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From the CoverPNAS Plus: Multifunctionalized hydrogels foster hNSC maturation in 3D cultures and neural regeneration in spinal cord injuries

机译:来自CoverPNAS Plus:多功能水凝胶可促进3D培养物中的hNSC成熟和脊髓损伤中的神经再生

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摘要

Three-dimensional cell cultures are leading the way to the fabrication of tissue-like constructs useful to developmental biology and pharmaceutical screenings. However, their reproducibility and translational potential have been limited by biomaterial and culture media compositions, as well as cellular sources. We developed a construct comprising synthetic multifunctionalized hydrogels, serum-free media, and densely seeded good manufacturing practice protocol-grade human neural stem cells (hNSC). We tracked hNSC proliferation, differentiation, and maturation into GABAergic, glutamatergic, and cholinergic neurons, showing entangled electrically active neural networks. The neuroregenerative potential of the “engineered tissue” was assessed in spinal cord injuries, where hNSC-derived progenitors and predifferentiated hNSC progeny, embedded in multifunctionalized hydrogels, were implanted. All implants decreased astrogliosis and lowered the immune response, but scaffolds with predifferentiated hNSCs showed higher percentages of neuronal markers, better hNSC engraftment, and improved behavioral recovery. Our hNSC-construct enables the formation of 3D functional neuronal networks in vitro, allowing novel strategies for hNSC therapies in vivo.
机译:三维细胞培养法正在引领制造对发育生物学和药物筛选有用的组织样构建体的方式。但是,它们的可复制性和翻译潜力受到生物材料和培养基成分以及细胞来源的限制。我们开发了一种包含合成多功能水凝胶,无血清培养基和密集接种的良好生产规范协议级人类神经干细胞(hNSC)的构建体。我们追踪了hNSC向GABA能,谷氨酸能和胆碱能神经元的增殖,分化和成熟,显示出纠缠的电活性神经网络。在脊髓损伤中评估了“工程组织”的神经再生潜力,植入了植入多功能水凝胶中的hNSC衍生祖细胞和预分化hNSC后代。所有植入物均减少了星形胶质细胞沉着症并降低了免疫反应,但具有预分化hNSC的支架显示出更高的神经元标记百分比,更好的hNSC植入和改善的行为恢复。我们的hNSC构建体能够在体外形成3D功能神经元网络,从而为体内hNSC治疗提供了新的策略。

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