Unknown,Transcriptomics,Genomics,Proteomics

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Differentiation of human embryonic stem cells towards hepatocytes


ABSTRACT: To understand in detail the molecular phases that occur during the differentiation of human embryonic stem cells to hepatocyte-like cells we performed an RNA-seq time course of the stages of differentiation across the 21 day differentiation time course. We used a chemically defined (serum-free) protocol, modified from Si-Tayeb et al., 2010 and Song et al., 2009. We describe acquisition of definitive endoderm characteristics at day 3, followed by hepatoblast charcter at day 7-13 and then maturation to hepatocyte-like cells at day 21. Time course of differentiation of human embryoic stem cells to hepatocyte-like cells over 21 days, using an adapted chemically defined protocol of Song et al., 2009; Cell Research

ORGANISM(S): Homo sapiens

SUBMITTER: Andrew Hutchins 

PROVIDER: E-GEOD-70741 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

A sequential EMT-MET mechanism drives the differentiation of human embryonic stem cells towards hepatocytes.

Li Qiuhong Q   Hutchins Andrew P AP   Chen Yong Y   Li Shengbiao S   Shan Yongli Y   Liao Baojian B   Zheng Dejin D   Shi Xi X   Li Yinxiong Y   Chan Wai-Yee WY   Pan Guangjin G   Wei Shicheng S   Shu Xiaodong X   Pei Duanqing D  

Nature communications 20170503


Reprogramming has been shown to involve EMT-MET; however, its role in cell differentiation is unclear. We report here that in vitro differentiation of hESCs to hepatic lineage undergoes a sequential EMT-MET with an obligatory intermediate mesenchymal phase. Gene expression analysis reveals that Activin A-induced formation of definitive endoderm (DE) accompanies a synchronous EMT mediated by autocrine TGFβ signalling followed by a MET process. Pharmacological inhibition of TGFβ signalling blocks  ...[more]

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