首页> 外文期刊>Journal of biomedical materials research, Part A >Heparin/collagen encapsulating nerve growth factor multilayers coated aligned PLLA nanofibrous scaffolds for nerve tissue engineering
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Heparin/collagen encapsulating nerve growth factor multilayers coated aligned PLLA nanofibrous scaffolds for nerve tissue engineering

机译:肝素/胶原蛋白包封神经生长因子多层涂覆对齐PLLA纳米纤维支架用于神经组织工程

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Abstract Biomimicing topological structure of natural nerve tissue to direct axon growth and controlling sustained release of moderate neurotrophic factors are extremely propitious to the functional recovery of damaged nervous systems. In this study, the heparin/collagen encapsulating nerve growth factor (NGF) multilayers were coated onto the aligned poly‐L‐lactide (PLLA) nanofibrous scaffolds via a layer‐by‐layer (LbL) self‐assembly technique to combine biomolecular signals, and physical guidance cues for peripheral nerve regeneration. Scanning electronic microscopy (SEM) revealed that the surface of aligned PLLA nanofibrous scaffolds coated with heparin/collagen multilayers became rougher and appeared some net‐like filaments and protuberances in comparison with PLLA nanofibrous scaffolds. The heparin/collagen multilayers did not destroy the alignment of nanofibers. X‐ray photoelectron spectroscopy and water contact angles displayed that heparin and collagen were successfully coated onto the aligned PLLA nanofibrous scaffolds and improved its hydrophilicity. Three‐dimensional (3 D) confocal microscopy images further demonstrated that collagen, heparin, and NGF were not only coated onto the surface of aligned PLLA nanofibrous scaffolds but also permeated into the inner of scaffolds. Moreover, NGF presented a sustained release for 2 weeks from aligned nanofibrous scaffolds coated with 5.5 bilayers or above and remained good bioactivity. The heparin/collagen encapsulating NGF multilayers coated aligned nanofibrous scaffolds, in particular 5.5 bilayers or above, was more beneficial to Schwann cells (SCs) proliferation and PC12 cells differentiation as well as the SC cytoskeleton and neurite growth along the direction of nanofibrous alignment compared to the aligned PLLA nanofibrous scaffolds. This novel scaffolds combining sustained release of bioactive NGF and aligned nanofibrous topography presented an excellent potential in peripheral nerve regeneration. ? 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 1900–1910, 2017.
机译:摘要自然神经组织的生物化拓扑结构直接轴突生长和控制持续释放中度神经营养因子的持续释放是对受损神经系统的功能恢复的效果。在该研究中,通过层叠层(LBL)自组装技术将肝素/胶原蛋白包封神经生长因子(NGF)多层涂覆到对准的聚-1-丙交酯(PLLA)纳米纤维支架上以结合生物分子信号,和外周神经再生的物理指导提示。扫描电子显微镜(SEM)显示,涂有肝素/胶原多层的对齐PLLA纳米纤维支架的表面变得更加粗糙,并且与PLLA纳米纤维支架相比,出现了一些网状细丝和突起。肝素/胶原多层没有破坏纳米纤维的一致性。 X射线光电子体光谱和水接触角显示,肝素和胶原蛋白成功地涂覆到对齐的PLLA纳米纤维支架上并改善其亲水性。三维(3D)共聚焦显微镜图像进一步证明胶原蛋白,肝素和NGF不仅涂覆到对齐的PLLA纳米纤维支架表面上,而且渗透到支架的内部。此外,NGF呈现持续释放2周,从涂有5.5双层或上述5.5双层的对齐纳米纤维支架,并保持良好的生物活性。包封NGF多层涂覆对准的纳米纤维支架,特别是5.5双层或以上的肝素/胶原蛋白,对Schwann细胞(SCS)增殖和PC12细胞分化以及沿纳米纤维对准方向的SC细胞骨架和神经晶骨骼生长更有益。与对齐的PLLA纳米纤维支架。这种新的支架组合了生物活性NGF的持续释放并对齐的纳米纤维形貌呈现了周围神经再生的优异潜力。还2016年Wiley期刊,Inc。J生物保罗A部分:105A:1900-1910,2017。

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