首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Fabrication and characterization of nanoscale-roughened PCL/collagen microanofibers treated with plasma for tissue regeneration
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Fabrication and characterization of nanoscale-roughened PCL/collagen microanofibers treated with plasma for tissue regeneration

机译:纳米处理的纳米级PCL /胶原微/纳米纤维的制备与表征

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摘要

A surface-modified electrospun poly(e-caprolactone) (PCL)/collagen fibrous mat was fabricated by simple coating and the selective plasma-treatment method using a template with 800 nm holes. A homogeneous nanoscale pattern (376 + 40 nm) was successfully obtained on the collagen region coated on the PCL microanofibers. The mechanical and in vitro cellular activities (cell proliferation and osteogenic activities) were evaluated and compared with controls, including electrospun PCL fibers coated with the same collagen component, to characterize the effectiveness of the coated collagen component roughened with the nanoscale. Significant increases in cell viability of about 1.4-fold and calcium deposition of about 1.3-fold were observed on the plasma-etched PCL/collagen fibrous mats compared to those on the PCL/collagen fibrous mats. These results show that the newly designed fibrous biomedical scaffold can induce significant cellular activities at the interface between cells and the topological boundary with regenerating tissues.
机译:通过简单的涂覆和使用具有800 nm孔的模板的选择性等离子体处理方法,制造了一种表面改性的电纺聚己内酯(PCL)/胶原纤维垫。在PCL微米/纳米纤维涂层的胶原蛋白区域成功获得了均匀的纳米级图案(376 + 40 nm)。评估机械和体外细胞活性(细胞增殖和成骨活性),并与对照进行比较,包括用相同胶原蛋白成分包覆的电纺PCL纤维,以表征经纳米级粗糙化的包覆胶原成分的有效性。与在PCL /胶原纤维垫上相比,在等离子体蚀刻的PCL /胶原纤维垫上观察到细胞活力显着增加约1.4倍,钙沉积约1.3倍。这些结果表明,新设计的纤维生物医学支架可以在细胞与再生组织的拓扑边界之间的界面上诱导显着的细胞活性。

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