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Plasma-sprayed wollastonite coatings for biomedical application

机译:用于生物医学应用的等离子体喷涂的硅灰石涂料

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A new bioceramic coating based on wollastonite was prepared by plasma spraying. The coatings exhibited good mechanical properties. The bond strength of the coating on substrate was about 40 MPa, which is higher than that of HA coatings used in orthopedics and dentistry. The bioactivity of wollastonite coatings was evaluated in vitro and in vivo. After immersed in simulated body fluid, a bone-like apatite layer was formed on the surface of wollastonite coatings. Osteoblast could survive and proliferate on the surface of coatings. After implanted in dog's cortical bone, histological observation demonstrated that bone tissue could extend and grow along the surface of wollastonite coatings. The coating bonded directly to bone without any fibrous tissue, indicating good biocompatibility and bone conductivity. The wollastonite coatings also showed good bone inductivity property, inducing new-bone formation on their surface after implanted in marrow. The results obtained indicated that the plasma-sprayed wollastonite coatings possessed good mechanical properties and excellent bioactivity in vitro and in vivo. It appears that a wollastonite coating may be suitable for the repair and replacement of living bone, especially for load-bearing situations.
机译:通过等离子体喷涂制备基于硅灰石的新型生物陶瓷涂层。涂层表现出良好的机械性能。涂层对底物的粘合强度约为40MPa,其高于骨科和牙科中使用的HA涂层。在体外和体内评估硅铁涂层的生物活性。在浸入模拟体液后,在硅铁矿涂层的表面上形成骨状磷灰石层。成骨细胞可以存活并在涂料表面上增殖。在植入狗的皮质骨后,组织学观察表明,骨组织可以沿硅灰石涂层的表面延伸和生长。涂层直接粘合到没有任何纤维组织的骨中,表明良好的生物相容性和骨电片。硅灰石涂层还显示出良好的骨电感性,在植入骨髓后诱导其表面上的新骨形成。得到的结果表明,血浆喷涂的硅灰石涂层具有良好的机械性能和体外具有优异的生物活性。似乎硅灰石涂层可能适用于固定和更换生物骨骼,特别是用于承载情况。

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