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Bioactivity of PEEK GRF30 and Ti6Al4V SLM in Simulated Body Fluid and Hank’s Balanced Salt Solution

机译:PEEK GRF30和TI6AL4V SLM在模拟体液中的生物活性和汉克的平衡盐溶液

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摘要

In recent years, scientists have defined two main paths for orthopedic implant fabrication: searching for new materials with properties closest to natural bone in order to reduce the stress-shielding effect or creating individually adapted geometry of the implant with the use and Rapid Prototyping methods. Therefore, materials such as PEEK GRF30 and Ti6Al4V selective laser melting (SLM) are of interest. They are defined as materials suitable for implants, however, the knowledge of their bioactivity, a feature which is one of the most desirable properties of biomaterials, is still insufficient. Using Simulated Body Fluid and Hank’s Balanced Salt Solution, the bioactivity of PEEK GRF30 and Ti6Al4V SLM was assessed, as well as commercial Ti6Al4V as a reference material. Ten cylindrical samples of each material were prepared and immersed in solutions per period from 2 to 28 days at 37 °C. Optical analysis of the changes on the examined surfaces suggested that right after 2-day crystals with different morphologies were formed on each material. Further analysis of the chemical composition of the altered surfaces confirmed the formation of a calcium phosphate layer on them, however, the Ca/P ratio was slightly different from 1.67. On the basis of the obtained results, it can be concluded that both PEEK GRF30 and Ti6Al4V SLM are characterized by appropriate—comparable to Ti6Al4V—bioactivity.
机译:近年来,科学家们已经定义了两个主要的路径,骨科植入物制造:为了减少应力遮挡效应或者创建拥有使用和快速原型法的植入物的单独调节几何形状与最接近天然骨性寻找新的材料。因此,材料如PEEK GRF30和Ti6Al4V合金选择性激光熔化(SLM)是令人感兴趣的。它们被定义为适合用于植入物的材料,然而,它们的生物活性的知识,一个特征是生物材料的最期望的特性之一,仍然是不够的。使用模拟体液和汉克的平衡盐溶液,PEEK GRF30和SLM的Ti6Al4V的生物活性进行了评估,以及商业的Ti6Al4V作为参考材料。制备各材料的十个圆柱的样品和在37浸渍在每个周期从溶液2至28天℃。的被检查表面上的变化的光学分析显示,右上形成每种材料具有不同形态2天的晶体后。该改变的表面的化学组成的进一步分析证实它们磷酸钙层的形成,然而,Ca / P比为1.67略有不同。上所获得的结果的基础上,可以推断这两个PEEK GRF30和Ti6Al4V合金SLM是由适当-媲美的Ti6Al4V-生物活性表征。

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