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Sol-gel coatings for protection and bioactivation of metals used in orthopaedic devices

机译:用于骨科器械中金属保护和生物活化的溶胶-凝胶涂料

摘要

The aim of this work is the production and characterisation of sol-gel coatings for protection and bioactivation of metals used as standard surgical implant materials, such as stainless steel 316 L (ASTM F138), Co based alloys (ASTM F75) and titanium alloy Ti-6A1-4V (ASTM F67). These films should both prevent degradation of the substrates by wear or corrosion, and bioactivate the material for inducing the formation of a hydroxyapatite (HA) rich layer onto the material surface, thereby permitting a natural bonding to living tissues. Formation of HA layers can be observed on performing in vitro tests by soaking the material in simulated body solutions. The work describes the development of coatings containing bioactive glass and glass-ceramic particles in hybrid methyl-triethoxysilane (MTES) and tetraethylorthosilicate (TEOS) acidic sol, applied by dip-coating to surgical alloys, AISI 316 L, ASTM F75 and ASTM 67, with the aim of accomplishing both high corrosion resistance of the metal in the body environment and adhesion of the implant to the surrounding tissue. The performance of the coated metal was evaluated in vitro by electrochemical techniques including potentiodynamic polarisation curves and electrochemical impedance spectroscopy, to follow the formation of hydroxyapatite on the surface, as well as the in vitro release of ions by plasma atomic emission spectroscopy (ICP-MS) after up to one year of immersion. In vivo behaviour was evaluated by subcutaneous tests and endomedullar implantation in Hokaido rats to study possible rejection reactions and natural bonding to living tissue.
机译:这项工作的目的是生产和表征用于保护和生物活化用作标准外科植入材料的金属的溶胶-凝胶涂层,例如不锈钢316 L(ASTM F138),钴基合金(ASTM F75)和钛合金Ti -6A1-4V(ASTM F67)。这些薄膜既应防止基材因磨损或腐蚀而降解,又应生物活化材料以诱导在材料表面上形成富含羟基磷灰石(HA)的层,从而实现与活体组织的自然结合。通过将材料浸泡在模拟的人体溶液中,可以在进行体外测试时观察到HA层的形成。这项工作描述了在混合甲基三乙氧基硅烷(MTES)和原硅酸四乙酯(TEOS)酸性溶胶中含有生物活性玻璃和玻璃陶瓷颗粒的涂料的开发,该涂料通过浸涂法应用于外科手术合金AISI 316 L,ASTM F75和ASTM 67,目的是实现金属在人体环境中的高耐腐蚀性以及植入物对周围组织的粘附力。通过电化学技术在体外评估涂层金属的性能,包括电位动力学极化曲线和电化学阻抗谱,以追踪表面羟基磷灰石的形成,以及通过等离子体原子发射光谱法(ICP-MS)体外释放离子),最多可浸泡一年。通过皮下试验和髓内植入法在北海道大鼠中评估体内行为,以研究可能的排斥反应和与活组织的天然结合。

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