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Development of β Type Ti23Mo-45S5 Bioglass Nanocomposites for Dental Applications

机译:牙科用β型Ti23Mo-45S5生物玻璃纳米复合材料的研制

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摘要

Titanium β-type alloys attract attention as biomaterials for dental applications. The aim of this work was the synthesis of nanostructured β type Ti23Mo-x wt % 45S5 Bioglass (x = 0, 3 and 10) composites by mechanical alloying and powder metallurgy methods and their characterization. The crystallization of the amorphous material upon annealing led to the formation of a nanostructured β type Ti23Mo alloy with a grain size of approximately 40 nm. With the increase of the 45S5 Bioglass contents in Ti23Mo, nanocomposite increase of the α-phase is noticeable. The electrochemical treatment in phosphoric acid electrolyte resulted in a porous surface, followed by bioactive ceramic Ca-P deposition. Corrosion resistance potentiodynamic testing in Ringer solution at 37 °C showed a positive effect of porosity and Ca-P deposition on nanostructured Ti23Mo 3 wt % 45S5 Bioglass nanocomposite. The contact angles of glycerol on the nanostructured Ti23Mo alloy were determined and show visible decrease for bulk Ti23Mo 3 wt % 45S5 Bioglass and etched Ti23Mo 3 wt % 45S5 Bioglass nanocomposites. In vitro tests culture of normal human osteoblast cells showed very good cell proliferation, colonization, and multilayering. The present study demonstrated that porous Ti23Mo 3 wt % 45S5 Bioglass nanocomposite is a promising biomaterial for bone tissue engineering.
机译:钛β型合金作为牙科应用的生物材料引起了人们的关注。这项工作的目的是通过机械合金化和粉末冶金方法合成纳米结构的β型Ti23Mo-x wt%45S5生物玻璃(x = 0、3和10)复合材料及其表征。退火后非晶态材料的结晶导致形成晶粒尺寸约为40 nm的纳米结构β型Ti23Mo合金。随着Ti23Mo中45S5生物玻璃含量的增加,α相的纳米复合材料明显增加。在磷酸电解质中进行电化学处理会形成多孔表面,然后进行生物活性陶瓷Ca-P沉积。在37℃的林格溶液中进行的耐腐蚀电位动力学测试表明,孔隙率和Ca-P沉积对纳米结构的Ti23Mo 3 wt%45S5生物玻璃纳米复合材料具有积极的影响。确定了甘油在纳米结构的Ti23Mo合金上的接触角,并显示出大量的Ti23Mo 3 wt%45S5生物玻璃和蚀刻的Ti23Mo 3 wt%45S5生物玻璃纳米复合材料的可见减少。在体外测试中,正常人成骨细胞的培养显示出非常好的细胞增殖,定植和多层化。本研究表明,多孔的Ti23Mo 3 wt%45S5生物玻璃纳米复合材料是用于骨组织工程的有前途的生物材料。

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