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Preparation and characterization of injectable PMMA‐strontium‐substituted bioactive glass bone cement composites

机译:注射PMMA - 锶取代的生物活性玻璃骨水泥复合材料的制备与表征

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Abstract In most minimally‐invasive procedures used to address severe pain arising from compression fractures of the vertebral bodies, such as percutaneous vertebroplasty (PVP), a poly(methyl methacrylate) (PMMA) bone cement is used. Shortcomings of this type of cement, such as high exotherm temperature and lack of bioactivity, are well known. We prepared different formulations of a composite bone cement, whose solid constituents consisted of PMMA beads and particles of a bioactive glass (BG), where 0–20%(w/w) of the calcium component was substituted by strontium. The difference between the formulations was in the relative amounts of the solid phase constituents and in the Sr‐content of BG. We determined the influence of the mixture of solid phase constituents of the cement formulation on a collection of properties, such as maximum exotherm temperature ( T max ), setting time ( t set ), and injectability ( I ). The selection of the PMMA beads was crucial to obtain cement composite formulations capable to be efficiently injected. Results allowed to select nine solid phase mixtures to be further tested. Then, we determined the influence of the composition of these composite bone cements on T max , t set , I , and cell proliferation. The results showed that the performance of various of the selected composite cements was better than that of PMMA cement reference, with lower T max , lower t set , and higher I . We found that incorporation of Sr‐substituted BGs into these materials bestows bioactivity properties associated with the role of Sr in bone formation, leading to some composite cement formulations that may be suitable for use in PVP. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 1245–1257, 2018.
机译:摘要在用于解决椎体的压缩骨折引起的严重疼痛的最微放侵袭性程序中,如经皮椎骨成形术(PVP),使用聚(甲基丙烯酸甲酯)(PMMA)骨水泥。这种类型的水泥的缺点,例如高放热温度和缺乏生物活性,是众所周知的。我们制备了不同配方的复合骨水泥,其固体成分由PMMA珠和生物活性玻璃(BG)的颗粒组成,其中0-20%(W / W)的钙组分被锶取代。制剂之间的差异是固相成分的相对量和BG的SR含量。我们确定了水泥制剂的固相成分混合物对物质集合的影响,例如最大放热温度(T max),设定时间(T设定)和可注射性(i)。 PMMA珠粒的选择对于获得能够有效注入的水泥复合制剂是至关重要的。允许进一步测试含有九个固相混合物的结果。然后,我们确定这些复合骨水泥的组合物对T max,T组,I和细胞增殖的影响。结果表明,各种所选复合水泥的性能优于PMMA水泥参考的性能,具有较低的T max,下T组和更高的I。我们发现将Sr取代的BGS掺入这些材料中赋予与Sr在骨形成中的作用相关的生物活性性质,从而导致一些可用于PVP的复合水泥配方。还2017年Wiley期刊,Inc。J生物保解率B部分:Appl Biomater,106B:1245-1257,2018。

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