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Mass transfer limitations in embryoid bodies during human embryonic stem cell differentiation

机译:人类胚胎干细胞分化过程中拟胚体的传质限制

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Due to their ability to differentiate into cell types from all the three germ layers and their potential unlimited capacity for expansion, embryonic stem cells have tremendous potential to treat diseases and injuries. Spontaneous differentiation of human embryonic stem cells (hESCs) is influenced by the size of the differentiating embryoid bodies (EBs). To further understand the dynamics between nutrient mass transfer, EB size, and stem cell differentiation, a transient mass diffusion model of a single hESC EB was constructed. The results revealed that the oxygen concentration at the centers of large EBs (400-μm radius) was 50% lower when compared to that in smaller EBs (200-μm radius). In addition, the concentration profile of cytokines within an EB depended strongly on their depletion rate, with higher depletion rates resulting in cytokine concentrations that varied significantly throughout the EB. A comparison of the results of our model with published experimental data reveals a close correlation between the fraction of cells that differentiate to a given lineage and the fraction of cells exposed to different oxygen or cytokine concentrations. This, along with other data from the literature, suggests that diffusive mass transfer influences the differentiation of hESCs within EBs by controlling the spatial distribution of soluble factors. This has important implications for research involving the differentiation of embryonic stem cells in EBs, as well as for bioprocess design and the development of robust differentiation protocols where mass transfer could be altered to control the cell differentiation trajectory.
机译:由于它们具有从所有三个胚层分化为细胞类型的能力以及潜在的无限扩展能力,因此胚胎干细胞在治疗疾病和损伤方面具有巨大的潜力。人胚胎干细胞(hESCs)的自发分化受分化胚状体(EBs)大小的影响。为了进一步了解养分传质,EB大小和干细胞分化之间的动力学关系,构建了单个hESC EB的瞬时质量扩散模型。结果表明,与较小的EB(半径为200μm)相比,大的EB(半径为400μm)中心的氧浓度低50%。此外,EB中细胞因子的浓度曲线在很大程度上取决于其耗竭率,较高的耗竭率导致整个EB中细胞因子浓度发生显着变化。我们的模型结果与已发布的实验数据的比较表明,分化为给定谱系的细胞比例与暴露于不同氧气或细胞因子浓度的细胞比例之间存在密切相关性。这以及来自文献的其他数据表明,扩散质量转移通过控制可溶性因子的空间分布来影响EB中hESC的分化。这对涉及EB中胚胎干细胞分化的研究,生物工艺设计和稳健的分化方案的开发具有重要意义,在该方案中可以改变传质以控制细胞分化轨迹。

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