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Three-dimensional graphene foam as a biocompatible and conductive scaffold for neural stem cells

机译:三维石墨烯泡沫作为神经干细胞的生物相容性和导电支架

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摘要

Neural stem cell (NSC) based therapy provides a promising approach for neural regeneration. For the success of NSC clinical application, a scaffold is required to provide three-dimensional (3D) cell growth microenvironments and appropriate synergistic cell guidance cues. Here, we report the first utilization of graphene foam, a 3D porous structure, as a novel scaffold for NSCs in vitro. It was found that three-dimensional graphene foams (3D-GFs) can not only support NSC growth, but also keep cell at an active proliferation state with upregulation of Ki67 expression than that of two-dimensional graphene films. Meanwhile, phenotypic analysis indicated that 3D-GFs can enhance the NSC differentiation towards astrocytes and especially neurons. Furthermore, a good electrical coupling of 3D-GFs with differentiated NSCs for efficient electrical stimulation was observed. Our findings implicate 3D-GFs could offer a powerful platform for NSC research, neural tissue engineering and neural prostheses.
机译:基于神经干细胞(NSC)的疗法为神经再生提供了一种有前途的方法。对于成功的NSC临床应用,需要一个支架来提供三维(3D)细胞生长微环境和适当的协同细胞指导线索。在这里,我们报告首次利用石墨烯泡沫(一种3D多孔结构)作为一种新型的NSC体外支架。已经发现,与二维石墨烯膜相比,三维石墨烯泡沫(3D-GFs)不仅可以支持NSC的生长,而且还可以通过上调Ki67的表达使细胞保持活跃的增殖状态。同时,表型分析表明3D-GFs可以增强NSC向星形胶质细胞尤其是神经元的分化。此外,观察到3D-GF与分化的NSC的良好电耦合以进行有效的电刺激。我们的发现暗示3D-GFs可以为NSC研究,神经组织工程和神经假体提供强大的平台。

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