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含钙/磷的微弧氧化涂层植入骨组织再生的潜力及生物学特性

The Potential of Calcium/Phosphate Containing MAO Implanted in Bone Tissue Regeneration and Biological Characteristics.

作者信息

Jian Shun-Yi, Aktug Salim Levent, Huang Hsuan-Ti, Ho Cheng-Jung, Lin Sung-Yen, Chen Chung-Hwan, Wang Min-Wen, Tseng Chun-Chieh

机构信息

Department of Chemical & Materials Engineering, Chung Cheng Institute of Technology, National Defense University, Taoyuan 330, Taiwan.

System Engineering and Technology Program, National Chiao Tung University, Hsin-Chu 300, Taiwan.

出版信息

Int J Mol Sci. 2021 Apr 29;22(9):4706. doi: 10.3390/ijms22094706.

Abstract

Micro arc oxidation (MAO) is a prominent surface treatment to form bioceramic coating layers with beneficial physical, chemical, and biological properties on the metal substrates for biomaterial applications. In this study, MAO treatment has been performed to modify the surface characteristics of AZ31 Mg alloy to enhance the biocompatibility and corrosion resistance for implant applications by using an electrolytic mixture of Ca(PO) and CHNO (EDTA) in the solutions. For this purpose, the calcium phosphate (Ca-P) containing thin film was successfully fabricated on the surface of the implant material. After in-vivo implantation into the rabbit bone for four weeks, the apparent growth of soft tissues and bone healing effects have been documented. The morphology, microstructure, chemical composition, and phase structures of the coating were identified by SEM, XPS, and XRD. The corrosion resistance of the coating was analyzed by polarization and salt spray test. The coatings consist of Ca-P compounds continuously have proliferation activity and show better corrosion resistance and lower roughness in comparison to mere MAO coated AZ31. The corrosion current density decreased to approximately 2.81 × 10 A/cm and roughness was reduced to 0.622 μm. Thus, based on the results, it was anticipated that the development of degradable materials and implants would be feasible using this method. This study aims to fabricate MAO coatings for orthopedic magnesium implants that can enhance bioactivity, biocompatibility, and prevent additional surgery and implant-related infections to be used in clinical applications.

摘要

微弧氧化(MAO)是一种卓越的表面处理技术,可在金属基体上形成具有有益物理、化学和生物学特性的生物陶瓷涂层,用于生物材料应用。在本研究中,通过在溶液中使用Ca(PO)和CHNO(乙二胺四乙酸,EDTA)的电解混合物进行MAO处理,以改变AZ31镁合金的表面特性,从而提高其在植入应用中的生物相容性和耐腐蚀性。为此,在植入材料表面成功制备了含磷酸钙(Ca-P)的薄膜。将其植入兔骨体内四周后,记录到了软组织的明显生长和骨愈合效果。通过扫描电子显微镜(SEM)、X射线光电子能谱(XPS)和X射线衍射(XRD)对涂层的形貌、微观结构、化学成分和相结构进行了鉴定。通过极化和盐雾试验分析了涂层的耐腐蚀性。与单纯MAO涂层的AZ31相比,由Ca-P化合物组成的涂层持续具有增殖活性,表现出更好的耐腐蚀性和更低的粗糙度。腐蚀电流密度降至约2.81×10 A/cm,粗糙度降至0.622μm。因此,基于这些结果,预计使用该方法开发可降解材料和植入物将是可行的。本研究旨在为骨科镁植入物制备MAO涂层,以增强生物活性、生物相容性,并防止额外的手术和植入相关感染,从而用于临床应用。

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