Department of Orthopaedic Surgery, Graduate School of Medicine, Kyoto University, 54 Kawahara-cho, Shougoin, Sakyou-ku, Kyoto, 606-8507, Japan,
J Mater Sci Mater Med. 2014 Jun;25(6):1505-17. doi: 10.1007/s10856-014-5181-9. Epub 2014 Mar 27.
Two novel calcium phosphate cements (CPC) have been developed using calcium sodium phosphate (CSP) as the main ingredient. The first of these cements, labeled CAC, contained CSP, α-tricalcium phosphate (TCP), and anhydrous citric acid, whereas the second, labeled CABC, contained CSP, α-TCP, β-TCP, and anhydrous citric acid. Biopex(®)-R (PENTAX, Tokyo, Japan), which is a commercially available CPC (Com-CPC), and OSferion(®) (Olympus Terumo Biomaterials Corp., Tokyo, Japan), which is a commercially available porous β-TCP, were used as reference controls for analysis. In vitro analysis showed that CABC set in 5.7 ± 0.3 min at 22 °C and had a compressive strength of 86.0 ± 9.7 MPa after 5 days. Furthermore, this material had a compressive strength of 26.7 ± 3.7 MPa after 2 h in physiologic saline. CAC showed a statistically significantly lower compressive strength in the presence of physiologic saline and statistically significantly longer setting times than those of CABC. CABC and CAC exhibited apatite-forming abilities in simulated body fluid that were faster than that of Com-CPC. Samples of the materials were implanted into the femoral condyles of rabbits for in vivo analysis, and subsequent histological examinations revealed that CABC exhibited superior osteoconductivity and equivalent bioresorbability compared with Com-CPC, as well as superior osteoconductivity and bioresorbability compared with CAC. CABC could therefore be used as an alternative bone substitute material.
两种新型磷酸钙骨水泥(CPC)已被开发出来,其主要成分是磷酸钙钠(CSP)。第一种水泥,标记为 CAC,含有 CSP、α-磷酸三钙(TCP)和无水柠檬酸;而第二种,标记为 CABC,含有 CSP、α-TCP、β-TCP 和无水柠檬酸。Biopex(®)-R(PENTAX,东京,日本)是一种市售的 CPC(Com-CPC),OSferion(®)(Olympus Terumo Biomaterials Corp.,东京,日本)是一种市售的多孔β-TCP,被用作分析的参考对照。体外分析表明,CABC 在 22°C 下 5.7±0.3 分钟凝固,5 天后抗压强度为 86.0±9.7 MPa。此外,这种材料在生理盐水中 2 小时后的抗压强度为 26.7±3.7 MPa。CABC 在生理盐水中的抗压强度明显低于 CABC,凝固时间也明显长于 CABC。CABC 和 CAC 在模拟体液中具有更快的形成磷灰石的能力,比 Com-CPC 更快。将这些材料的样本植入兔股骨髁进行体内分析,随后的组织学检查表明,CABC 与 Com-CPC 相比具有更好的骨传导性和等效的生物可吸收性,与 CAC 相比具有更好的骨传导性和生物可吸收性。因此,CABC 可用作替代骨替代材料。