其生物相容性较差的另一个原因。最后,CaP涂层与GO复合后在SBF溶液中显示出更高的磷灰石形成能力。 (C)2017 Elsevier B.V.保留所有权利。

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