Department of Stem Cell and Regenerative Biology, Harvard Stem Cell Institute, Harvard University, Cambridge, MA 02138, USA.
Development. 2013 Feb 1;140(3):675-86. doi: 10.1242/dev.085431.
Embryonic stem (ES) cells hold great promise with respect to their potential to be differentiated into desired cell types. Of interest are organs derived from the definitive endoderm, such as the pancreas and liver, and animal studies have revealed an essential role for Nodal in development of the definitive endoderm. Activin A is a related TGFβ member that acts through many of the same downstream signaling effectors as Nodal and is thought to mimic Nodal activity. Detailed characterization of ES cell-derived endodermal cell types by gene expression analysis in vitro and functional analysis in vivo reveal that, despite their similarity in gene expression, Nodal and Activin-derived endodermal cells exhibit a distinct difference in functional competence following transplantation into the developing mouse embryo. Pdx1-expressing cells arising from the respective endoderm populations exhibit extended differences in their competence to mature into insulin/c-peptide-expressing cells in vivo. Our findings underscore the importance of functional cell-type evaluation during stepwise differentiation of stem cells.
胚胎干细胞(ES 细胞)具有很大的潜力,可以分化为所需的细胞类型。人们对来源于限定内胚层的器官很感兴趣,例如胰腺和肝脏,动物研究表明 Nodal 在限定内胚层的发育中起重要作用。激活素 A 是一种相关的 TGFβ 成员,它通过许多与 Nodal 相同的下游信号效应子发挥作用,被认为模拟了 Nodal 的活性。通过体外基因表达分析和体内功能分析对 ES 细胞衍生的内胚层细胞类型进行详细表征,揭示了尽管它们在基因表达上相似,但 Nodal 和激活素衍生的内胚层细胞在移植到发育中的小鼠胚胎后表现出明显不同的功能能力。来自各自内胚层群体的表达 Pdx1 的细胞在体内成熟为胰岛素/ C-肽表达细胞的能力上表现出明显的差异。我们的研究结果强调了在干细胞逐步分化过程中进行功能性细胞类型评估的重要性。