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A Reliable and Efficient Protocol for Human Pluripotent Stem Cell Differentiation into the Definitive Endoderm Based on Dispersed Single Cells

机译:一种可靠高效的基于分散单细胞的人多能干细胞分化为定形内胚层的协议

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摘要

Differentiation of pluripotent cells into endoderm-related cell types initially requires in vitro gastrulation into the definitive endoderm (DE). Most differentiation protocols are initiated from colonies of pluripotent cells complicating their adaption due to insufficiently defined starting conditions. The protocol described here was initiated from a defined cell number of dispersed single cells and tested on three different human embryonic stem cell lines and one human induced pluripotent stem cell line. Combined activation of ActivinA/Nodal signaling and GSK3 inhibition for the first 24 h, followed by ActivinA/Nodal signaling efficiently induced the DE state. Activation of ActivinA/Nodal signaling alone was not effective. Efficient GSK3 inhibition allowed the reduction of the ActivinA concentration during the entire protocol. A feeder-independent cultivation of pluripotent cells was preferred to achieve the high efficiency and robustness since feeder cells hindered the differentiation process. Additionally, inhibition of the phosphatidylinositol 3-kinase (PI3K) signaling pathway was not required, nonetheless yielding high cell numbers efficiently committed toward the DE. Finally, the endoderm generated could be differentiated further into PDX1-positive pan-pancreatic cells and NGN3-positive endocrine progenitors. Thus, this efficient and robust DE differentiation protocol is a step forward toward better reproducibility due to the well-defined conditions based on dispersed single cells from feeder-free-cultivated human pluripotent cells.
机译:首先,将多能细胞分化为与内胚层相关的细胞类型需要在体外​​将胃胚化成定形内胚层(DE)。大多数分化方案是从多能细胞集落开始的,由于起始条件不够明确,使它们的适应变得复杂。此处描述的协议从定义的分散单细胞数量开始,并在三种不同的人类胚胎干细胞系和一种人类诱导的多能干细胞系上进行测试。在最初的24小时内,激活素A / Nodal信号转导和GSK3抑制的联合激活,随后激活素A / Nodal信号转导有效地诱导了DE状态。单独激活ActivinA /节点信号是无效的。有效的GSK3抑制作用可降低整个方案中的ActivinA浓度。为了获得高效率和鲁棒性,优选不依赖饲养细胞的多能细胞培养,因为饲养细胞阻碍了分化过程。此外,不需要抑制磷脂酰肌醇3-激酶(PI3K)信号传导途径,尽管如此,仍可产生高密度的细胞,有效地向DE转移。最后,生成的内胚层可以进一步分化为PDX1阳性胰腺细胞和NGN3阳性内分泌祖细胞。因此,由于基于无饲养者培养的人多能细胞中分散的单个细胞的明确定义的条件,这种有效而强大的DE分化方案是朝着更好的可重复性迈出的一步。

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