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Preparation and characterization of Sr-Ti-hardystonite (Sr-Ti-HT) nanocomposite for bone repair application

机译:用于骨修复的Sr-Ti-硬硅钙石(Sr-Ti-HT)纳米复合材料的制备与表征

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Objective(s): Hardystonite (HT) is Zn-modified silicate bioceramics with promising results for bone tissue regeneration. However, HT possesses no obvious apatite formation. Thus, in this study we incorporated Sr and Ti into HT to prepare Sr-Ti-hardystonite (Sr-Ti-HT) nanocomposite and evaluated its in vitro bioactivity with the purpose of developing a more bioactive bone substitute material. Materials and methods:The HT and Sr-Ti-HT were prepared by mechanical milling and subsequent heat treatment. Calcium oxide (CaO), zinc oxide (ZnO) and silicon dioxide (SiO2) (all from Merck) were mixed with molar ratio of 2:1:2. The mixture of powders mixture was then milled in a planetary ball mill for 20 h. In the milling run, the ball-to-powder weight ratio was 10:1 and the rotational speed was 200 rpm. After synthesis of HT, 3% nanotitanium dioxide (TiO2, Degussa) and 3% strontium carbonate (SrCO3, Merck) were added to HT and then the mixture was ball milled and calcined at 1150°C for 6 h. Simultaneous thermal analysis (STA), X-ray diffraction (XRD), Transmission electron microscopy (TEM) and Fourier transform infra-red spectroscopy (FT-IR) performed to characterize the powders. Results:XRD and FT-IR confirmed the crystal phase and silicate structure of HT and TEM images demonstrated the nanostructure of powders. Further, Sr-Ti-HT induced apatite formation and showed a higher human mesenchymal stem cell (hMSCs) adhesion and proliferation compared to HT. Conclusion:Our study revealed that Sr-Ti-HT with a nanostructured crystal structure of 50 nm, can be prepared by mechanical activation to use as biomaterials for orthopedic applications.
机译:目标:Hardystonite(HT)是一种Zn改性的硅酸盐生物陶瓷,对骨组织再生具有可喜的成果。然而,HT没有明显的磷灰石形成。因此,在这项研究中,我们将Sr和Ti掺入HT中以制备Sr-Ti-硬硅藻土(Sr-Ti-HT)纳米复合材料,并评估了其体外生物活性,目的是开发更具生物活性的骨替代材料。材料和方法:HT和Sr-Ti-HT通过机械研磨和随后的热处理制备。氧化钙(CaO),氧化锌(ZnO)和二氧化硅(SiO2)(均来自默克公司)以2:1:2的摩尔比混合。然后将粉末混合物的混合物在行星式球磨机中研磨20小时。在研磨过程中,球粉重量比为10:1,转速为200 rpm。合成HT后,将3%纳米二氧化钛(TiO2,Degussa)和3%碳酸锶(SrCO3,Merck)添加到HT中,然后将混合物球磨并在1150°C下煅烧6小时。同时进行热分析(STA),X射线衍射(XRD),透射电子显微镜(TEM)和傅立叶变换红外光谱(FT-IR)来表征粉末。结果:XRD和FT-IR证实了HT和TEM的晶相和硅酸盐结构证实了粉末的纳米结构。此外,与HT相比,Sr-Ti-HT诱导了磷灰石的形成,并显示出更高的人间充质干细胞(hMSCs)粘附和增殖。结论:我们的研究表明,可以通过机械活化制备具有50 nm纳米结构的Sr-Ti-HT,用作骨科应用的生物材料。

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