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Tissue Engineered, Guided Nerve Tube Consisting of Aligned Neural Stem Cells and Astrocytes

机译:组织工程化的,引导的神经管,由对齐的神经干细胞和星形胶质细胞组成

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摘要

Injury of the nervous system, particularly in the spinal cord, impairs the quality of life of the patient by resulting in permanent loss of neurologic function. The main limitation in spinal cord regeneration is the lack of extracellular matrix to guide nerves for functional recovery of the transected nerve tissue. In the present study, a tissue engineered nerve tube was prepared by wrapping neural stem cells (NSCs) on aligned fibers using a micropatterned film with astrocytes aligned along the microgrooves to support the NSCs. Initially the cell behavior on micropatterns and parallel fibers was investigated with cytoskeletal and nuclear staining, immunocytochemistry, and proliferation assay using the fiber and the film system separately. The results showed that both cells, NSCs in undifferentiated and astrocytes in differentiated form, were oriented in the direction of the guiding and support elements, the microgrooves, and the microfibers. They were able to grow and increase in number on these cell carriers. This trend was also maintained after the components were brought together in a nerve tube form and testing in coculture. The cells were able to survive and maintained their orientation in the 3D tissue engineered construct. The guided nerve tissue engineering approach tested in the present study with parallel NSCs and support cells in the tubular construct is expected to provide an appropriate environment for nerve regeneration in vivo.
机译:神经系统的损伤,特别是脊髓损伤,会导致神经功能的永久丧失,从而损害患者的生活质量。脊髓再生的主要局限性在于缺乏细胞外基质来引导神经以实现横断神经组织的功能恢复。在本研究中,组织工程化的神经管是通过将神经干细胞(NSC)包裹在对齐的纤维上而制备的,该纤维使用了微图案化的薄膜,星形胶质细胞沿着微沟槽对齐以支持NSC。最初,通过分别使用纤维和薄膜系统的细胞骨架和核染色,免疫细胞化学和增殖测定研究了微图案和平行纤维上的细胞行为。结果表明,两种细胞,未分化的NSC和分化形式的星形胶质细胞,都在引导和支撑元件,微槽和微纤维的方向上定向。它们能够在这些细胞载体上生长和增加数量。在将各成分以神经管形式组合在一起并进行共培养测试后,这种趋势也得以保持。细胞能够存活并在3D组织工程化构建体中保持其方向。在本研究中使用平行NSC和管状结构中的支持细胞测试的引导神经组织工程方法有望为体内神经再生提供合适的环境。

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