Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China.
J Mater Sci Mater Med. 2010 Jul;21(7):2151-63. doi: 10.1007/s10856-010-4070-0. Epub 2010 Apr 16.
Biocorrosion properties and blood- and cell compatibility of pure iron were studied in comparison with 316L stainless steel and Mg-Mn-Zn magnesium alloy to reveal the possibility of pure iron as a biodegradable biomaterial. Both electrochemical and weight loss tests showed that pure iron showed a relatively high corrosion rate at the first several days and then decreased to a low level during the following immersion due to the formation of phosphates on the surface. However, the corrosion of pure iron did not cause significant increase in pH value to the solution. In comparison with 316L and Mg-Mn-Zn alloy, the pure iron exhibited biodegradable property in a moderate corrosion rate. Pure iron possessed similar dynamic blood clotting time, prothrombin time and plasma recalcification time to 316L and Mg-Mn-Zn alloy, but a lower hemolysis ratio and a significant lower number density of adhered platelets. MTT results revealed that the extract except the one with 25% 24 h extract actually displayed toxicity to cells and the toxicity increased with the increasing of the iron ion concentration and the incubation time. It was thought there should be an iron ion concentration threshold in the effect of iron ion on the cell toxicity.
研究了纯铁与 316L 不锈钢和 Mg-Mn-Zn 镁合金相比的生物腐蚀性和血液及细胞相容性,以揭示纯铁作为可生物降解生物材料的可能性。电化学和失重测试表明,纯铁在最初几天表现出相对较高的腐蚀速率,然后由于表面形成磷酸盐,腐蚀速率在随后的浸泡中降低到较低水平。然而,纯铁的腐蚀并没有导致溶液的 pH 值显著升高。与 316L 和 Mg-Mn-Zn 合金相比,纯铁在中等腐蚀速率下表现出可生物降解性。纯铁的动态凝血时间、凝血酶原时间和血浆再钙化时间与 316L 和 Mg-Mn-Zn 合金相似,但溶血率较低,粘附血小板的数量密度显著较低。MTT 结果表明,除了 25%24 h 浸提液之外的浸提液实际上对细胞具有毒性,且毒性随着铁离子浓度和孵育时间的增加而增加。人们认为,铁离子对细胞毒性的影响应该存在一个铁离子浓度阈值。