首页> 外文期刊>European Polymer Journal >Evaluation of the effects of keratin on physical, mechanical and biological properties of poly (3-hydroxybutyrate) electrospun scaffold: Potential application in bone tissue engineering
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Evaluation of the effects of keratin on physical, mechanical and biological properties of poly (3-hydroxybutyrate) electrospun scaffold: Potential application in bone tissue engineering

机译:角蛋白对聚(3-羟基丁酯)电纺支架的物理,机械和生物学性能的评价:骨组织工程潜在应用

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摘要

Proper selection of materials and methods of construction are important factors in scaffolding in tissue engineering. In this research, a novel biomimetic scaffold containing poly (3-hydroxybutyrate) (PHB) and keratin (5-15 wt. %) was prepared by the electrospinning method. The results showed that all electrospun scaffolds have 3D structures with high interconnected porosity and hydrophilicity. FTIR, Raman and H-1-NMR indicated the presence of keratin in electrospun scaffolds and the hydrogen bond between the two polymers. Crystallinity of the scaffolds, which was measured by DSC and verified by XRD, demonstrated that the presence of keratin reduces the crystallinity and improves the thermal behavior of scaffolds. According to the mechanical evaluation, by adding up to 10 wt. % of keratin, tensile strength of scaffolds is increased from 2.29 to 2.92 Mpa, respectively. In vitro degradation of the scaffolds was increased by the presence of keratin. Cell culture of the MG63 revealed that viability, proliferation and ALP secretion are significantly increased by adding keratin to the scaffolds. The proper properties of PHB-10 k electrospun scaffold made it a promising alternative biomaterial for bone tissue engineering applications.
机译:Proper selection of materials and methods of construction are important factors in scaffolding in tissue engineering.在该研究中,通过静电纺丝法制备含有聚(3-羟基丁酯)(PHB)和角蛋白(5-15重量%)的新型仿生支架。结果表明,所有电纺支架都有3D结构,具有高互连的孔隙率和亲水性。 FTIR,拉曼和H-1-NMR表明在电纺支架中存在角蛋白和两种聚合物之间的氢键。通过DSC测量并通过XRD验证的支架的结晶度证明了角蛋白的存在降低了结晶度并提高了支架的热行为。根据机械评估,通过最多增加10重量%。角蛋白的百分比,支架的拉伸强度分别从2.29增加到2.92MPa。通过角蛋白的存在增加了支架的体外降解。 MG63的细胞培养表明,通过向支架中添加角蛋白,显着增加了活力,增殖和ALP分泌。 PHB-10 K Electrom Opertpum支架的适当性质使其成为骨组织工程应用的有希望的替代生物材料。

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