Nguyen Van Tai, Wong Xavier Pei-Chun, Song Sin-Mao, Tsai Pei-Hua, Jang Jason Shian-Ching, Tsao I-Yu, Lin Che-Hsin, Nguyen Van Cuong
Department of Mechanical Engineering, National Central University, Chung-Li 32001, Taiwan.
Department of Mechanical Engineering, Can Tho University, 3/2, Can Tho 900000, Viet Nam.
J Funct Biomater. 2020 May 1;11(2):28. doi: 10.3390/jfb11020028.
A series of biocompatible high-porosity (up to 72.4%) TiZr-based porous bulk metallic glass (BMG) scaffolds were successfully fabricated by hot pressing a mixture of toxic element-free TiZr-based BMG powder and an Al particle space holder. The morphology of the fabricated scaffolds was similar to that of human bones, with pore sizes ranging from 75 to 250 μm. X-ray diffraction patterns and transmission electron microscopy images indicated that the amorphous structure of the TiZr-based BMG scaffolds remained in the amorphous state after hot pressing. Noncytotoxicity and extracellular calcium deposition of the TiZr-based BMG scaffolds at porosities of 32.8%, 48.8%, and 64.0% were examined by using the direct contact method. The results showed that the BMG scaffolds possess high cell viability and extracellular calcium deposition with average cell survival and deposition rates of approximately 170.1% and 130.9%, respectively. In addition, the resulting TiZr-based BMG scaffolds exhibited a considerable reduction in Young's moduli from 56.4 to 2.3 GPa, compressive strength from 979 to 19 MPa, and bending strength from 157 MPa to 49 MPa when the porosity was gradually increased from 2.0% to 72.4%. Based on the aforementioned specific characteristics, TiZr-based BMG scaffolds can be considered as potential candidates for biomedical applications in the human body.
通过热压无毒元素的TiZr基块状金属玻璃(BMG)粉末与铝颗粒空间保持剂的混合物,成功制备了一系列具有生物相容性的高孔隙率(高达72.4%)的TiZr基多孔块状金属玻璃支架。所制备支架的形态与人体骨骼相似,孔径范围为75至250μm。X射线衍射图谱和透射电子显微镜图像表明,TiZr基BMG支架的非晶结构在热压后仍保持非晶态。采用直接接触法研究了孔隙率为32.8%、48.8%和64.0%的TiZr基BMG支架的非细胞毒性和细胞外钙沉积。结果表明,BMG支架具有较高的细胞活力和细胞外钙沉积,平均细胞存活率和沉积率分别约为170.1%和130.9%。此外,当孔隙率从2.0%逐渐增加到72.4%时,所得TiZr基BMG支架的杨氏模量从56.4 GPa显著降低至2.3 GPa,抗压强度从979 MPa降低至19 MPa,抗弯强度从157 MPa降低至49 MPa。基于上述特定特性,TiZr基BMG支架可被视为人体生物医学应用的潜在候选材料。