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使用生长因子和小分子进行确定性内胚层诱导方法的差异。

Differences in definitive endoderm induction approaches using growth factors and small molecules.

机构信息

Drug Research Program, Faculty of Pharmacy, Division of Pharmaceutical Biosciences, University of Helsinki, Helsinki, Finland.

Computational Bio Big-Data Open Innovation Laboratory (CBBD-OIL), National Institute of Advanced Industrial Science and Technology (AIST), Tokyo, Japan.

出版信息

J Cell Physiol. 2018 Apr;233(4):3578-3589. doi: 10.1002/jcp.26214. Epub 2017 Nov 23.

Abstract

Definitive endoderm (DE) is the first stage of human pluripotent stem cell (hPSC) differentiation into hepatocyte-like cells. Developing human liver cell models for pharmaceutical applications is highly demanding. Due to the vast number of existing protocols to generate DE cells from hPSCs, we aimed to compare the specificity and efficiency of selected published differentiation conditions. We differentiated two hPSC lines (induced PSC and embryonic stem cell) to DE cells on Matrigel matrix using growth factors (Activin A and Wnt-3a) and small molecules (sodium butyrate and IDE 1) in different combinations. By studying dynamic changes during 6 days in cell morphology and the expression of markers for pluripotency, DE, and other germ layer lineages, we found that Activin A is essential for DE differentiation, while Wnt-3a and sodium butyrate are dispensable. Although sodium butyrate exerted rapid DE differentiation kinetics, it caused massive cell death and could not generate sufficient cells for further differentiation and applications. We further discover that IDE 1 could not induce DE as reported previously. Hereby, we compared different conditions for DE induction and found an effective six day-protocol to obtain DE cells for the further differentiation and applications.

摘要

终末内胚层(DE)是人类多能干细胞(hPSC)分化为肝样细胞的第一阶段。开发用于药物应用的人类肝脏细胞模型的要求非常高。由于有大量现有的从 hPSC 生成 DE 细胞的方案,我们旨在比较选定的已发表分化条件的特异性和效率。我们使用生长因子(激活素 A 和 Wnt-3a)和小分子(丁酸钠和 IDE1)在不同组合下,在 Matrigel 基质上将两种 hPSC 系(诱导 PSC 和胚胎干细胞)分化为 DE 细胞。通过研究 6 天内细胞形态和多能性、DE 和其他胚层谱系标志物表达的动态变化,我们发现激活素 A 对于 DE 分化是必需的,而 Wnt-3a 和丁酸钠是可有可无的。尽管丁酸钠能快速诱导 DE 分化,但它会导致大量细胞死亡,无法产生足够的细胞用于进一步分化和应用。我们还发现 IDE1 不能如先前报道的那样诱导 DE。在此,我们比较了不同的 DE 诱导条件,并找到了一种有效的六天方案,可获得 DE 细胞,用于进一步分化和应用。

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