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硫酸钙和磷酸钙可注射可降解骨修复水泥的研究。

Study on injectable and degradable cement of calcium sulphate and calcium phosphate for bone repair.

机构信息

The First People's Hospital of Xiaoshang, Hangzhou, 311201, China.

出版信息

J Mater Sci Mater Med. 2010 Feb;21(2):627-34. doi: 10.1007/s10856-009-3885-z. Epub 2009 Oct 13.

Abstract

Injectable calcium sulphate/phosphate cement (CSPC) with degradable characteristic was developed by introduction of calcium sulphate (CS) into calcium phosphate cement (CPC). The setting time, compressive strength, composition, degradation, cells and tissue responses to the CSPC were investigated. The results show that the injectable CSPC with optimum L/P ratio exhibited good injectability, and had suitable setting time and mechanical properties. Furthermore, the CSPC had good degradability and its degradation significantly faster than that of CPC in Tris-HCl solution. Cell culture results indicate that CSPC was biocompatible and could support MG63 cell attachment and proliferation. To investigate the in vivo biocompatibility and osteogenesis, the CSPC were implanted in the bone defects of rabbits. Histological evaluation shows that the introduction of CS into CPC enhanced the efficiency of new bone formation, and CSPC exhibited good biocompatibility, degradability and osteoconductivity with host bone in vivo. It can be concluded that the injectable CSPC had a significant clinical advantage over CPC, and might have potential to be applied in orthopedic, reconstructive and maxillofacial surgery, especially for minimally invasive techniques.

摘要

可降解硫酸钙/磷酸钙(CSPC)水泥是通过在磷酸钙水泥(CPC)中引入硫酸钙(CS)而开发的。研究了 CSPC 的凝固时间、抗压强度、组成、降解、细胞和组织反应。结果表明,具有最佳 L/P 比的可注射 CSPC 表现出良好的可注射性,具有合适的凝固时间和机械性能。此外,CSPC 具有良好的降解性,其在 Tris-HCl 溶液中的降解速度明显快于 CPC。细胞培养结果表明 CSPC 具有生物相容性,能够支持 MG63 细胞的附着和增殖。为了研究体内的生物相容性和成骨作用,将 CSPC 植入兔的骨缺损中。组织学评价表明,将 CS 引入 CPC 可提高新骨形成的效率,CSPC 在体内与宿主骨具有良好的生物相容性、降解性和成骨作用。可以得出结论,与 CPC 相比,可注射 CSPC 具有显著的临床优势,并且可能有潜力应用于矫形、重建和颌面外科,特别是微创技术。

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