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Porous titanium-hydroxyapatite composite coating obtained on titanium by cold gas spray with high bond strength for biomedical applications

机译:多孔钛 - 羟基磷灰石复合涂料通过冷气喷雾获得钛,具有高粘合强度的生物医学应用

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摘要

The lack of bioactivity of titanium (Ti) is one of the main drawbacks for its application in biomedical implants since it can considerable reduce its osseointegration capacities. One strategy to overcome this limitation is the coating of Ti with hydroxyapatite (HA), which presents similar chemical composition than bone. Nonetheless, most of the strategies currently used generate a non-stable coating and may produce the formation of amorphous phases when high temperatures are used. Herein, we proposed to generate a Ti-HA composite coating on Ti surface to improve the stability of the bioactive coating. The coating was produced by cold gas spraying, which uses relatively low temperatures, and compared to a Ti coating. The coating was thoroughly characterized in terms of morphology, roughness, porosity and phase composition. In addition, the coating was mechanically characterized using a tensile loading machine. Finally, biological response was evaluated after seeding SaOS-2 osteoblasts and measuring cell adhesion, proliferation and differentiation. The novel Ti-HA coating presented high porosity and high adhesion and bond strengths. No change in HA phases was observed after coating formation. Moreover, osteoblast-like cells adhered, proliferated and differentiated on Ti-HA coated surfaces suggesting that the novel coating might be a good candidate for biomedical applications.
机译:钛(TI)的缺乏生物活性是其在生物医学植入物中应用的主要缺点之一,因为它可以相当降低其骨整合能力。克服这种限制的一种策略是用羟基磷灰石(HA)涂覆Ti,其呈现与骨骼相似的化学组成。尽管如此,目前使用的大多数策略产生了非稳定的涂层,并且当使用高温时可能产生无定形阶段的形成。在此,我们提出在Ti表面上产生Ti-HA复合涂层,以改善生物活性涂层的稳定性。通过冷气喷射制造涂层,其使用相对低的温度,并与Ti涂层进行比较。在形态,粗糙度,孔隙率和相组合物方面彻底表征涂层。另外,使用拉伸装载机机械表征涂层。最后,在播种SAOS-2骨灌注细胞和测量细胞粘附,增殖和分化后评估生物反应。新型Ti-HA涂层呈现出高孔隙率和高粘合和粘合强度。在涂层形成后观察到HA相的变化。此外,在Ti-HA涂层表面上粘附,增殖和分化的成骨细胞样细胞表明新颖的涂层可能是生物医学应用的良好候选者。

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