Huan Zhiguang, Chang Jiang, Huang Xiang-Hui
Biomaterials and Tissue Engineering Research Center, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, People's Republic of China.
J Biomed Mater Res B Appl Biomater. 2008 Nov;87(2):387-94. doi: 10.1002/jbm.b.31116.
In this study, a biphasic injectable bone substitute based on beta-dicalcium silicate (Ca(2)SiO(4)) and plaster of Paris (CaSO(4).1/2H(2)O) is presented, and its behavior as cement was studied and compared to that of pure Ca(2)SiO(4) paste. The results demonstrated that the setting time of the workable Ca(2)SiO(4)/CaSO(4).1/2H(2)O pastes was only 15 min, which was significantly reduced as compared to that of the Ca(2)SiO(4) paste (100 min), and the composite showed higher short- and long-term mechanical strength (3.25 and 37.2 MPa, respectively) than those of the Ca(2)SiO(4) paste (0.2 and 24.6 MPa). Similar to the pure Ca(2)SiO(4) paste, the composite paste could induce apatite formation in simulated body fluid within a short period and degrade in Ringer's solution. Moreover, the degradation rate could be adjusted by modifying the content of the plaster within the composite cement. These results suggested that the addition of the plaster significantly improved the self-setting properties of the Ca(2)SiO(4) paste, and the bioactive composite cement could be a prospective candidate for further investigation as self-setting tissue-repairing substitute.
在本研究中,提出了一种基于β-硅酸二钙(Ca₂SiO₄)和熟石膏(CaSO₄·1/2H₂O)的双相可注射骨替代物,并研究了其作为骨水泥的性能,并与纯Ca₂SiO₄糊剂进行了比较。结果表明,可操作的Ca₂SiO₄/CaSO₄·1/2H₂O糊剂的凝固时间仅为15分钟,与Ca₂SiO₄糊剂(100分钟)相比显著缩短,并且该复合材料显示出比Ca₂SiO₄糊剂(分别为0.2和24.6 MPa)更高的短期和长期机械强度(分别为3.25和37.2 MPa)。与纯Ca₂SiO₄糊剂类似,复合糊剂可在短时间内在模拟体液中诱导磷灰石形成,并在林格氏液中降解。此外,降解速率可通过改变复合骨水泥中熟石膏的含量来调节。这些结果表明,熟石膏的添加显著改善了Ca₂SiO₄糊剂的自凝性能,并且这种生物活性复合骨水泥作为自凝组织修复替代物可能是进一步研究的潜在候选材料。