首页> 外文期刊>Journal of Colloid and Interface Science >Silk fibroin H-fibroin/poly(epsilon-caprolactone) core-shell nanofibers with enhanced mechanical property and long-term drug release
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Silk fibroin H-fibroin/poly(epsilon-caprolactone) core-shell nanofibers with enhanced mechanical property and long-term drug release

机译:丝纤维蛋白H-纤维蛋白/聚(ε-己内酯)核 - 壳纳米纤维,具有增强的机械性能和长期药物释放

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The scaffold materials with good mechanical and structural properties, controlled drug release performance, biocompatibility and biodegradability are important tenet in tissue engineering. In this work, the functional core-shell nanofibers with poly(epsilon-caprolactone) (PCL) as shell and silk fibroin heavy chain (H-fibroin) as core were constructed by emulsion electrospinning. The transmission electron microscopy confirmed that the nanofiber with core-shell structure were successfully prepared. The constructed nanofiber materials were characterized by the several characterization methods. The results showed that ethanol treatment could induce the formation of beta-sheet of H-fibroin in composite nanofibers, thus improving the mechanical properties of PCL/H-fibroin nanofiber scaffold. In addition, we evaluated the potential of PCL/H-fibroin nanofiber membrane as a biological scaffold. It was found that PCL/H-fibroin nanofiber scaffold was more conducive to cell adhesion and proliferation with the increment of H-fibroin. Finally, in vitro drug release presented that PCL/H-fibroin core-shell nanofibers could effectively reduce the prophase burst of drug molecules and show the sustained drug release. The PCL/H-fibroin nanofiber scaffolds constructed in this work have good mechanical properties, biocompatibility, and display good potential in biomedical applications, such as drug carriers, tissue engineering and wound dressings, etc. (C) 2021 Elsevier Inc. All rights reserved.
机译:具有良好力学和结构性能、药物控释性能、生物相容性和生物降解性的支架材料是组织工程的重要原则。本文采用乳液静电纺丝技术,以聚己内酯(PCL)为壳,丝素蛋白重链(H-丝素蛋白)为核,制备了功能性核壳纳米纤维。透射电子显微镜证实成功制备了具有核壳结构的纳米纤维。通过几种表征方法对所构建的纳米纤维材料进行了表征。结果表明,乙醇处理可以诱导H-丝素复合纳米纤维β片的形成,从而改善PCL/H-丝素纳米纤维支架的力学性能。此外,我们还评估了PCL/H-丝素纳米纤维膜作为生物支架的潜力。研究发现,随着H-丝素含量的增加,PCL/H-丝素纳米纤维支架更有利于细胞的粘附和增殖。最后,体外释药实验表明,PCL/H-丝素核壳纳米纤维可以有效地减少药物分子的前期爆发,并表现出持续的药物释放。构建的PCL/H-丝素纳米纤维支架具有良好的力学性能、生物相容性,在生物医学应用中具有良好的潜力,如药物载体、组织工程和伤口敷料等(C)2021爱思唯尔公司保留所有权利。

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