Huan Zhiguang, Chang Jiang
Biomaterials and Tissue Engineering Research Center, Shanghai Institute of Ceramics, Chinese Academy of Sciences, 1295 Dingxi Road, Shanghai 200050, China.
Acta Biomater. 2007 Nov;3(6):952-60. doi: 10.1016/j.actbio.2007.05.003. Epub 2007 Jun 21.
Self-setting biomaterials are widely used for tissue repair and regeneration. Calcium sulfate hemihydrate has been used for many years as a self-setting biomaterial due to its good setting properties. However, too fast a degradation rate and lack of bioactivity have limited its application in orthopaedic field. Herein, tricalcium silicate was introduced into calcium sulfate hemihydrate (CaSO(4).1/2H(2)O) to form a calcium sulfate hemihydrate-based composite, and its behavior as a cement was studied in comparison with pure calcium sulfate hemihydrate. The results indicated that the workability and setting time of the composite pastes are higher than those of pure CaSO(4).1/2H(2)O, and the composite pastes showed much better short- and long-term mechanical properties than those of pure CaSO(4).1/2H(2)O. Moreover, the biphasic specimens showed significantly improved bioactivity and degradability compared with those of pure CaSO(4).1/2H(2)O, indicating that the composite cements might have a significant clinical advantage over the traditional CaSO(4).1/2H(2)O cement.
自固化生物材料被广泛用于组织修复和再生。半水硫酸钙由于其良好的固化性能,作为一种自固化生物材料已被使用多年。然而,过快的降解速率和缺乏生物活性限制了它在骨科领域的应用。在此,将硅酸三钙引入半水硫酸钙(CaSO₄·1/2H₂O)中以形成基于半水硫酸钙的复合材料,并与纯半水硫酸钙相比,研究了其作为骨水泥的性能。结果表明,复合糊剂的工作性能和凝固时间高于纯CaSO₄·1/2H₂O,并且复合糊剂在短期和长期力学性能方面均比纯CaSO₄·1/2H₂O好得多。此外,与纯CaSO₄·1/2H₂O相比,双相标本显示出显著改善的生物活性和降解性,表明复合骨水泥可能比传统的CaSO₄·1/2H₂O骨水泥具有显著的临床优势。