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3D polyurethane/α-TCP composite scaffolds for bone tissue engineering

机译:用于骨组织工程的3D聚氨酯/α-TCP复合支架

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This work deals with the design of biointegrable porous composite scaffolds, made of biocompatible and relatively biostable polyurethane foams (PUF) loaded with bioabsorbable inorganic salts (α-TCP), to be used as bone graft substitutes. 3D porous composites were prepared by co-expanding polyurethane formulations with α-TCP particles in a one-step bulk polymerization, using water as expanding agent. Density, porosity, cell size, thermal properties (TGA), and compressive mechanical properties of these composites were evaluated. For comparison, PU foams were obtained with the same procedure, but with no added TCP. Compared to unloaded foams, the composites did not show relevant differences in density and porosity. Compressive properties were similar or lower. The content of the inorganic residue detected with TGA corresponded to the quantity of α-TCP introduced. Some composite samples were incubated in Simulated Body Fluid, up to 21 days at 37° C. Structure and morphology of the SBF-treated samples were analyzed by TGA, X-ray diffractometry and scanning electron microscopy (SEM). SEM observations confirmed the presence of a new inorganic phase (Ca/P) at the surface and inside the pores of the PUF/α-TCP composites.
机译:这项工作涉及生物相容性多孔复合材料支架的设计,该支架由生物相容性和相对生物稳定的聚氨酯泡沫(PUF)制成,并负载有生物可吸收的无机盐(α-TCP),可用作骨移植替代物。 3D多孔复合材料是通过将聚氨酯配方与α-TCP颗粒在水为膨胀剂的一步聚合中共膨胀制备的。评估了这些复合材料的密度,孔隙率,泡孔尺寸,热性能(TGA)和压缩机械性能。为了比较,以相同的程序获得了PU泡沫,但是没有添加TCP。与未加载的泡沫相比,复合材料在密度和孔隙率方面没有显示出相关的差异。压缩性能相似或更低。用TGA检测到的无机残留物的含量对应于引入的α-TCP的量。将一些复合样品在模拟体液中于37°C孵育长达21天。通过TGA,X射线衍射和扫描电子显微镜(SEM)分析了经SBF处理的样品的结构和形态。 SEM观察证实,PUF /α-TCP复合材料的表面和孔内部存在新的无机相(Ca / P)。

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