McEwen Centre for Regenerative Medicine, University Health Network, Toronto, Ontario, Canada.
Development. 2011 Mar;138(5):861-71. doi: 10.1242/dev.055236. Epub 2011 Jan 26.
The generation of insulin-producing β-cells from human pluripotent stem cells is dependent on efficient endoderm induction and appropriate patterning and specification of this germ layer to a pancreatic fate. In this study, we elucidated the temporal requirements for TGFβ family members and canonical WNT signaling at these developmental stages and show that the duration of nodal/activin A signaling plays a pivotal role in establishing an appropriate definitive endoderm population for specification to the pancreatic lineage. WNT signaling was found to induce a posterior endoderm fate and at optimal concentrations enhanced the development of pancreatic lineage cells. Inhibition of the BMP signaling pathway at specific stages was essential for the generation of insulin-expressing cells and the extent of BMP inhibition required varied widely among the cell lines tested. Optimal stage-specific manipulation of these pathways resulted in a striking 250-fold increase in the levels of insulin expression and yielded populations containing up to 25% C-peptide+ cells.
从人类多能干细胞中生成产生胰岛素的β细胞依赖于高效的内胚层诱导,以及对该胚层向胰腺命运进行适当的模式和特化。在这项研究中,我们阐明了 TGFβ 家族成员和经典 WNT 信号在这些发育阶段的时间要求,并表明 nodal/激活素 A 信号的持续时间在建立合适的终末内胚层群体以特化为胰腺谱系中起着关键作用。发现 WNT 信号诱导后肠内胚层命运,并在最佳浓度下增强胰腺谱系细胞的发育。在特定阶段抑制 BMP 信号通路对于产生表达胰岛素的细胞是必不可少的,并且所需的 BMP 抑制程度在测试的细胞系之间差异很大。这些途径的最佳阶段特异性操作导致胰岛素表达水平显著提高 250 倍,并产生含有多达 25% C 肽+细胞的群体。