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Lowering Oxygen Tension Enhances the Differentiation of Mouse Embryonic Stem Cells into Neuronal Cells

机译:降低氧气张力可增强小鼠胚胎干细胞向神经元细胞的分化

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Embryonic stem cells (ESC) are capable of proliferating indefinitely in vitro whilst retaining their ability to differentiate into cells of every adult lineage. Efficient, high yield processes, which direct differentiation of ESC to specific lineages, will underpin the development of cost-effective drug screening and cell therapy products. The aim of this study was to investigate whether laboratory oxygen tension currently used for the neuronal differentiation of ESC was suboptimal resulting in inefficient process yields. An adherent monolayer protocol for the neuronal differentiation of mouse ESC (mESC) was performed in oxygen controlled chambers using a chemically defined media over an 8 day period of culture. When exposed to oxygen tensions more appropriate to in vivo neuronal development (2% O2), there was a 34-fold increase in the yield of viable cells from the differentiation process. Low oxygen tension inhibited cell death during an early phase (48 to 96 h) and toward the end (120 to 192 h) of the process. The percentage of cells expressing neuronal markers was determined by flow cytometry, revealing a small rise in the βIII tubulin and a threefold increase in the MAP2 populations at 2% O2. The total increase in the yield of viable cells expressing neuronal markers was shown to be 55-fold for βIII tubulin and 114-fold for MAP2. In conclusion, this study revealed that low oxygen tension can be used to enhance the yield of neuronal cells derived from ESCs and has implications for the development of efficient, cost-effective production processes.
机译:胚胎干细胞(ESC)能够在体外无限增殖,同时保留了分化为每个成年谱系细胞的能力。将ESC分化为特定谱系的高效,高产量的方法将支撑具有成本效益的药物筛选和细胞疗法产品的开发。这项研究的目的是调查当前用于ESC的神经元分化的实验室氧压是否不是最优的,从而导致低效率的工艺产量。在化学控制的培养基中,经过8天的培养,在氧控制室中进行了用于小鼠ESC(mESC)神经元分化的粘附性单层实验方案。当暴露于更适合体内神经元发育的氧气压力(2%O2)时,分化过程中活细胞的产量增加了34倍。低氧压抑制了该过程的早期阶段(48至96小时)以及接近过程结束(120至192小时)的细胞死亡。通过流式细胞术确定表达神经元标志物的细胞的百分比,发现在2%的O2下,βIII微管蛋白小幅增加,而MAP2群体增加了三倍。表达神经元标记的活细胞的总产量显示,对于βIII微管蛋白而言,是55倍,对于MAP2是114倍。总之,这项研究表明低氧张力可用于提高源自ESC的神经元细胞的产量,并且对开发高效,具有成本效益的生产工艺具有影响。

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