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首页> 外文期刊>Biomacromolecules >Polycaprolactone Microfibrous Scaffolds to Navigate Neural Stem Cells
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Polycaprolactone Microfibrous Scaffolds to Navigate Neural Stem Cells

机译:聚己内酯微纤维支架导航神经干细胞。

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Fibrous scaffolds have shown promise in tissue engineering due to their ability to improve cell alignment and migration. In this paper, poly(epsilon-caprolactone) (PCL) fibers are fabricated' in different sizes using a microfluidic platform. By using, this approach, we demonstrated considerable flexibility in ability to control the size of the fibers. It was shown that the average diameter of the fibers was obtained in the range of 2.6-364 mu m by selecting the PCL solution flow rate from 1 to 5 mu L min(-1) and the sheath flow rate from 20 to 400 mu L min(-1) in the microfluidic channel. The microfibers were used to create 3D microenvironments in order to investigate growth and differentiation of adult hippocampal stem/progenitor cells (AHPCs) in vitro. The results indicated that the 3D topography of the PCL substrates, along with chemical (extracellular matrix) guidance cues supported the adhesion, survival, and differentiation of the AHPCs. Additionally, it was found that the cell deviation angle for 44-66% of cells on different types of fibers was less than 10 degrees. This reveals the functionality of PCL fibrous scaffolds for cell alignment important in applications such as reconnecting serious nerve injuries and guiding the direction of axon growth as well as regenerating blood vessels, tendons, and muscle tissue.
机译:纤维支架由于其改善细胞排列和迁移的能力而在组织工程中显示出了希望。在本文中,使用微流体平台以不同尺寸制造了聚(ε-己内酯)(PCL)纤维。通过使用这种方法,我们展示了在控制纤维尺寸方面的相当大的灵活性。结果表明,通过选择PCL溶液流速为1至5μLmin(-1)和鞘层流速为20至400μL,可以在2.6-364μm范围内获得纤维的平均直径。 min(-1)在微流控通道中。为了研究成年海马干/祖细胞(AHPC)的生长和分化,使用微纤维创建了3D微环境。结果表明,PCL基质的3D形貌以及化学(细胞外基质)引导线索支持AHPC的粘附,存活和分化。另外,发现在不同类型的纤维上的44-66%的单元的单元偏离角小于10度。这揭示了PCL纤维支架对细胞排列的功能,在重新连接严重的神经损伤和指导轴突生长的方向以及再生血管,肌腱和肌肉组织等应用中很重要。

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