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首页> 外文期刊>Biomedical materials >Synthesis and mechanical evaluation of Sr-doped calcium-zirconium-silicate (baghdadite) and its impact on osteoblast cell proliferation and ALP activity
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Synthesis and mechanical evaluation of Sr-doped calcium-zirconium-silicate (baghdadite) and its impact on osteoblast cell proliferation and ALP activity

机译:掺锶锶钙锆硅酸盐(巴格达)的合成及其力学性能及其对成骨细胞增殖和ALP活性的影响

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For the first time the successful preparation of Sr doped baghdadite (Ca(3-x)Sr(x)ZrSi(2)O(9)x = 0.1 and 0.75) is shown. Sr-doped as well as pure baghdadite are prepared via a versatile solid-state synthesis and conventional sintering at 1400 circle C. XRD measurements and crystal structure refinements reveal that a substitution of Ca atoms with Sr and a high purity (>99%) is achieved. The physical, mechanical, and biological properties of these novel bioceramics are presented in relation to the dopant concentration. Incorporating Sr into the baghdadite crystal caused only minor changes to the grain size and the mechanical properties. The characteristic strength ranges from 145 to 168 MPa and a Weibull modulus of 4.9 to 9.2 is observed. Other mechanical properties like fracture toughness and hardness vary from 1.23 +/- 0.07 MPam(0.5) to 1.31 +/- 0.12 MPam(0.5) and 7.3 +/- 0.6 GPa to 8.0 +/- 0.7 GPa, respectively. The in vitro cellular response of human osteoblasts showed an increase in the cell proliferation and a significantly higher alkaline phosphatase (ALP) activity with an increase in the Sr content. From the improved biological properties and the suitable mechanical performance we conclude that this material is a highly promising candidate for bone replacement material and bioactive implant coatings.
机译:首次显示成功制备了掺Sr的巴格达石(Ca(3-x)Sr(x)ZrSi(2)O(9)x = 0.1和0.75)。通过多功能固相合成和常规烧结在1400°C下制备掺Sr以及纯巴格达。XRD测量和晶体结构细化显示,Ca原子被Sr和高纯度(> 99%)取代了。实现。这些新型生物陶瓷的物理,机械和生物学特性与掺杂剂浓度有关。将Sr掺入到Bagddadite晶体中只会引起晶粒尺寸和机械性能的微小变化。特征强度范围为145至168 MPa,观察到的威布尔模量为4.9至9.2。其他机械性能(如断裂韧性和硬度)分别从1.23 +/- 0.07 MPam(0.5)到1.31 +/- 0.12 MPam(0.5)和7.3 +/- 0.6 GPa至8.0 +/- 0.7 GPa。人成骨细胞的体外细胞应答显示,随着Sr含量的增加,细胞增殖增加,碱性磷酸酶(ALP)活性明显提高。从改善的生物学特性和合适的机械性能中,我们得出结论,这种材料是骨替代材料和生物活性植入物涂层的极有希望的候选者。

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