University of Aveiro, Department of Ceramics and Glass Engineering, CICECO, 3810-193 Aveiro, Portugal.
Acta Biomater. 2010 Mar;6(3):928-35. doi: 10.1016/j.actbio.2009.09.001. Epub 2009 Sep 4.
New bone cements made of Sr-substituted brushite-forming alpha-tricalcium phosphate (alpha-TCP) were prepared and characterized in the present work. The quantitative phase analysis and structural refinement of the starting powders and of hardened cements were performed by X-ray powder diffraction and the Rietveld refinement technique. Isothermal calorimetry along with setting time analysis allowed a precise tracing of the setting process of the pastes. The pastes showed exothermic reactions within the first 10-15 min after mixing and further release of heat after about 1h. An apatitic phase formed upon immersion of the hardened cements in simulated body fluid for 15 and 30 days due to the conversion of brushite into apatite confirming their in vitro mineralization capability. The compressive strength of the wet cement specimens decreased with increasing curing time, being higher in the case of Sr-substituted CPC. The results suggest that the newly developed Sr-substituted brushite-forming alpha-TCP cements show promise for uses in orthopaedic and trauma surgery such as in filling bone defects.
本文制备了 Sr 取代的具有 brushite 形成能力的 α-磷酸三钙(α-TCP)新型骨水泥,并对其进行了表征。通过 X 射线粉末衍射和 Rietveld 精修技术对起始粉末和硬化水泥进行了定量相分析和结构精修。等温量热法和凝固时间分析可精确跟踪糊剂的凝固过程。糊剂在混合后最初的 10-15 分钟内会发生放热反应,约 1 小时后会进一步释放热量。在模拟体液中浸泡硬化水泥 15 和 30 天后,由于 brushite 转化为磷灰石,形成了磷灰石相,证实了它们的体外矿化能力。湿水泥试块的抗压强度随固化时间的增加而降低,Sr 取代的 CPC 情况下的强度更高。结果表明,新开发的 Sr 取代的 brushite 形成能力的 α-TCP 骨水泥在矫形和创伤外科中具有应用前景,例如填充骨缺损。