首页> 美国卫生研究院文献>Materials >Biomimetic Multispiked Connecting Ti-Alloy Scaffold Prototype for Entirely-Cementless Resurfacing Arthroplasty Endoprostheses—Exemplary Results of Implantation of the Ca-P Surface-Modified Scaffold Prototypes in Animal Model and Osteoblast Culture Evaluation
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Biomimetic Multispiked Connecting Ti-Alloy Scaffold Prototype for Entirely-Cementless Resurfacing Arthroplasty Endoprostheses—Exemplary Results of Implantation of the Ca-P Surface-Modified Scaffold Prototypes in Animal Model and Osteoblast Culture Evaluation

机译:仿生多刺连接Ti合金支架原型用于完全非骨水泥表面置换关节内覆膜-在动物模型和成骨细胞培养评估中植入Ca-P表面修饰支架原型的示例性结果

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摘要

We present here—designed, manufactured, and tested by our research team—the Ti-alloy prototype of the multispiked connecting scaffold (MSC-Scaffold) interfacing the components of resurfacing arthroplasty (RA) endoprostheses with bone. The spikes of the MSC-Scaffold prototype mimic the interdigitations of the articular subchondral bone, which is the natural biostructure interfacing the articular cartilage with the periarticular trabecular bone. To enhance the osteoinduction/osteointegration potential of the MSC-Scaffold, the attempts to modify its bone contacting surfaces by the process of electrochemical cathodic deposition of Ca-P was performed with further immersion of the MSC-Scaffold prototypes in SBF in order to transform the amorphous calcium-phosphate coating in hydroxyapatite-like (HA-like) coating. The pilot experimental study of biointegration of unmodified and Ca-P surface-modified MSC-Scaffold prototypes was conducted in an animal model (swine) and in osteoblast cell culture. On the basis of a microscope-histological method the biointegration was proven by the presence of trabeculae in the interspike spaces of the MSC-Scaffold prototype on longitudinal and cross-sections of bone-implant specimens. The percentage of trabeculae in the area between the spikes of specimen containing Ca-P surface modified scaffold prototype observed in microCT reconstructions of the explanted joints was visibly higher than in the case of unmodified MSC-Scaffold prototypes. Significantly higher Alkaline Phosphatase (ALP) activity and the cellular proliferation in the case of Ca-P-modified MSC-Scaffold pre-prototypes, in comparison with unmodified pre-prototypes, was found in osteoblast cell cultures. The obtained results of experimental implantation in an animal model and osteoblast cell culture evaluations of Ca-P surface-modified and non-modified biomimetic MSC-Scaffold prototypes for biomimetic entirely-cementless RA endoprostheses indicate the enhancement of the osteoinduction/osteointegration potential by the Ca-P surface modification of the Ti-alloy MSC-Scaffold prototype. Planned further research on the prototype of this biomimetic MSC-Scaffold for a new generation of RA endoprostheses is also given.
机译:我们在这里(由我们的研究团队设计,制造和测试)这里是多钉连接支架(MSC-Scaffold)的钛合金原型,该支架将人工关节置换(RA)内假体的组件与骨骼连接在一起。 MSC-脚手架原型的尖峰模仿关节软骨下骨的相互交叉,这是使关节软骨与关节周围小梁骨交界的天然生物结构。为了增强MSC-Scaffold的骨诱导/整骨潜能,尝试通过Ca-P电化学阴极沉积过程来修饰其骨接触表面,并将MSC-Scaffold原型进一步浸入SBF中,以转化羟基磷灰石样(HA样)涂层中的无定形磷酸钙涂层。在动物模型(猪)和成骨细胞培养物中进行了未修饰和Ca-P表面修饰的MSC-Scaffold原型生物整合的初步实验研究。在显微镜-组织学方法的基础上,通过在骨植入物标本的纵向和横截面上的MSC脚手架原型的钉间空间中存在小梁,证明了生物整合。在外植关节的microCT重建中观察到,在包含Ca-P表面修饰的支架原型的标本的尖峰之间的区域中,小梁的百分比明显高于未修饰的MSC-Scaffold原型。在成骨细胞培养物中,与未修饰的原型相比,在Ca-P修饰的MSC-Scaffold原型中,碱性磷酸酶(ALP)活性和细胞增殖显着提高。动物模型实验植入的获得结果以及Ca-P表面修饰和未修饰的仿生MSC-Scaffold原型用于仿生完全无水泥RA内假体的成骨细胞培养评估表明,Ca增强了骨诱导/成骨潜能Ti合金MSC-脚手架原型的-P表面改性。还计划对该仿生MSC脚手架的原型进行进一步的研究,以用于新一代RA内假体。

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