首页> 外文期刊>Tissue engineering, Part C. Methods >Maintenance of human embryonic stem cells in media conditioned by human mesenchymal stem cells obviates the requirement of exogenous basic fibroblast growth factor supplementation
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Maintenance of human embryonic stem cells in media conditioned by human mesenchymal stem cells obviates the requirement of exogenous basic fibroblast growth factor supplementation

机译:在人间充质干细胞调节的培养基中维持人胚胎干细胞,消除了对外源性碱性成纤维细胞生长因子补充的需要

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Despite the improvements in the human embryonic stem cell (hESC) culture systems, very similar conditions to those used to maintain hESCs on mouse feeders are broadly applied to culture methods based on human feeders. Indeed, basic fibroblast growth factor (bFGF), a master hESC-sustaining factor, is still added in nearly all medium formulations for hESC propagation. Human foreskin fibroblasts (HFFs) and mesenchymal stem cells (MSCs) used as feeders have recently been reported to support hESC growth without exogenous bFGF. However, whether hESCs may be maintained undifferentiated without exogenous bFGF using media conditioned (CM) by human feeders remains elusive. We hypothesize that HFFs and hMSCs are likely to be functionally different and therefore the mechanisms by which HFF-CM and MSC-CM support undifferentiated growth of hESCs may differ. We have thus determined whether HFF-CM and/or MSC-CM sustain feeder-free undifferentiated growth of hESC without exogenous supplementation of bFGF. We report that hMSCs synthesize higher levels of endogenous bFGF than HFFs. Accordingly and in contrast to HFF-CM, MSC-CM produced without the addition of exogenous bFGF supports hESC pluripotency and culture homeostasis beyond 20 passages without the need of bFGF supplementation. hESCs maintained without exogenous bFGF in MSC-CM retained hESC morphology and expression of pluripotency surface markers and transcription factors, formed teratomas, and showed spontaneous and lineage-directed in vitro differentiation capacity. Our data indicate that MSC-CM, but not HFF-CM, provides microenvironment cues supporting feeder-free long-term maintenance of pluripotent hESCs and obviates the requirement of exogenous bFGF at any time.
机译:尽管人类胚胎干细胞(hESC)培养系统有所改进,但与在小鼠饲养层上维持hESC的条件非常相似的条件已广泛应用于基于人类饲养层的培养方法。实际上,基本的成纤维细胞生长因子(bFGF)是一种主要的hESC维持因子,几乎仍在hESC繁殖的所有培养基配方中添加。最近有报道称人类包皮成纤维细胞(HFFs)和间充质干细胞(MSCs)用作饲养细胞可支持hESC的生长而无需外源性bFGF。然而,使用人类饲养者条件培养基(CM)是否可以在没有外源性bFGF的情况下保持hESC的未分化状态仍然不清楚。我们假设HFF和hMSC可能在功能上有所不同,因此HFF-CM和MSC-CM支持hESCs未分化生长的机制可能不同。因此,我们确定了HFF-CM和/或MSC-CM是否在没有外源补充bFGF的情况下维持hESC的无饲养层的未分化生长。我们报告说,hMSC比HFF合成更高水平的内源性bFGF。因此,与HFF-CM相反,在不添加外源bFGF的情况下产生的MSC-CM支持hESC多能性和超过20代的培养动态平衡,而无需补充bFGF。 MSC-CM中没有外源性bFGF的hESC保持了hESC的形态以及多能性表面标志物和转录因子的表达,形成了畸胎瘤,并表现出自发和谱系定向的体外分化能力。我们的数据表明,MSC-CM,而不是HFF-CM,提供了微环境线索,支持多能性hESC的无饲养者长期维持,并随时消除了外源性bFGF的需求。

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