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聚醚醚酮GRF30和钛合金Ti6Al4V选择性激光熔化成型在模拟体液和汉克平衡盐溶液中的生物活性

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

作者信息

Prochor Piotr, Mierzejewska Żaneta Anna

机构信息

Institute of Biomedical Engineering, Faculty of Mechanical Engineering, Bialystok University of Technology, 15-351 Białystok, Poland.

出版信息

Materials (Basel). 2021 Apr 19;14(8):2059. doi: 10.3390/ma14082059.

Abstract

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.

摘要

近年来,科学家们确定了骨科植入物制造的两条主要途径:寻找具有最接近天然骨特性的新材料,以减少应力屏蔽效应;或者使用快速成型方法制造个性化适配的植入物几何形状。因此,聚醚醚酮GRF30(PEEK GRF30)和钛6铝4钒选择性激光熔化(Ti6Al4V SLM)等材料备受关注。它们被定义为适合用于植入物的材料,然而,关于它们的生物活性(生物材料最理想的特性之一)的知识仍然不足。使用模拟体液和汉克斯平衡盐溶液,对PEEK GRF30和Ti6Al4V SLM以及作为参考材料的商用Ti6Al4V的生物活性进行了评估。每种材料制备了10个圆柱形样品,并在37℃下每隔2至28天浸入溶液中。对检测表面变化的光学分析表明,在每种材料上2天后就形成了不同形态的晶体。对改变表面的化学成分的进一步分析证实了它们表面形成了磷酸钙层,然而,钙磷比略不同于1.67。根据获得的结果,可以得出结论,PEEK GRF30和Ti6Al4V SLM都具有与Ti6Al4V相当的适当生物活性。

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