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首页> 外文期刊>Biomaterials >Trophically and topographically functionalized silk fibroin nerve conduits for guided peripheral nerve regeneration.
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Trophically and topographically functionalized silk fibroin nerve conduits for guided peripheral nerve regeneration.

机译:营养和地形功能化的丝素蛋白神经导管,用于引导周围神经再生。

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Artificial nerve conduits (NC) can be used as an alternative to autologous nerve grafts to enhance the repair of small nerve gaps. Current NC lack adequate molecular and structural functionalities. Thus, we developed silk fibroin NC (SF NC) that were loaded with glial cell line-derived neurotrophic factor (GDNF) and nerve growth factor (NGF) and topographically functionalized with aligned and non-aligned SF nanofibers. The SF NC were produced from fully functionalized SF membranes on which initial experiments were performed. DRG (dorsal root ganglions) sensory neurons and spinal cord (SpC) motor neurons, both from chicken embryos, exhibited an augmented length and rate of axonal outgrowth parallel to the aligned nanofibers. In addition, glial cells from DRG proliferated and migrated in close association and even slightly ahead of the outgrowing axons. On the contrary, axonal and glial growth was slower and randomly oriented on non-aligned nanofibers. The DRG and SpC explants were also inserted into the lumen of the finished SF NC. The unidirectional orientation of axo-glial outgrowth from the explants evidenced the preservation of the trophic and topographical functionalities in the SF NC. Bioactive GDNF and NGF were released in vitro from SF NC over 4 weeks. Thus, the developed functionalized SF NC hold promise to enhance functional recovery of injured peripheral nerves.
机译:人工神经导管(NC)可以用作自体神经移植物的替代品,以增强小神经间隙的修复。当前的NC缺乏足够的分子和结构功能。因此,我们开发了丝素蛋白NC(SF NC),其中装有胶质细胞系衍生的神经营养因子(GDNF)和神经生长因子(NGF),并通过对齐和不对齐的SF纳米纤维在地形上进行了功能化。 SF NC由完全功能化的SF膜制成,并在其上进行了初步实验。都来自鸡胚的DRG(背根神经节)感觉神经元和脊髓(SpC)运动神经元显示出与排列的纳米纤维平行的增加的轴突生长长度和速率。此外,DRG的神经胶质细胞以紧密的联系进行增殖和迁移,甚至在轴突生长之前。相反,轴突和神经胶质的生长较慢,并且随机排列在未排列的纳米纤维上。 DRG和SpC外植体也被插入完成的SF NC内腔中。外植体的轴突胶质生长的单向取向证明了SF NC中的营养和地形功能得以保留。具有生物活性的GDNF和NGF在4周内从SF NC体外释放。因此,发达的功能性SF NC有望增强受伤的周围神经的功能恢复。

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