首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Oriented growth of rat Schwann cells on aligned electrospun poly(methyl methacrylate) nanofibers
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Oriented growth of rat Schwann cells on aligned electrospun poly(methyl methacrylate) nanofibers

机译:大鼠雪旺细胞在定向电纺聚甲基丙烯酸甲酯纳米纤维上的定向生长

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Transplanted Schwann cells have the potential to serve as a support for regenerating neurites after spinal cord injury. However, implanted Schwann cells die off rapidly once transplanted partly owing to the absence of a proper matrix support, with a glia scar and a cavity being present instead at the injury site. For this report, we evaluated aligned electrospun poly(methyl methacrylate) nanofibers as a Schwann cell-loading scaffold in vitro. By monitoring the fluorescence of green fluorescence protein-containing Schwann cells cultured on nano fibers, we found that aligned nanofibers provided better support for the cells than did non-aligned nanofibers. The cells elongated along the long axes of the aligned nanofibers and formed longer cell processes than when the substrate was non-aligned nanofibers. By coculturing Schwann cells with dorsal root ganglion neurons, it was also found that Schwann cells and neurites of dorsal root ganglion neurons could share and both elongate along the orientation of aligned nanofibers and thus they had a higher chance of colocalization than cocultured on film and non-aligned fibers, which might be beneficial to the ensuring process of myelination. The results of the study indicate that aligned electrospun nanofibers may serve as a Schwann cell -loading scaffold for future implantation research. (C) 2016 Elsevier B.V. All rights reserved.
机译:移植的雪旺细胞有潜力作为脊髓损伤后再生神经突的支持物。但是,植入的雪旺细胞一旦移植,很快就会死亡,部分是由于缺乏适当的基质支持,在损伤部位出现了胶质瘢痕和空腔。对于此报告,我们评估了对齐的电纺聚(甲基丙烯酸甲酯)纳米纤维作为体外施旺细胞加载的支架。通过监测在纳米纤维上培养的含绿色荧光蛋白的雪旺氏细胞的荧光,我们发现排列的纳米纤维比未排列的纳米纤维为细胞提供了更好的支持。所述细胞沿着排列的纳米纤维的长轴伸长并且形成比当基材是未排列的纳米纤维时更长的细胞过程。通过将雪旺氏细胞与背根神经节神经元共培养,还发现雪旺氏细胞和背根神经节神经元的神经突可以沿着排列的纳米纤维的方向共享并伸长,因此与膜和非膜上共培养相比,它们具有更高的共定位机会。排列的纤维,这可能有助于确保髓鞘形成过程。研究结果表明,对齐的电纺纳米纤维可作为雪旺氏细胞加载支架,用于未来的植入研究。 (C)2016 Elsevier B.V.保留所有权利。

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