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首页> 外文期刊>Biomaterials Science >Concentration dependent neural differentiation and neurite extension of mouse ESC on primary amine-derivatized surfaces
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Concentration dependent neural differentiation and neurite extension of mouse ESC on primary amine-derivatized surfaces

机译:伯胺衍生表面上小鼠ESC的浓度依赖性神经分化和神经突延伸

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摘要

Cell sourcing continues to be a significant limitation to regenerative medicine especially in neural lineages where population heterogeneity during in vitro culture prevents definitive phenotype assessment. For nearly 40 years, the biological community has worked with amine-derivated surfaces and hydrogels, especially alginate, with little quantitative assessment of how local amine concentration influences the extent of neural differentiation and neurite extension. In this manuscript we show that the local concentration of amines distinctly influences mouse embryonic stem cell (ESC) lineage commitment and the length of neurite extensions both of which are early indicators of differentiation. The well-defined amine gradients are a highly relevant tool for identifying these critical concentrations and thresholds. We feel these results will be of critical importance to researchers developing new ex vivo culture materials for neural applications as well as the community exploring nerve regeneration in vivo.
机译:细胞来源仍然是再生医学的重要限制,特别是在神经谱系中,在体外培养过程中种群异质性阻碍了明确的表型评估。近40年来,生物界一直在处理胺衍生的表面和水凝胶,尤其是藻酸盐,几乎没有定量评估局部胺浓度如何影响神经分化和神经突扩展的程度。在此手稿中,我们表明胺的局部浓度明显影响小鼠胚胎干细胞(ESC)谱系的定型和神经突延伸的长度,这两者都是分化的早期指标。定义明确的胺梯度是识别这些关键浓度和阈值的高度相关的工具。我们认为这些结果对于研究人员开发用于神经应用的新型离体培养材料以及探索体内神经再生的社区至关重要。

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