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Feeder-Free Generation and Long-Term Culture of Human Induced Pluripotent Stem Cells Using Pericellular Matrix of Decidua Derived Mesenchymal Cells

机译:使用蜕膜来源的间充质细胞的周细胞基质,无饲养细胞的人诱导多能干细胞的长期培养。

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摘要

Human ES cells (hESCs) and human induced pluripotent stem cells (hiPSCs) are usually generated and maintained on living feeder cells like mouse embryonic fibroblasts or on a cell-free substrate like Matrigel. For clinical applications, a quality-controlled, xenobiotic-free culture system is required to minimize risks from contaminating animal-derived pathogens and immunogens. We previously reported that the pericellular matrix of decidua-derived mesenchymal cells (PCM-DM) is an ideal human-derived substrate on which to maintain hiPSCs/hESCs. In this study, we examined whether PCM-DM could be used for the generation and long-term stable maintenance of hiPSCs. Decidua-derived mesenchymal cells (DMCs) were reprogrammed by the retroviral transduction of four factors (OCT4, SOX2, KLF4, c-MYC) and cultured on PCM-DM. The established hiPSC clones expressed alkaline phosphatase, hESC-specific genes and cell-surface markers, and differentiated into three germ layers in vitro and in vivo. At over 20 passages, the hiPSCs cultured on PCM-DM held the same cellular properties with genome integrity as those at early passages. Global gene expression analysis showed that the GDF3, FGF4, UTF1, and XIST expression levels varied during culture, and GATA6 was highly expressed under our culture conditions; however, these gene expressions did not affect the cells’ pluripotency. PCM-DM can be conveniently prepared from DMCs, which have a high proliferative potential. Our findings indicate that PCM-DM is a versatile and practical human-derived substrate that can be used for the feeder-cell-free generation and long-term stable maintenance of hiPSCs.
机译:人ES细胞(hESCs)和人诱导多能干细胞(hiPSC)通常在活的饲养细胞(如小鼠胚胎成纤维细胞)或无细胞的基质(如Matrigel)上生成并维持。对于临床应用,需要质量控制的,无异源生物的培养系统,以最大程度地减少污染动物源性病原体和免疫原的风险。我们以前曾报道,蜕膜来源的间充质细胞(PCM-DM)的细胞周围基质是理想的人类来源的底物,可在其上维持hiPSCs / hESCs。在这项研究中,我们检查了PCM-DM是否可用于hiPSC的生成和长期稳定的维护。蜕膜来源的间充质细胞(DMC)通过逆转录病毒转导四个因子(OCT4,SOX2,KLF4,c-MYC)重新编程,并在PCM-DM上培养。建立的hiPSC克隆表达碱性磷酸酶,hESC特异性基因和细胞表面标记,并在体外和体内分化为三个胚层。在超过20代中,在PCM-DM上培养的hiPSC具有与早期代相同的细胞特性和基因组完整性。全局基因表达分析表明,在培养过程中GDF3,FGF4,UTF1和XIST表达水平有所不同,在我们的培养条件下GATA6高度表达。然而,这些基因表达并不影响细胞的多能性。 PCM-DM可以方便地由具有高增殖潜力的DMC制备。我们的发现表明,PCM-DM是一种多功能且实用的人源底物,可用于无饲养细胞的产生以及hiPSC的长期稳定维护。

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