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3D Microfibrous Scaffolds Selectively Promotes Proliferation and Glial Differentiation of Adult Neural Stem Cells: A Platform to Tune Cellular Behavior in Neural Tissue Engineering

机译:3D微纤维支架选择性地促进成人神经干细胞的增殖和胶质分化:神经组织工程中曲调细胞行为的平台

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Biomaterials are essential for the development of innovative biomedical and therapeutic applications. Biomaterials-based scaffolds can influence directed cell differentiation to improve cell-based strategies. Using a novel microfluidics approach, poly (epsilon-caprolactone) (PCL), is used to fabricate microfibers with varying diameters (3-40 mu m) and topographies (straight and wavy). Multipotent adult rat hippocampal stem/progenitor cells (AHPCs) are cultured on 3D aligned PCL microfibrous scaffolds to investigate their ability to differentiate into neurons, astrocytes, and oligodendrocytes. The results indicate that the PCL microfibers significantly enhance proliferation of the AHPCs compared to control, 2D planar substrates. While the AHPCs maintained their multipotent differentiation capacity when cultured on the PCL scaffolds, there is a significant and dramatic increase in immunolabeling for astrocyte and oligodendrocyte differentiation when compared with growth on planar surfaces. Our results show a 3.5-fold increase in proliferation and 23.4-fold increase in astrocyte differentiation for cells on microfibers. Transplantation of neural stem/progenitor cells within a PCL microfiber scaffold may provide important biological and topographic cues that facilitate the survival, selective differentiation, and integration of transplanted cells to improve therapeutic strategies.
机译:生物材料是创新的生物医学和治疗应用的发展至关重要。基于生物材料的支架可以直接影响细胞分化,提高细胞为基础的战略。使用一种新的微流体方法,聚(ε-己内酯)(PCL),用于与不同直径(直和波浪)编造微纤维(3-40微米)和形貌。多能成体大鼠海马干/祖细胞(AHPCs)上的3D培养对准PCL微纤维支架调查其分化为神经元,星形胶质细胞和少突胶质能力。结果表明,该微纤维PCL显著增强AHPCs的增殖与对照相比,2D平面衬底。虽然AHPCs在PCL支架上培养时保持它们的多分化能力,存在当与在平坦表面上生长相比,星形胶质细胞和少突胶质细胞分化免疫标记一个显著和显着增加。我们的研究结果显示,增殖的3.5倍和星形胶质细胞分化23.4倍的增加对微纤维细胞。一个PCL超细纤维支架内神经干/祖细胞移植可以提供有利于生存,选择性分化和移植细胞的整合,以提高治疗策略重要的生物和地形的线索。

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