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钛表面的仿生TiO/壳聚糖/HA涂层:通过中间层次结构薄膜实现生物医学性能改善

Bioinspired TiO/chitosan/HA coatings on Ti surfaces: biomedical improvement by intermediate hierarchical films.

作者信息

Rahnamaee Seyed Yahya, Ahmadi Seyedkhani Shahab, Eslami Saed Aylar, Sadrnezhaad Sayed Khatiboleslam, Seza Ashkan

机构信息

Department of Materials Science and Engineering, Sharif University of Technology, PO Box 11365-9466, Tehran, Iran.

Institute for Nanoscience and Nanotechnology (INST), Sharif University of Technology, PO Box 89694-14588, Tehran, Iran.

出版信息

Biomed Mater. 2022 Apr 13;17(3). doi: 10.1088/1748-605X/ac61fc.

Abstract

The most common reasons for hard-tissue implant failure are structural loosening and prosthetic infections. Hence, in this study, to overcome the first problem, different bioinspired coatings, including dual acid-etched, anodic TiOnanotubes array, anodic hierarchical titanium oxide (HO), micro- and nanostructured hydroxyapatite (HA) layers, and HA/chitosan (HA/CS) nanocomposite, were applied to the titanium alloy surfaces. X-ray diffraction and FTIR analysis demonstrated that theHA/CS nanocomposite formed successfully. The MTT assay showed that all samples had excellent cell viability, with cell proliferation rates ranging from 120% to 150% after 10 days. The HO coating demonstrated superhydrophilicity (≈ 0°) and increased the wettability of the metallic Ti surface by more than 120%. The friction coefficient of all fabricated surfaces was within the range of natural bone's mechanical behavior. The intermediate HO layer increased the adhesion strength of the HA/CS coating by more than 60%. The HO layer caused the mechanical stability of HA/CS during the 1000 m of friction test. The microhardness of HA/CS (22.5 HV) and micro-HA (25.5 HV) coatings was comparable to that of human bone. A mechanism for improved adhesion strength of HA/CS coatings by intermediate oxide layer was proposed.

摘要

硬组织植入物失败的最常见原因是结构松动和假体感染。因此,在本研究中,为了克服第一个问题,将不同的仿生涂层应用于钛合金表面,包括双酸蚀刻、阳极TiO纳米管阵列、阳极分级氧化钛(HO)、微米和纳米结构的羟基磷灰石(HA)层以及HA/壳聚糖(HA/CS)纳米复合材料。X射线衍射和傅里叶变换红外光谱分析表明,HA/CS纳米复合材料成功形成。MTT法显示,所有样品均具有优异的细胞活力,10天后细胞增殖率在120%至150%之间。HO涂层表现出超亲水性(≈0°),并使金属Ti表面的润湿性提高了120%以上。所有制备表面的摩擦系数均在天然骨力学行为范围内。中间的HO层使HA/CS涂层的粘附强度提高了60%以上。HO层在1000米的摩擦试验中使HA/CS具有机械稳定性。HA/CS(22.5 HV)和微HA(25.5 HV)涂层的显微硬度与人骨相当。提出了中间氧化层提高HA/CS涂层粘附强度的机制。

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