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Synthetic hydrogel platform for three-dimensional culture of embryonic stem cell-derived motor neurons

机译:用于胚胎干细胞源性运动神经元三维培养的合成水凝胶平台

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Culturing mammalian neurons in three-dimensional (3D) microenvironments that more closely recapitulate critical biochemical and biophysical aspects of the developing or adult central nervous system (CNS) milieu remains a significant challenge in neurobiological studies and in regenerative medicine. Here, we aimed to exploit recent advances in poly(ethylene glycol) (PEG) hydrogel chemistries to define a synthetic niche capable of supporting the culture and axonal outgrowth of both aggregated and dissociated mouse embryonic stem cell-derived motor neurons (ESMNs). Using thiol-ene click chemistry to create peptide crosslinked PEG hydrogels, we identified a hydrogel formulation that promotes neuronal survival and axon outgrowth through cell-extracellular matrix interactions, such as those between the laminin-derived peptide YIGSR and its integrin, and that allows neurons to remodel their extracellular environment through matrix metalloproteinase (MMP)-mediated polymer network degradation. Our results demonstrate a 3D platform for culture of both aggregated and single mammalian motor nerve cells that not only permits cell survival over more than a week of culture, but also allows for the robust extension of motor axons. In addition, the optical transparency of the hydrogel allows simultaneous imaging of live cell functions, and as such, this material system should prove useful for studying fundamental aspects of neuronal development.
机译:在更紧密地概括发育中或成年中枢神经系统(CNS)环境关键生物化学和生物物理方面的三维(3D)微环境中培养哺乳动物神经元仍然是神经生物学研究和再生医学中的重大挑战。在这里,我们旨在利用聚乙二醇(PEG)水凝胶化学的最新进展来定义能够支持聚集和解离的小鼠胚胎干细胞衍生的运动神经元(ESMNs)的培养和轴突生长的合成生态位。我们使用硫醇-烯点击化学技术创建肽交联的PEG水凝胶,我们确定了一种水凝胶制剂,可通过细胞-细胞外基质相互作用(例如层粘连蛋白衍生的肽YIGSR和其整联蛋白之间的相互作用)促进神经元存活和轴突生长。通过基质金属蛋白酶(MMP)介导的聚合物网络降解来重塑细胞外环境。我们的结果表明,用于培养聚集的哺乳动物运动神经细胞和单个哺乳动物运动神经细胞的3D平台不仅可以使细胞存活超过一周的培养时间,而且还可以使运动轴突得以稳健扩展。另外,水凝胶的光学透明性允许同时对活细胞功能进行成像,因此,这种材料系统应证明对研究神经元发育的基本方面很有用。

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