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Directed Pancreatic Acinar Differentiation of Mouse Embryonic Stem Cells via Embryonic Signalling Molecules and Exocrine Transcription Factors

机译:通过胚胎信号分子和外分泌转录因子指导小鼠胚胎干细胞的胰腺腺泡分化。

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摘要

Pluripotent embryonic stem cells (ESC) are a promising cellular system for generating an unlimited source of tissue for the treatment of chronic diseases and valuable in vitro differentiation models for drug testing. Our aim was to direct differentiation of mouse ESC into pancreatic acinar cells, which play key roles in pancreatitis and pancreatic cancer. To that end, ESC were first differentiated as embryoid bodies and sequentially incubated with activin A, inhibitors of Sonic hedgehog (Shh) and bone morphogenetic protein (BMP) pathways, fibroblast growth factors (FGF) and retinoic acid (RA) in order to achieve a stepwise increase in the expression of mRNA transcripts encoding for endodermal and pancreatic progenitor markers. Subsequent plating in Matrigel® and concomitant modulation of FGF, glucocorticoid, and folllistatin signalling pathways involved in exocrine differentiation resulted in a significant increase of mRNAs encoding secretory enzymes and in the number of cells co-expressing their protein products. Also, pancreatic endocrine marker expression was down-regulated and accompanied by a significant reduction in the number of hormone-expressing cells with a limited presence of hepatic marker expressing-cells. These findings suggest a selective activation of the acinar differentiation program. The newly differentiated cells were able to release α-amylase and this feature was greatly improved by lentiviral-mediated expression of Rbpjl and Ptf1a, two transcription factors involved in the maximal production of digestive enzymes. This study provides a novel method to produce functional pancreatic exocrine cells from ESC.
机译:多能胚胎干细胞(ESC)是一种有前途的细胞系统,可产生无限量的组织来源用于治疗慢性疾病,并具有用于药物测试的有价值的体外分化模型。我们的目标是将小鼠胚胎干细胞分化为胰腺腺泡细胞,在胰腺炎和胰腺癌中起关键作用。为此,ESC首先被分化为胚状体,然后与激活素A,Sonic刺猬(Shh)和骨形态发生蛋白(BMP)途径的抑制剂,成纤维细胞生长因子(FGF)和视黄酸(RA)一起温育。编码内胚层和胰腺祖细胞标记物的mRNA转录物的表达逐步增加。随后在Matrigel®中进行铺板以及与外分泌分化有关的FGF,糖皮质激素和folllistatin信号通路的相关调节导致编码分泌酶的mRNA显着增加,并共同表达其蛋白质产物。而且,胰腺内分泌标志物的表达被下调,并且伴随着肝标志物表达细胞的有限存在,激素表达细胞的数量显着减少。这些发现表明腺泡分化程序的选择性激活。新分化的细胞能够释放α-淀粉酶,并且慢病毒介导的Rbpjl和Ptf1a的表达大大改善了这一特征,Rbpjl和Ptf1a是参与最大程度消化酶生成的两个转录因子。这项研究提供了一种从ESC生产功能性胰腺外分泌细胞的新方法。

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