Ion Raluca, Drob Silviu Iulian, Ijaz Muhammad Farzik, Vasilescu Cora, Osiceanu Petre, Gordin Doina-Margareta, Cimpean Anisoara, Gloriant Thierry
Department of Biochemistry and Molecular Biology, University of Bucharest, 91-95 Spl. Independentei, Bucharest 050095, Romania.
Romanian Academy, Institute of Physical Chemistry "Ilie Murgulescu", Bucharest 060021, Romania.
Materials (Basel). 2016 Oct 4;9(10):818. doi: 10.3390/ma9100818.
A new superelastic Ti-23Hf-3Mo-4Sn biomedical alloy displaying a particularly large recovery strain was synthesized and characterized in this study. Its native passive film is very thick (18 nm) and contains very protective TiO2, Ti2O3, HfO2, MoO2, and SnO2 oxides (XPS analysis). This alloy revealed nobler electrochemical behavior, more favorable values of the corrosion parameters and open circuit potentials in simulated body fluid in comparison with commercially pure titanium (CP-Ti) and Ti-6Al-4V alloy taken as reference biomaterials in this study. This is due to the favorable influence of the alloying elements Hf, Sn, Mo, which enhance the protective properties of the native passive film on alloy surface. Impedance spectra showed a passive film with two layers, an inner, capacitive, barrier, dense layer and an outer, less insulating, porous layer that confer both high corrosion resistance and bioactivity to the alloy. In vitro tests were carried out in order to evaluate the response of Human Umbilical Vein Endothelial Cells (HUVECs) to Ti-23Hf-3Mo-4Sn alloy in terms of cell viability, cell proliferation, phenotypic marker expression and nitric oxide release. The results indicate a similar level of cytocompatibility with HUVEC cells cultured on Ti-23Hf-3Mo-4Sn substrate and those cultured on the conventional CP-Ti and Ti-6Al-4V metallic materials.
本研究合成并表征了一种新型的超弹性Ti-23Hf-3Mo-4Sn生物医学合金,其具有特别大的回复应变。其原生钝化膜非常厚(18纳米),包含保护性很强的TiO2、Ti2O3、HfO2、MoO2和SnO2氧化物(XPS分析)。与本研究中作为参考生物材料的商业纯钛(CP-Ti)和Ti-6Al-4V合金相比,该合金在模拟体液中表现出更惰性的电化学行为、更有利的腐蚀参数值和开路电位。这是由于合金元素Hf、Sn、Mo的有利影响,它们增强了合金表面原生钝化膜的保护性能。阻抗谱显示钝化膜有两层,内层是电容性的阻挡致密层,外层是绝缘性较差的多孔层,这赋予了合金高耐腐蚀性和生物活性。为了评估人脐静脉内皮细胞(HUVECs)对Ti-23Hf-3Mo-4Sn合金在细胞活力、细胞增殖、表型标志物表达和一氧化氮释放方面的反应,进行了体外试验。结果表明,在Ti-23Hf-3Mo-4Sn基底上培养的HUVEC细胞与在传统CP-Ti和Ti-6Al-4V金属材料上培养的细胞具有相似水平的细胞相容性。