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基于β-磷酸三钙-磷酸二氢钙一水合物复合水泥体系的新型生物活性复合骨水泥。

Novel bioactive composite bone cements based on the beta-tricalcium phosphate-monocalcium phosphate monohydrate composite cement system.

作者信息

Huan Zhiguang, Chang Jiang

机构信息

Biomaterials and Tissue Engineering Research Center, Shanghai Institute of Ceramics, Chinese Academy of Sciences, 1295 Dingxi Road, Shanghai 200050, People's Republic of China.

出版信息

Acta Biomater. 2009 May;5(4):1253-64. doi: 10.1016/j.actbio.2008.10.006. Epub 2008 Oct 22.

Abstract

Bioactive composite bone cements were obtained by incorporation of tricalcium silicate (Ca3SiO5, C3S) into a brushite bone cement composed of beta-tricalcium phosphate [beta-Ca3(PO4)2, beta-TCP] and monocalcium phosphate monohydrate [Ca(H2PO4)2.H2O, MCPM], and the properties of the new cements were studied and compared with pure brushite cement. The results indicated that the injectability, setting time and short- and long-term mechanical strength of the material are higher than those of pure brushite cement, and the compressive strength of the TCP/MCPM/C3S composite paste increased with increasing aging time. Moreover, the TCP/MCPM/C3S specimens showed significantly improved in vitro bioactivity in simulated body fluid and similar degradability in phosphate-buffered saline as compared with brushite cement. Additionally, the reacted TCP/MCPM/C3S paste possesses the ability to stimulate osteoblast proliferation and promote osteoblastic differentiation of the bone marrow stromal cells. The results indicated that the TCP/MCPM/C3S cements may be used as a bioactive material for bone regeneration, and might have significant clinical advantage over the traditional beta-TCP/MCPM brushite cement.

摘要

通过将硅酸三钙(Ca3SiO5,C3S)掺入由β-磷酸三钙[β-Ca3(PO4)2,β-TCP]和一水磷酸二氢钙[Ca(H2PO4)2·H2O,MCPM]组成的透钙磷石骨水泥中,制备了生物活性复合骨水泥,并对新型水泥的性能进行了研究,并与纯透钙磷石水泥进行了比较。结果表明,该材料的可注射性、凝固时间以及短期和长期机械强度均高于纯透钙磷石水泥,且TCP/MCPM/C3S复合糊剂的抗压强度随老化时间的增加而提高。此外,与透钙磷石水泥相比,TCP/MCPM/C3S标本在模拟体液中的体外生物活性显著提高,在磷酸盐缓冲盐水中的降解性相似。此外,反应后的TCP/MCPM/C3S糊剂具有刺激成骨细胞增殖和促进骨髓基质细胞成骨分化的能力。结果表明,TCP/MCPM/C3S水泥可作为骨再生的生物活性材料,与传统的β-TCP/MCPM透钙磷石水泥相比可能具有显著的临床优势。

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