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Carbon nanostructures as a scaffold for human embryonic stem cell differentiation toward photoreceptor precursors

机译:碳纳米结构作为人类的脚手架胚胎干细胞分化方向光感受器前体

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摘要

Carbon nanomaterials have been introduced as a scaffold for various biological applications due to their unique physical and electrical properties. Here we studied carbon nanotubes (CNTs) and carbon nanofibers (CNFs) as scaffold materials for the differentiation of human embryonic stem cells (hESCs) towards photoreceptor precursor cells (PRPs). We report on their cytoxicity, their effect on cell morphology, cell-surface interface and the differentiation process. To this end, hESCs were differentiated into PRPs on carbon nanofibers (CNFs), long horizontal CNTs (LHCNTs), vertically aligned CNTs (VACNTs) or glass (control) surfaces. The differentiated cells were investigated by immunohistochemistry, fluorescence imaging and electron microscopy. Our results revealed that the investigated nanomaterials were not cytotoxic to the cells during the differentiation process. The surface interface effect on the cells was apparent, affecting cell directionality, migration and morphology. Interestingly, cell fate was not dependent on the substrate type, as inferred from the similar dynamics of the loss of pluripotency and the comparable expression levels of the photoreceptor marker Crx for all investigated substrates. These results are important for better understanding the effect of nanomaterial surface interaction with differentiating neural cells in general, and for future use of these materials as scaffolds for differentiating photoreceptors for vision restoration in particular.
机译:介绍了碳纳米材料作为脚手架各种生物应用其独特的物理和电气属性。(碳纳米管)和碳纳米纤维支架(cnf)材料分化的人类胚胎干细胞(为)光感受器前体细胞(prp)。细胞毒,它们对细胞的影响形态、细胞表面和界面分化的过程。分化成prp在纳米碳纤维(cnf)、水平长碳纳米管(LHCNTs),垂直对齐碳纳米管(VACNTs)或玻璃(控制)表面。通过免疫组织化学方法研究了,荧光成像和电子显微镜。结果表明,调查纳米材料没有细胞毒性,细胞在分化过程中。界面对细胞的影响是明显的,影响细胞定向迁移和形态。依赖于基质类型,推断类似的动力学多能性的丧失类似的表达水平光感受器标记Crx调查基板。更好地了解纳米材料的影响表面与分化神经交互细胞一般,以备将来之用材料作为差异化的支架光感受器的视力恢复特定的。

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