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首页> 外文期刊>Molecular Neurobiology >The Differentiation of Human Endometrial Stem Cells into Neuron-Like Cells on Electrospun PAN-Derived Carbon Nanofibers with Random and Aligned Topographies
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The Differentiation of Human Endometrial Stem Cells into Neuron-Like Cells on Electrospun PAN-Derived Carbon Nanofibers with Random and Aligned Topographies

机译:在具有随机和排列拓扑结构的电纺PAN衍生碳纳米纤维上,人类子宫内膜干细胞向神经元样细胞的分化。

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摘要

Electrospun carbon nanofibers (CNFs) have great potential for applications in neural tissue regeneration due to their electrical conductivity, biocompatibility, and morphological similarity to natural extracellular matrix. In this study, we cultured human endometrial stem cells (hEnSCs) on electrospun CNFs with random and aligned topographies and demonstrated that hEnSCs could attach, proliferate, and differentiate into neural cells on both random and aligned CNFs. However, the proliferation, differentiation, and morphology of cells were affected by CNF morphology. Under the proliferative condition, hEnSCs showed lower proliferation on aligned CNFs than on random CNFs and on tissue culture plate (TCP) control. When cultured on aligned CNFs in neural induction media, hEnSCs showed significant upregulation of neuronal markers, NF-H and Tuj-1, and downregulation of neural progenitor marker (nestin) compared to that on random CNFs and on TCP. In contrast, hEnSCs showed higher expression of nestin and slight upregulation of oligodendrocyte marker (OLIG-2) on random CNFs compared to that on aligned CNFs and on TCP. SEM imaging revealed that differentiated cells extended along the CNF main axis on aligned CNFs but stretched multidirectionally on random CNFs. These findings suggest electrospun CNFs as proper substrate for stem cell differentiation into specific neural cells.
机译:电纺碳纳米纤维(CNFs)具有导电性,生物相容性以及与天然细胞外基质的形态相似性,在神经组织再生中具有巨大的应用潜力。在这项研究中,我们在电纺CNF上以随机和对齐的地形培养人子宫内膜干细胞(hEnSCs),并证明hEnSCs可以在随机和对齐的CNF上附着,增殖并分化为神经细胞。但是,细胞的增殖,分化和形态受到CNF形态的影响。在增殖条件下,hEnSCs在对齐的CNFs上的增殖低于随机CNFs和组织培养板(TCP)对照。与在随机CNF和TCP上相比,在神经诱导培养基中对齐的CNF上培养时,hEnSCs显示神经元标志物NF-H和Tuj-1显着上调,而神经祖细胞标志物(nestin)下调。相反,与对齐的CNF和TCP相比,hEnSCs在随机CNF上显示较高的巢蛋白表达和少突胶质细胞标记物(OLIG-2)的上调。 SEM图像显示,分化的细胞在对齐的CNF上沿CNF主轴延伸,但在随机CNF上多方向拉伸。这些发现表明,电纺CNF是干细胞分化成特定神经细胞的合适底物。

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