KU Leuven, Interdepartmental Stem Cell Institute, Department of Development and Regeneration, Stem Cell Biology and Embryology, Leuven, Belgium.
University of Groningen, University Medical Center Groningen (UMCG), Pathology and Medical Biology, Division of Medical Biology, Section Immunoendocrinology, Groningen, The Netherlands.
PLoS One. 2018 May 11;13(5):e0197046. doi: 10.1371/journal.pone.0197046. eCollection 2018.
Multipotent Adult Progenitor Cells (MAPCs) are one potential stem cell source to generate functional hepatocytes or β-cells. However, human MAPCs have less plasticity than pluripotent stem cells (PSCs), as their ability to generate endodermal cells is not robust. Here we studied the role of 14 transcription factors (TFs) in reprogramming MAPCs to induced endodermal progenitor cells (iENDO cells), defined as cells that can be long-term expanded and differentiated to both hepatocyte- and endocrine pancreatic-like cells. We demonstrated that 14 TF-iENDO cells can be expanded for at least 20 passages, differentiate spontaneously to hepatocyte-, endocrine pancreatic-, gut tube-like cells as well as endodermal tumor formation when grafted in immunodeficient mice. Furthermore, iENDO cells can be differentiated in vitro into hepatocyte- and endocrine pancreatic-like cells. However, the pluripotency TF OCT4, which is not silenced in iENDO cells, may contribute to the incomplete differentiation to mature cells in vitro and to endodermal tumor formation in vivo. Nevertheless, the studies presented here provide evidence that reprogramming of adult stem cells to an endodermal intermediate progenitor, which can be expanded and differentiate to multiple endodermal cell types, might be a valid alternative for the use of PSCs for creation of endodermal cell types.
多能成体祖细胞(MAPCs)是一种潜在的干细胞来源,可以生成功能性肝细胞或β细胞。然而,人类 MAPCs 的可塑性不如多能干细胞(PSCs)强,因为它们生成内胚层细胞的能力不强大。在这里,我们研究了 14 种转录因子(TFs)在将 MAPCs 重编程为诱导内胚层祖细胞(iENDO 细胞)中的作用,iENDO 细胞被定义为能够长期扩增并分化为肝细胞和内分泌胰腺样细胞的细胞。我们证明,14 种 TF-iENDO 细胞至少可以扩增 20 代,在免疫缺陷小鼠中可以自发分化为肝细胞、内分泌胰腺样细胞、肠管状细胞以及内胚层肿瘤形成。此外,iENDO 细胞可以在体外分化为肝细胞和内分泌胰腺样细胞。然而,未在 iENDO 细胞中沉默的多能性 TF OCT4 可能导致体外不完全分化为成熟细胞,并导致体内内胚层肿瘤形成。尽管如此,本研究提供的证据表明,将成体干细胞重编程为能够扩增和分化为多种内胚层细胞类型的内胚层中间祖细胞,可能是使用 PSCs 来创建内胚层细胞类型的有效替代方法。