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用于生物医学应用的低杨氏模量、高硬度和增强成骨细胞分化的 Ti-Zr-Pd-Si-(Nb) 合金的细胞相容性评估。

Cytocompatibility assessment of Ti-Zr-Pd-Si-(Nb) alloys with low Young's modulus, increased hardness, and enhanced osteoblast differentiation for biomedical applications.

机构信息

Departament de Biologia Cel·lular, Fisiologia i Immunologia, Universitat Autònoma de Barcelona, E-08193, Bellaterra, Spain.

Department of Biomaterials and Tissue Engineering, Institute of Physiology of the Czech Academy of Sciences, 14220 Prague 4, Czech Republic.

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Feb;106(2):834-842. doi: 10.1002/jbm.b.33892. Epub 2017 Apr 8.

Abstract

Ti-based alloys have increased importance for biomedical applications due to their excellent properties. In particular, the two recently developed TiZrPdSi(Nb) alloys, with a predominant β-Ti phase microstructure, have good mechanical properties, such as a relatively low Young's modulus and high hardness. In the present work, the cytocompatibility of these alloys was assessed using human osteoblast-like Saos-2 cells. Cells grown on the alloys showed larger spreading areas (more than twice) and higher vinculin content (nearly 40% increment) when compared with cells grown on glass control surfaces, indicating a better cell adhesion. Moreover, cell proliferation was 18% higher for cells growing on both alloys than for cells growing on glass and polystyrene control surfaces. Osteogenic differentiation was evaluated by quantifying the expression of four osteogenic genes (osteonectin, osteocalcin, osteopontin, and bone sialoprotein), the presence of three osteogenic proteins (alkaline phosphatase, collagen I, and osteocalcin) and the activity of alkaline phosphatase at different time-points. The results demonstrated that TiZrPdSi and TiZrPdSiNb alloys enhance osteoblast differentiation, and that cells grown on TiZrPdSiNb alloy present higher levels of some late osteogenic markers during the first week in culture. These results suggest that the TiZrPdSi(Nb) alloys can be considered as excellent candidates for orthopaedical uses. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 834-842, 2018.

摘要

钛基合金因其优异的性能在生物医学应用中越来越重要。特别是最近开发的两种 TiZrPdSi(Nb) 合金,具有主要的β-Ti 相微观结构,具有良好的机械性能,如相对较低的杨氏模量和较高的硬度。在本工作中,使用人成骨样 Saos-2 细胞评估了这些合金的细胞相容性。与在玻璃对照表面上生长的细胞相比,在合金上生长的细胞表现出更大的铺展面积(超过两倍)和更高的 vinculin 含量(近 40%的增加),表明细胞粘附更好。此外,与在玻璃和聚苯乙烯对照表面上生长的细胞相比,在两种合金上生长的细胞的增殖率高 18%。通过定量测定四个成骨基因(骨桥蛋白、骨钙素、骨涎蛋白和骨唾液蛋白)、三种成骨蛋白(碱性磷酸酶、I 型胶原和骨钙素)的表达以及碱性磷酸酶的活性,评估成骨分化在不同时间点。结果表明,TiZrPdSi 和 TiZrPdSiNb 合金增强了成骨细胞的分化,并且在培养的第一周内,在 TiZrPdSiNb 合金上生长的细胞在某些晚期成骨标志物上呈现出更高的水平。这些结果表明,TiZrPdSi(Nb) 合金可被认为是骨科应用的优秀候选材料。 © 2017 Wiley Periodicals, Inc. J 生物医学材料研究杂志 B:应用生物材料,106B:834-842,2018 年。

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