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首页> 外文期刊>RSC Advances >Effects of polyethylene glycol content on the properties of a silk fibroin/nano-hydroxyapatite/polyethylene glycol electrospun scaffold
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Effects of polyethylene glycol content on the properties of a silk fibroin/nano-hydroxyapatite/polyethylene glycol electrospun scaffold

机译:聚乙二醇含量对丝纤维蛋白/纳米羟基磷灰石/聚乙二醇电纺架支架的性质的影响

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To study the effects of polyethylene glycol (PEG) content on the mechanical properties and degradation of silk fibroin, nano-hydroxyapatite, and PEG (SF/nHAP/PEG) electrospun scaffolds, and according to the PEG ratio in the scaffold (SF:nHAP:PEG), test groups were divided as follows: PEG-0 (10:2), PEG-0.5 (10:2:0.5), PEG-1 (10:2:1), and PEG-2 (10:2:2). A series of tests to determine the mechanical properties, degradation rates, and osteogenic characteristics was undertaken. PEG facilitated SF degradation (PEG-1 > PEG-0.5 > PEG-0 > PEG-2), and the mass loss of the scaffolds in PEG-1 was more than 30%, while in PEG-2 it was less than 20% after 8 days (P < 0.05). The addition of PEG strengthened the mechanical properties of the scaffold (PEG-1 > PEG-2 > PEG-0.5 > PEG-0), as the Young's modulus increased from 41.72 +/- 3.40 MPa for PEG-0 to 76.12 +/- 3.73 MPa for PEG-1 (P < 0.05). PEG was favorable for the osteogenic differentiation of BMSCs (PEG-0.5 > PEG-1 > PEG-2 > PEG-0). The enhancements were attributable to the increased hydrophilicity and nHAP dispersion, as well as to the secondary structure transformation of SF. The PEG content was deemed to be optimal when the SF/nHAP/PEG ratio was equal to 10:2:1.
机译:为了研究聚乙二醇(PEG)含量对丝素蛋白,纳米磷灰石和PEG(SF / NHAP / PEG)电纺支架的机械性能和降解的影响,并根据支架中的PEG比(SF:NHAP :PEG),试验组分为以下:PEG-0(10:2),PEG-0.5(10:2:0.5),PEG-1(10:2:1)和PEG-2(10:2 :2)。进行了一系列测试,以确定机械性能,降解率和成骨特征。 PEG促进的SF降解(PEG-1> PEG-0.5> PEG-0> PEG-2),并且PEG-1中的支架的质量损失超过30%,而在PEG-2中少于20% 8天后(P <0.05)。 PEG加强支架的力学性能(PEG-1> PEG-2> PEG-0.5> PEG-0),因为杨氏模量从41.72 +/- 3.40MPa增加到PEG-0至76.12 +/- PEG-1的3.73 MPa(P <0.05)。 PEG有利于BMSCs的成骨分化(PEG-0.5> PEG-1> PEG-2> PEG-0)。增强可归因于增加的亲水性和NHAP分散,以及SF的二次结构转化。当SF / NHAP / PEG比等于10:2:1时,PEG含量被认为是最佳的。

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    《RSC Advances》 |2019年第58期|共8页
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  • 正文语种 eng
  • 中图分类 化学;
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