Rahaman Mohamed N, Li Yadong, Bal B Sonny, Huang Wenhai
Department of Materials Science and Engineering, University of Missouri, Rolla, MO 65409, USA.
J Mater Sci Mater Med. 2008 Jun;19(6):2325-33. doi: 10.1007/s10856-007-3328-7. Epub 2007 Dec 23.
The coating of magnesia partially stabilized zirconia (Mg-PSZ) with a bioactive glass was investigated for enhancing the bioactivity and bone-bonding ability of Mg-PSZ orthopedic implants. Individual coatings of three different bioactive glasses were prepared by depositing a concentrated suspension of the glass particles on Mg-PSZ substrates, followed by sintering at temperatures between 750 degrees C and 850 degrees C. Two silicate-based glass compositions (designated 13-93 and 6P68), and a borosilicate glass composition (H12) were investigated. The microstructure and adhesive strength of the coatings were characterized, and the in vitro bioactivity of the glasses was compared by measuring their conversion kinetics to hydroxyapatite in an aqueous phosphate solution at 37 degrees C. The 6P68 glass provided the highest adhesive strength (40 +/- 2 MPa) but showed very limited bioactivity, whereas the H12 glass had lower adhesive strength (18 +/- 2 MPa) but the highest bioactivity. A functionally graded coating, consisting of a 6P68 interfacial layer and an H12 surface layer, was developed to provide a coating with high adhesive strength coupled with rapid in vitro bioactivity.
研究了用生物活性玻璃包覆部分稳定氧化锆镁(Mg-PSZ),以提高Mg-PSZ骨科植入物的生物活性和骨结合能力。通过将玻璃颗粒的浓缩悬浮液沉积在Mg-PSZ基体上,然后在750℃至850℃之间的温度下烧结,制备了三种不同生物活性玻璃的单独涂层。研究了两种基于硅酸盐的玻璃组合物(分别指定为13-93和6P68)以及一种硼硅酸盐玻璃组合物(H12)。对涂层的微观结构和粘附强度进行了表征,并通过测量它们在37℃的磷酸盐水溶液中转化为羟基磷灰石的动力学,比较了玻璃的体外生物活性。6P68玻璃具有最高的粘附强度(40±2MPa),但生物活性非常有限,而H12玻璃的粘附强度较低(18±2MPa),但生物活性最高。开发了一种功能梯度涂层,由6P68界面层和H12表面层组成,以提供具有高粘附强度和快速体外生物活性的涂层。