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首页> 外文期刊>Biomaterials >Multifunctional Ti-(Ca,Zr)-(C,N,O,P) films for load-bearing implants.
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Multifunctional Ti-(Ca,Zr)-(C,N,O,P) films for load-bearing implants.

机译:多功能Ti-(Ca,Zr)-(C,N,O,P)薄膜,用于承重植入物。

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Films of Ti-Ca-P-C-O-(N), Ti-Ca-C-O-(N) and Ti-Zr-C-O-(N) were deposited by DC magnetron sputtering or ion implantation-assisted magnetron sputtering of composite targets TiC0.5 + 10%Ca10(PO4)6(OH)2, TiC0.5 + 20%(CaO + TiO2) and TiC0.5 + 10%ZrO2 in an Ar atmosphere or reactively in a gaseous mixture of Ar + 14%N2. The microstructure, elemental and phase composition of films were studied by means of X-ray diffraction, transmission electron microscopy, scanning force microscopy, X-ray photoelectron spectroscopy and energy-dispersive X-ray spectroscopy. The films were characterized in terms of their hardness, Young's modulus, elastic recovery, adhesion strength, and friction and wear both in air and under physiological solution. Particular attention was paid to the analysis of deformation and fracture for various film/substrate systems during scratch testing. The biocompatibility of the films was evaluated by both in vitro and in vivo experiments. In vitro studies involved the investigation of adhesion, spreading, and proliferation of MC3T3-E1 osteoblasts and IAR-2 epithelial cells, morphometric analysis, actin cytoskeleton, focal contacts staining, alkaline phosphatase activity and von Kossa staining of osteoblastic culture. Cell culture experiments demonstrated an increase of osteoblastic proliferation on Ca- and P-incorporated films. In vivo studies were fulfilled by subcutaneous implantation of Teflon plates coated with the tested films in mice and analysis of the population of adherent cells on their surfaces. The results obtained show that multicomponent nanostructured Ti-(Ca, Zr)-(C, N, O, P) films possess a combination of high hardness, wear resistance and adhesion strength, reduced Young's modulus, low friction coefficient and high biocompatibility.
机译:通过直流磁控溅射或离子注入辅助磁控溅射复合靶材TiC0.5沉积Ti-Ca-PCO-(N),Ti-Ca-CO-(N)和Ti-Zr-CO-(N)膜在Ar气氛中或在Ar + 14%N2的气态混合物中,+ 10%Ca10(PO4)6(OH)2,TiC0.5 + 20%(CaO + TiO2)和TiC0.5 + 10%ZrO2。通过X射线衍射,透射电子显微镜,扫描力显微镜,X射线光电子能谱和能量色散X射线能谱研究了薄膜的微观结构,元素组成和相组成。这些膜的特征在于它们的硬度,杨氏模量,弹性回复率,粘合强度以及在空气中和在生理溶液中的摩擦和磨损。在划痕测试期间,应特别注意各种膜/基材系统的变形和断裂分析。通过体外和体内实验评估膜的生物相容性。体外研究涉及对成骨细胞培养的MC3T3-E1成骨细胞和IAR-2上皮细胞的粘附,扩散和增殖,形态分析,肌动蛋白细胞骨架,局部接触染色,碱性磷酸酶活性和von Kossa染色的研究。细胞培养实验表明,在掺有Ca和P的薄膜上成骨细胞增殖增加。通过在小鼠中皮下植入涂有被测薄膜的特氟龙板并分析其表面上的粘附细胞的数量来完成体内研究。所得结果表明,多组分纳米结构Ti-(Ca,Zr)-(C,N,O,P)膜具有高硬度,耐磨性和粘合强度,降低的杨氏模量,低摩擦系数和高生物相容性的组合。

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