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Introduction of gelatin microspheres into an injectable calcium phosphate cement.

机译:将明胶微球引入可注射的磷酸钙水泥中。

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摘要

For tissue engineered bone constructs, calcium phosphate cement (CPC) has a high potential as scaffold material because of its biocompatibility and osteoconductivity. However, in vivo resorption and tissue ingrowth is slow. To address these issues, microspheres can be incorporated into the cement, which will create macroporosity after in situ degradation. The goal of this study was to investigate the handling properties and degradation characteristics of CPC containing gelatin microspheres. Setting time and injectability were determined and an in vitro degradation study was performed. Samples were assayed on mass, compression strength, E-modulus, and morphology. A supplementary degradation test with gelatin microspheres was performed to investigate the influence of physical conditions inside the cement on microsphere stability. The gelatin microsphere CPCs were easy to inject and showed initial setting times of less than 3 min. After 12-weeks in vitro degradation no increase in macroporosity was observed, which was supported by the small mass loss and stabilizing mechanical strength. Even a clear densification of the composite was observed. Explanations for the lack of macroporosity were recrystallization of the cement onto or inside the gelatin spheres and a delayed degradation of gelatin microspheres inside the scaffold. The supplementary degradation test showed that the pH is a factor in the delayed gelatin microsphere degradation. Also differences in degradation rate between types of gelatin were observed. Overall, the introduction of gelatin microspheres into CPC renders composites with good handling properties, though the degradation characteristics should be further investigated to generate a macroporous scaffold.
机译:对于组织工程骨构建体,磷酸钙水泥(CPC)由于其生物相容性和骨传导性而具有作为支架材料的巨大潜力。但是,体内吸收和组织向内生长缓慢。为了解决这些问题,可以将微球体掺入水泥中,从而在原位降解后产生大孔隙。这项研究的目的是研究含有CPC的明胶微球的处理性能和降解特性。确定凝固时间和可注射性,并进行体外降解研究。分析样品的质量,抗压强度,E模量和形态。用明胶微球进行了补充降解试验,以研究水泥内部物理条件对微球稳定性的影响。明胶微球CPCs易于注射,初始凝固时间少于3分钟。体外降解12周后,未观察到大孔隙率的增加,这是由较小的质量损失和稳定的机械强度所支持的。甚至观察到复合材料的明显致密化。缺乏大孔性的解释是胶在明胶球上或内部的重结晶以及支架内明胶微球的延迟降解。补充降解试验表明,pH是明胶微球降解延迟的一个因素。还观察到明胶类型之间降解速率的差异。总的来说,将明胶微球引入CPC可使复合材料具有良好的处理性能,尽管降解特性应进一步研究以生成大孔支架。

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