首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Fabrication of polycaprolactone scaffolds using a sacrificial compression-molding process.
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Fabrication of polycaprolactone scaffolds using a sacrificial compression-molding process.

机译:使用牺牲压缩成型工艺制造聚己内酯支架。

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摘要

A method of compression-molding fine-powder blends of polycaprolactone (PCL) and poly(ethylene oxide) (PEO) and subsequently dissolving the PEO phase was investigated to prepare porous PCL scaffolds. Different mixing ratios of the two polymers from 20 to 70% PCL were used to study the effect of the mixing ratio on the morphology formation of the scaffold. The mixing ratio was found to play an important role in affecting the porosity of the scaffold and the size of pores. Murine embryonic stem cell derived osteogenic cells were utilized to test the suitability of these scaffolds in tissue engineering applications. The seeded cells were able to colonize and grow in these scaffolds. Based on the overall consideration of morphology, mechanical performance, and ability for cell attachment and proliferation, the scaffolds with approximately 30-40% PCL appear to be an appropriate choice for tissue engineering. These findings suggest that sacrificial compression-molding of PCL-PEO powder blends can be used in the generation of biocompatible scaffolds with controllable porosity and pore size and may be used for in vitro tissue engineering applications.
机译:研究了一种将聚己内酯(PCL)和聚环氧乙烷(PEO)的细粉共混物压制成型并随后溶解PEO相以制备多孔PCL支架的方法。两种聚合物的混合比例从20%到70%PCL被用来研究混合比例对支架形态形成的影响。发现混合比例在影响支架的孔隙率和孔的尺寸中起重要作用。利用小鼠胚胎干细胞衍生的成骨细胞来测试这些支架在组织工程应用中的适用性。接种的细胞能够在这些支架中定居并生长。基于形态,机械性能以及细胞附着和增殖能力的整体考虑,具有约30-40%PCL的支架似乎是组织工程的合适选择。这些发现表明,PCL-PEO粉末共混物的牺牲压模可用于生成具有可控制的孔隙率和孔径的生物相容性支架,并可用于体外组织工程应用。

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