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Characterization and Bone Response of Carbonate-Containing Apatite-Coated Titanium Implants Using an Aqueous Spray Coating

机译:水性喷涂层对含碳酸盐磷灰石涂层钛植入物的表征和骨响应

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摘要

We performed thin carbonate-containing apatite (CA) coating on titanium (Ti) by an aqueous spray coating (ASC) method that consisted of a Ca-CO3-PO4 complex. Two different CA coatings were produced by two different spray amounts and were heat-treated after spraying. We evaluated three-dimensional structures, adhesiveness to Ti, and durability of the CA film. In addition, we performed immersion experiments in simulated body fluid (SBF), and bone responses were evaluated after implantation into a femoral bone defect in rats. The bonding ability of ASC-coated implant into the bone was examined by push-in tests. Unique network structures with small particles were identified on CA coatings. Although heat treatment produced no significant difference in surface morphology, scratch tests revealed that heat treatment improved the adhesion of CA coatings to Ti. Crystal formation progressed on CA-coated specimens, and the sample placement direction influenced crystal formation and growth in SBF immersion. Animal implantation experiments revealed significantly greater bone-to-implant contact ratio and bone mass in both cortical and bone marrow, respectively, four weeks after implantation. Push-in tests suggested that the bonding of the CA coating to Ti is clinically acceptable. Therefore, we conclude that CA coating to Ti by the ASC method would be possible for clinical applications, including dentistry.
机译:我们通过由Ca-CO3-PO4络合物组成的水性喷涂(ASC)方法在钛(Ti)上进行了薄的含碳酸盐磷灰石(CA)涂层。通过两种不同的喷涂量生产出两种不同的CA涂层,并在喷涂后进行热处理。我们评估了三维结构,对Ti的粘附性以及CA膜的耐久性。此外,我们在模拟体液(SBF)中进行了浸入实验,并在植入大鼠股骨缺损后评估了骨反应。通过推入测试检查了ASC涂层植入物与骨骼的结合能力。在CA涂层上鉴定出具有小颗粒的独特网络结构。尽管热处理在表面形貌上没有显着差异,但划痕测试显示热处理可以改善CA涂层对Ti的附着力。在CA涂层的样品上晶体形成进展,并且样品放置方向影响SBF浸没中晶体的形成和生长。动物植入实验表明,植入后四个星期,皮质与骨髓的骨与植入物的接触率和骨量分别明显增加。推入式测试表明,CA涂层与Ti的结合在临床上是可以接受的。因此,我们得出结论,通过ASC方法在Ti上进行CA涂层可用于包括牙科在内的临床应用。

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