Feeder-free maintenance of hESCs in mesenchymal stem cell-conditioned media: distinct requirements for TGF-β and IGF-II

被引:0
作者
Rosa Montes
Gertrudis Ligero
Laura Sanchez
Purificación Catalina
Teresa de la Cueva
Ana Nieto
Gustavo J Melen
Ruth Rubio
Javier García-Castro
Clara Bueno
Pablo Menendez
机构
[1] Andalusian Stem Cell Bank,
[2] Instituto de Investigación Biomédica,undefined
[3] University of Granada,undefined
来源
Cell Research | 2009年 / 19卷
关键词
TGF-β; IGF-II; bFGF; human ESCs; mesenchymal stem cells; conditioned media; feeder-free;
D O I
暂无
中图分类号
学科分类号
摘要
A paracrine regulation was recently proposed in human embryonic stem cells (hESCs) grown in mouse embryonic fibroblast (MEF)-conditioned media (MEF-CM), where hESCs spontaneously differentiate into autologous fibroblast-like cells to maintain culture homeostasis by producing TGF-β and insulin-like growth factor-II (IGF-II) in response to basic fibroblast growth factor (bFGF). Although the importance of TGF-β family members in the maintenance of pluripotency of hESCs is widely established, very little is known about the role of IGF-II. In order to ease hESC culture conditions and to reduce xenogenic components, we sought (i) to determine whether hESCs can be maintained stable and pluripotent using CM from human foreskin fibroblasts (HFFs) and human mesenchymal stem cells (hMSCs) rather than MEF-CM, and (ii) to analyze whether the cooperation of bFGF with TGF-β and IGF-II to maintain hESCs in MEF-CM may be extrapolated to hESCs maintained in allogeneic mesenchymal stem cell (MSC)-CM and HFF-CM. We found that MSCs and HFFs express all FGF receptors (FGFR1-4) and specifically produce TGF-β in response to bFGF. However, HFFs but not MSCs secrete IGF-II. Despite the absence of IGF-II in MSC-CM, hESC pluripotency and culture homeostasis were successfully maintained in MSC-CM for over 37 passages. Human ESCs derived on MSCs and hESCs maintained in MSC-CM retained hESC morphology, euploidy, expression of surface markers and transcription factors linked to pluripotency and displayed in vitro and in vivo multilineage developmental potential, suggesting that IGF-II may be dispensable for hESC pluripotency. In fact, IGF-II blocking had no effect on the homeostasis of hESC cultures maintained either on HFF-CM or on MSC-CM. These data indicate that hESCs are successfully maintained feeder-free with IGF-II-lacking MSC-CM, and that the previously proposed paracrine mechanism by which bFGF cooperates with TGF-β and IGF-II in the maintenance of hESCs in MEF-CM may not be fully extrapolated to hESCs maintained in CM from human MSCs.
引用
收藏
页码:698 / 709
页数:11
相关论文
共 105 条
[1]  
Thomson JA(1998)Embryonic stem cell lines derived from human blastocysts Science 282 1145-1147
[2]  
Itskovitz-Eldor J(2005)Embryonic stem cell differentiation: emergence of a new era in biology and medicine Genes Dev 19 1129-1155
[3]  
Shapiro SS(2006)Human embryonic stem cells: a journey beyond cell replacement therapies Cytotherapy 8 530-541
[4]  
Keller G(2005)Differentiation of human embryonic stem cells after transplantation in immune-deficient mice Stem Cells 23 1242-1250
[5]  
Menendez P(2007)IGF and FGF cooperatively establish the regulatory stem cell niche of pluripotent human cells Nature 448 1015-1021
[6]  
Bueno C(2006)The stem-cell niche as an entity of action Nature 441 1075-1079
[7]  
Wang L(2008)Electron microscopy reveals the presence of viruses in mouse embryonic fibroblasts but neither in human embryonic fibroblasts nor in human mesenchymal cells used for hESC maintenance: toward an implementation of microbiological quality assurance program in stem cell banks Cloning Stem Cells 10 65-74
[8]  
Przyborski SA(2003)A culture system using human foreskin fibroblasts as feeder cells allows production of human embryonic stem cells Hum Reprod 18 1404-1409
[9]  
Bendall SC(2003)Human adult marrow cells support prolonged expansion of human embryonic stem cells in culture Stem Cells 21 131-142
[10]  
Stewart MH(2004)Retroviral transduction of hematopoietic cells differentiated from human embryonic stem cell-derived CD45(neg)PFV hemogenic precursors Mol Ther 10 1109-1120