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Alignment of multiple glial cell populations in 3D nanofiber scaffolds: toward the development of multicellular implantable scaffolds for repair of neural injury

机译:3D纳米纤维支架中多个神经胶质细胞群体的对齐:朝着多细胞植入支架的发展来修复神经损伤

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摘要

Non-neuronal cells of the central nervous system (CNS), termed "neuroglia," play critical roles in neural regeneration; therefore, replacement of glial populations via implantable nanofabricated devices (providing a growth-permissive niche) is a promising strategy to enhance repair. Most constructs developed to date have lacked three-dimensionality, multiple glial populations and control over spatial orientations, limiting their ability to mimic in vivo neurocytoarchitecture. We describe a facile technique to incorporate multiple glial cell populations [astrocytes, oligodendrocyte precursor cells (OPCs) and oligodendrocytes] within a three-dimensional (3D) nanofabricated construct. Highly aligned nanofibers could induce elongation of astrocytes, while OPC survival, elongation and maturation required pre-aligned astrocytes. The potential to scale-up the numbers of constituent nanofiber layers is demonstrated with astrocytes. Such complex implantable constructs with multiple glial sub-populations in defined 3D orientations could represent an effective approach to reconstruct glial circuitry in neural injury sites.
机译:中枢神经系统(CNS)的非神经元细胞在神经再生中起着至关重要的作用。因此,通过可植入的纳米制造装置(提供允许生长的利基)替代神经胶质群是增强修复的有前途的策略。迄今开发的大多数构建体都缺乏三维性,多个神经胶质种群以及对空间方向的控制,从而限制了它们模仿体内神经细胞结构的能力。我们描述了一种简便的技术,可将三维(3D)纳米构造中的多个神经胶质细胞群体[星形胶质细胞,少突胶质细胞前体细胞(OPC)和少突胶质细胞]纳入其中。高度对齐的纳米纤维可以诱导星形胶质细胞伸长,而OPC存活,伸长和成熟则需要预先排列的星形胶质细胞。星形胶质细胞证明了扩大组成纳米纤维层数量的潜力。具有在定义的3D方向上的多个神经胶质亚群的这种复杂的可植入构造可能代表一种在神经损伤部位重建神经胶质回路的有效方法。

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