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Development of Novel Bioactive PMMA-Based Bone Cement and its In Vitro and In Vivo Evaluation

机译:新型基于生物活性PMMA的骨水泥的研制及其体内外评价

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摘要

In order to overcome the disadvantage of commercialized PMMA bone cement, we have developed novel PMMA-based bone cement(7P3S) reinforced by 30 wt.% of bioactive CaO-SiO_2 gel powders to induce the bioactivity as well as to increase mechanical property for the PMMA bone cement. The novel 7P3S bone cement hardened after mixing for about 7 minutes. For in vitro evaluation, apatite forming ability of it was investigated using SBF. When the novel 7P3S bone cement was soaked into SBF, it formed apatite on its surfaces within 1 week Furthermore; there is no decrease in its compressive strength within 9 weeks soaking in SBF. It is though that hardly decrease in compressive strength of 7P3S bone cement in SBF is due to the relative small amount of gel powder or its spherical shape and monosize. In vivo evaluation of the novel 7P3S bone cement was carried out using rabbit. After implantion into rabbit tibia for several periods, the interface between novel bone cement and natural bone was evaluated by CT images. According to the results, the novel bone cement directly contact to the natural bone without fibrous tissue after implantation for 4 weeks. This results indicates that the newly developed 7P3S bone cement can bond to the living bone and also be effectively used as bioactive bone cement without decrease in mechanical property.
机译:为了克服商业化的PMMA骨水泥的缺点,我们开发了新型的PMMA基骨水泥(7P3S),该骨水泥由30 wt。%的生物活性CaO-SiO_2凝胶粉增强,以诱导生物活性并提高其力学性能。 PMMA骨水泥。新型的7P3S骨水泥在混合约7分钟后硬化。为了进行体外评价,使用SBF研究了其磷灰石形成能力。将新型7P3S骨水泥浸入SBF中后,在1周内其表面形成了磷灰石。在SBF中浸泡9周后其抗压强度没有降低。 SBF中7P3S骨水泥的抗压强度几乎没有降低,这是由于凝胶粉末相对较少或其球形和单一尺寸引起的。使用兔进行了新型7P3S骨水泥的体内评价。植入兔胫骨数次后,通过CT图像评估新型骨水泥与天然骨之间的界面。根据结果​​,这种新型骨水泥在植入4周后直接接触天然骨而没有纤维组织。该结果表明,新开发的7P3S骨水泥可以与活骨结合,并且在不降低机械性能的情况下也可以有效地用作生物活性骨水泥。

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