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Polyurethane/fluor-hydroxyapatite nanocomposite scaffolds for bone tissue engineering. Part I: morphological, physical, and mechanical characterization

机译:用于骨组织工程的聚氨酯/氟-羟基磷灰石纳米复合支架。第一部分:形态,物理和机械表征

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摘要

In this study, new nano-fluor-hydroxyapatite (nFHA)/polyurethane composite scaffolds were fabricated for potential use in bone tissue engineering. Polyester urethane samples were synthesized from polycaprolactone, hexamethylene diisocyanate, and 1,4-butanediol as chain extender. Nano fluor-hydroxyapatite (nFHA) was successfully synthesized by sol-gel method. The solid–liquid phase separation and solvent sublimation methods were used for preparation of the porous composites. Mechanical properties, chemical structure, and morphological characteristics of the samples were investigated by compressive test, Fourier transform infrared, and scanning electron microscopy (SEM) techniques, respectively. The effect of nFHA powder content on porosity and pore morphology was investigated. SEM images demonstrated that the scaffolds were constituted of interconnected and homogeneously distributed pores. The pore size of the scaffolds was in the range 50–250 μm. The result obtained in this research revealed that the porosity and pore average size decreased and compressive modulus increased with nFHA percentage. Considering morphological, physical, and mechanical properties, the scaffold with a higher ratio of nFHA has suitable potential use in tissue regeneration.
机译:在这项研究中,新型纳米氟羟基磷灰石(nFHA)/聚氨酯复合支架被制造出来,潜在地用于骨组织工程。聚酯聚氨酯样品是由聚己内酯,六亚甲基二异氰酸酯和1,4-丁二醇作为扩链剂合成的。溶胶-凝胶法成功合成了纳米氟羟基磷灰石(nFHA)。固液分离和溶剂升华方法用于制备多孔复合材料。分别通过压缩试验,傅立叶变换红外光谱和扫描电子显微镜(SEM)技术研究了样品的机械性能,化学结构和形态特征。研究了nFHA粉末含量对孔隙率和孔形貌的影响。 SEM图像显示支架由相互连接且均匀分布的孔构成。支架的孔径在50-250μm范围内。这项研究获得的结果表明,随着nFHA百分比的增加,孔隙率和平均孔径减小,压缩模量增加。考虑到形态,物理和机械特性,nFHA比例较高的支架在组织再生中具有合适的潜在用途。

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