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通过调节Wnt信号和培养条件促进人胚胎干细胞的更新或分化。

Promoting human embryonic stem cell renewal or differentiation by modulating Wnt signal and culture conditions.

作者信息

Cai Liuhong, Ye Zhaohui, Zhou Betty Ying, Mali Prashant, Zhou Canquan, Cheng Linzhao

机构信息

Institute for Cell Engineering, Department of Gynecology & Obstetrics, the Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Cell Res. 2007 Jan;17(1):62-72. doi: 10.1038/sj.cr.7310138. Epub 2007 Jan 9.

Abstract

We previously showed that Wnt3a could stimulate human embryonic stem (hES) cell proliferation and affect cell fate determination. In the absence of feeder cell-derived factors, hES cells cultured under a feeder-free condition survived and proliferated poorly. Adding recombinant Wnt3a in the absence of feeder cell derived-factors stimulated hES cell proliferation but also differentiation. In the present study, we further extended our analysis to other Wnt ligands such as Wnt1 and Wnt5a. While Wnt1 displayed a similar effect on hES cells as Wnt3a, Wnt5a had little effect in this system. Wnt3a and Wnt1 enhanced proliferation of undifferentiated hES cells when feeder-derived self-renewal factors and bFGF are also present. To explore the possibility to promote the proliferation of undifferentiated hES cells by activating the Wnt signaling, we overexpressed Wnt3a or Wnt1 gene in immortalized human adult fibroblast (HAFi) cells that are superior in supporting long-term growth of undifferentiated hES cells than primary mouse embryonic fibroblasts. HAFi cells with or without a Wnt transgene can be propagated indefinitely. Over-expression of the Wnt3a gene significantly enhanced the ability of HAFi feeder cells to support the undifferentiated growth of 3 different hES cell lines we tested. Co-expression of three commonly-used drug selection genes in Wnt3a-overpressing HAFi cells further enabled us to select rare hES clones after stable transfection or transduction. These immortalized engineered feeder cells (W3R) that co-express growth-promoting genes such as Wnt3a and three drug selection genes should empower us to efficiently make genetic modified hES cell lines for basic and translational research.

摘要

我们之前的研究表明,Wnt3a能够刺激人类胚胎干细胞(hES)增殖并影响细胞命运的决定。在没有饲养层细胞衍生因子的情况下,在无饲养层条件下培养的hES细胞存活且增殖能力较差。在没有饲养层细胞衍生因子时添加重组Wnt3a可刺激hES细胞增殖,但也会导致细胞分化。在本研究中,我们进一步将分析扩展至其他Wnt配体,如Wnt1和Wnt5a。虽然Wnt1对hES细胞的作用与Wnt3a相似,但Wnt5a在该系统中几乎没有作用。当存在饲养层衍生的自我更新因子和碱性成纤维细胞生长因子(bFGF)时,Wnt3a和Wnt1可增强未分化hES细胞的增殖。为了探索通过激活Wnt信号来促进未分化hES细胞增殖的可能性,我们在永生化的人类成人成纤维细胞(HAFi)中过表达Wnt3a或Wnt1基因,与原代小鼠胚胎成纤维细胞相比,HAFi细胞在支持未分化hES细胞长期生长方面更具优势。携带或不携带Wnt转基因的HAFi细胞均可无限增殖。Wnt3a基因的过表达显著增强了HAFi饲养层细胞支持我们测试的3种不同hES细胞系未分化生长的能力。在过表达Wnt3a的HAFi细胞中共表达三种常用的药物筛选基因,进一步使我们能够在稳定转染或转导后筛选出罕见的hES克隆。这些共表达如Wnt3a等促生长基因和三种药物筛选基因的永生化工程饲养细胞(W3R)应能使我们高效地制备用于基础研究和转化研究的基因修饰hES细胞系。

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