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首页> 外文期刊>Biotechnology and Bioengineering >Engineering three dimensional micro nerve tissue using postnatal stem cells from human dental apical papilla
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Engineering three dimensional micro nerve tissue using postnatal stem cells from human dental apical papilla

机译:使用来自人牙科顶乳头的后期干细胞工程三维微神经组织

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The in vitro generation of cell-based three dimensional (3D) nerve tissue is an attractive subject to improve graft survival and integration into host tissue for neural tissue regeneration or to model biological events in stem cell differentiation. Although 3D organotypic culture strategies are well established for 3D nerve tissue formation of pluripotent stem cells to study underlying biology in nerve development, cell-based nerve tissues have not been developed using human postnatal stem cells with therapeutic potential. Here, we established a culture strategy for the generation of in vitro cell-based 3D nerve tissue from postnatal stem cells from apical papilla (SCAPs) of teeth, which originate from neural crest-derived ectomesenchyme cells. A stem cell population capable of differentiating into neural cell lineages was generated during the ex vivo expansion of SCAPs in the presence of EGF and bFGF, and SCAPs differentiated into neural cells, showing neural cell lineage-related molecular and gene expression profiles, morphological changes and electrophysical property under neural-inductive culture conditions. Moreover, we showed the first evidence that 3D cell-based nerve-like tissue with axons and myelin structures could be generated from SCAPs via 3D organotypic culture using an integrated bioprocess composed of polyethylene glycol (PEG) microwell-mediated cell spheroid formation and subsequent dynamic culture in a high aspect ratio vessel (HARV) bioreactor. In conclusion, the culture strategy in our study provides a novel approach to develop in vitro engineered nerve tissue using SCAPs and a foundation to study biological events in the neural differentiation of postnatal stem cells. Biotechnol. Bioeng. 2017;114: 903-914. (c) 2016 Wiley Periodicals, Inc.
机译:基于细胞的三维(3D)神经组织的体外产生是一种有吸引力的受试者,可以将移植物存活和整合到宿主组织中以进行神经组织再生或在干细胞分化中模拟生物事件。虽然3D有机型培养策略对于多能干细胞的3D神经组织形成,但在神经发育中研究潜在的生物学,但尚未使用具有治疗潜力的人性产后干细胞进行细胞的神经组织。在这里,我们建立了从牙齿的顶端乳头(剪刀)的产后干细胞生成基于体外细胞的3D神经组织的培养策略,该牙齿来自神经嵴衍生的突出细胞细胞。在EGF和BFGF的存在下夹圈的离体膨胀期间产生能够区分神经细胞谱系的干细胞群,并且缩小到神经细胞中,显示神经细胞谱系相关的分子和基因表达谱,形态学变化和神经感应培养条件下的电神科性。此外,我们展示了第一种证据表明,通过使用由聚乙二醇(PEG)微孔介导的细胞球体形成和随后的动态,可以通过3D有机型培养物通过3D细胞和髓鞘结构的3D细胞的神经状组织通过3D有机型培养物产生夹子。高纵横比容器(HARV)生物反应器中的培养。总之,我们研究中的文化策略提供了一种用剪刀和基础在产后后期干细胞神经分化中研究生物事件的体外工程神经组织的新方法。 Biotechnol。生物。 2017; 114:903-914。 (c)2016 Wiley期刊,Inc。

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