Boyd D, Clarkin O M, Wren A W, Towler M R
Materials and Surface Science Institute, National Technological Park, University of Limerick, Limerick, Ireland.
Acta Biomater. 2008 Mar;4(2):425-31. doi: 10.1016/j.actbio.2007.07.010. Epub 2007 Aug 3.
The suitability of glass polyalkenoate cements (GPCs) for skeletal applications is limited by the presence, in the glass phase, of the aluminium ion (Al3+), a neurotoxin. The zinc ion (Zn2+), a bacteriocide, has been incorporated into aluminium-free GPCs based on zinc silicate glasses. However, these GPCs have considerably shorter working times and poorer mechanical properties than their Al3+-containing counterparts. Based on results for calcium phosphate cements, there is an indication that mixing a GPC with an organic compound, tricalcium citrate (TSC), may lead to cements with improved rheological and mechanical properties. We developed a range of Zn-based GPCs and determined their working times (Tw), setting times (Ts), compressive strength (CS) and biaxial flexural strengths (BFS). A GPC composed of 1g of a calcium-zinc silicate glass (BT100) mixed with a 50wt.% aqueous solution on polyacrylic acid (coded E9, Mw 80,800) at a powder liquid ratio of 2:1.5 exhibited the best combination of Tw, Ts, CS and BFS. We also found that the addition of TSC (over the range 5-15wt.%) to a GPC led to significant increases in both Tw (from 40+/-3 to 100+/-4s) and Ts (from 70+/-2 to 3000+/-4s) accompanied by changes in both CS and BFS that were affected by the duration of the aging time of the specimens in distilled water (for example, after aging for 7 days CS dropped from 62+/-2 to 17+/-1MPa, while after aging for 30 days, BFS increased 27+/-6 to 31+/-7MPa and then dropped to 17+/-1MPa). Future modification and characterization of the examined GPCs are needed before they may be considered as candidates for orthopaedic applications.
玻璃聚链烯酸酯水门汀(GPC)在骨骼应用中的适用性受到玻璃相中神经毒素铝离子(Al3+)的限制。杀菌剂锌离子(Zn2+)已被掺入基于硅酸锌玻璃的无铝GPC中。然而,这些GPC的工作时间明显短于含Al3+的同类产品,机械性能也较差。基于磷酸钙水门汀的研究结果,有迹象表明将GPC与有机化合物柠檬酸三钙(TSC)混合可能会得到流变学和机械性能得到改善的水门汀。我们开发了一系列基于锌的GPC,并测定了它们的工作时间(Tw)、凝固时间(Ts)、抗压强度(CS)和双轴弯曲强度(BFS)。一种由1g钙锌硅酸盐玻璃(BT100)与50wt.%聚丙烯酸水溶液(编码E9,Mw 80,800)以2:1.5的粉液比混合而成的GPC表现出Tw、Ts、CS和BFS的最佳组合。我们还发现,向GPC中添加TSC(5-15wt.%范围内)会导致Tw(从40±3秒增加到100±4秒)和Ts(从70±2秒增加到3000±4秒)显著增加,同时CS和BFS也会发生变化,这些变化受样品在蒸馏水中老化时间的影响(例如,老化7天后CS从62±2MPa降至17±1MPa,而老化30天后,BFS从27±6MPa增加到31±7MPa,然后降至17±1MPa)。在将所研究的GPC视为骨科应用候选材料之前,需要对其进行进一步的改性和表征。