聚合物掺量对预混磷酸钙水泥力学性能的影响。

Biomatter Pub Date : 2013-10-01 Epub Date: 2013-11-22 DOI:10.4161/biom.27249
Johanna Engstrand, Cecilia Persson, Håkan Engqvist
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引用次数: 15

摘要

预混磷酸钙水泥可以减少在手术室中与水泥混合相关的处理并发症。然而,为了扩大陶瓷水泥的临床适应症,其力学性能需要进一步提高。掺入具有内在高拉伸性能的聚合材料可能有助于提高磷酸钙水泥的机械性能。在这项研究中,由聚(乳酸-共乙二醇酯)与聚(乙二醇)400 (PLGA/PEG微粒)塑化制成的聚合物微粒以高达5wt %的量添加到预混合的酸性磷酸钙水泥中。添加的PLGA/PEG微颗粒在37℃下发生形状转变,与缺乏这种特性的聚合物微颗粒相比,聚合物微颗粒与陶瓷水泥之间的结合更好。结果表明,当掺入1.25 wt%的PLGA/PEG微颗粒时,材料的抗压强度提高了约20%,达到15.1 MPa,而直径抗拉强度保持不变。与纯陶瓷水泥相比,PLGA/PEG颗粒的掺入提高了固化后的刷石与钱铁矿的比例。综上所述,少量的PLGA/PEG微粒可以加入到预混合的酸性磷酸钙水泥中,提高其力学性能,这可能会增加未来的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Influence of polymer addition on the mechanical properties of a premixed calcium phosphate cement.

Premixed calcium phosphate cements can reduce handling complications that are associated with the mixing of cements in the operating room. However, to extend the clinical indication of ceramic cements their mechanical properties need to be further improved. The incorporation of a polymeric material with intrinsically high tensile properties could possibly assist in increasing the mechanical properties of calcium phosphate cement. In this study polymer microparticles made from poly(lactid-co-glycolide) plasticised with poly(ethylene glycol) 400 (PLGA/PEG microparticles) were added in amounts of up to 5 wt% to a premixed acidic calcium phosphate cement. The PLGA/PEG microparticles added undergo a shape transformation at 37 °C, which could give a better integration between polymer microparticles and ceramic cement compared with polymer microparticles lacking this property. The results showed that the incorporation of 1.25 wt% PLGA/PEG microparticles increased the compressive strength by approximately 20% up to 15.1 MPa while the diametral tensile strength was kept constant. The incorporation of PLGA/PEG microparticles increased the brushite to monetite ratio after setting compared with pure ceramic cements. In conclusion, small amounts of PLGA/PEG microparticles can be incorporated into premixed acidic calcium phosphate cement and increase their mechanical properties, which could lead to increased future applications.

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