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A novel electrospun-aligned nanoyarn-reinforced nanofibrous scaffold for tendon tissue engineering

机译:一种用于肌腱组织工程的新型电纺取向纳米纱增强纳米纤维支架

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摘要

An electrospun-aligned nanoyarn-reinforced nanofibrous scaffold (NRS) was developed for tendon tissue engineering to improve mechanical strength and cell infiltration. The novel scaffold composed of aligned nanoyarns and random nanofibers was fabricated via electrospinning using a two-collector system. The aim of the present study was to investigate three different types of electrospun scaffolds (random nanofibrous scaffold, aligned nanofibrous scaffold and NRS) based on silk fibroin (SF) and poly(Llactide-co-caprolactone) blends. Morphological analysis demonstrated that the NRS composed of aligned nanoyarns and randomly distributed nanofibers formed a 3D microstructure with relatively large pore sizes and high porosity. Biocompatibility analysis revealed that bone marrow-derived mesenchymal stem cells exhibited a higher proliferation rate when cultured on the NRS compared with the other scaffolds. The mechanical testing results indicated that the tensile properties of the NRS were reinforced in the direction parallel to the nanoyarns and satisfied the mechanical requirements for tendon repair. In addition, cell infiltration was significantly enhanced on the NRS. In conclusion, with its improved porosity and appropriate mechanical properties, the developed NRS shows promise for tendon tissue engineering applications.
机译:开发了电纺取向的纳米纱增强纳米纤维支架(NRS)用于肌腱组织工程,以提高机械强度和细胞浸润。使用两个收集器系统通过静电纺丝制造了由对齐的纳米纱和随机的纳米纤维组成的新型支架。本研究的目的是研究基于丝素蛋白(SF)和聚丙交酯-己内酯共混物的三种不同类型的电纺支架(随机的纳米纤维支架,排列的纳米纤维支架和NRS)。形态分析表明,由排列的纳米纱和随机分布的纳米纤维组成的NRS形成了3D微观结构,具有相对较大的孔径和高孔隙率。生物相容性分析显示,与其他支架相比,在NRS上培养时,骨髓来源的间充质干细胞表现出更高的增殖速率。力学测试结果表明,NRS的拉伸性能在与纳米纱线平行的方向上得到增强,并满足肌腱修复的机械要求。此外,在NRS上,细胞浸润显着增强。总之,开发的NRS具有改善的孔隙率和适当的机械性能,显示出在肌腱组织工程应用中的希望。

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