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Generation of Virus-Free Induced Pluripotent Stem Cell Clones on a Synthetic Matrix via a Single Cell Subcloning in the Naïve State

机译:在天真状态下通过单细胞亚克隆在合成基质上产生无病毒诱导的多能干细胞克隆

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摘要

CD34+ cord blood cells can be reprogrammed effectively on dishes coated with a synthetic RGD motif polymer (PronectinF®) using a temperature sensitive Sendai virus vector (SeV TS7) carrying reprogramming factors OCT3/4, SOX2, KLF4 and c-MYC. Dish-shaped human ES cell-like colonies emerged in serum-free primate ES cell medium (supplemented with bFGF) in 20% O2 culture conditions. The copy numbers of SeV TS7 vectors in the cytoplasm were drastically reduced by a temperature shift at 38°C for three days. Then, single cells from colonies were seeded on PronectinF®-coated 96-well plates and cultured under naïve culture conditions (N2B27-based medium supplemented with LIF, forskolin, a MAPK inhibitor, and a GSK inhibitor in 5% O2) for cloning purpose. Dome-shaped mouse ES cell-like colonies from single cells emerged on PronectinF®-coated dishes. These cells were collected and cultured again in primate ES cell medium supplemented with bFGF in 20% O2 and maintained on PronectinF®-coated dishes. Cells were assessed for reprogramming, including the absence of residual SeV and their potential for three germ layer differentiation. Generation of virus-free induced pluripotent stem cell (iPSC) clones from single cells under feeder-free conditions will solve some of the safety concerns related to use of xeno- or allogeneic-material in culture, and contribute to the characterization and the standardization of iPS cells intended for use in a clinical setting.
机译:使用带有重编程因子OCT3 / 4,SOX2,KLF4和c-MYC的温度敏感的仙台病毒载体(SeV TS7),可以在涂有合成RGD基序聚合物(PronectinF®)的培养皿上有效地对CD34 +脐带血细胞进行重编程。在20%O2培养条件下,无血清的灵长类ES细胞培养基(补充bFGF)中出现了碟形的人ES细胞样集落。通过在38℃下温度变化三天,细胞质中SeV TS7载体的拷贝数急剧减少。然后,将来自菌落的单细胞接种到包被PronectinF®的96孔板上,并在纯朴的培养条件下(N2B27培养基中添加LIF,福司可林,MAPK抑制剂和5%O2的GSK抑制剂)进行克隆。 。在PronectinF®涂层的培养皿中出现了单个细胞的圆顶形小鼠ES细胞样菌落。收集这些细胞,并在补充有20%O2中bFGF的灵长类ES细胞培养基中再次培养,并保留在PronectinF®包被的培养皿中。评估细胞的重编程,包括不存在残留的SeV及其对三种胚层分化的潜力。在无饲养层的条件下从单细胞中产生无病毒的诱导性多能干细胞(iPSC)克隆将解决与异种或同种异体材料在培养物中的使用有关的一些安全问题,并有助于特征鉴定和标准化打算在临床环境中使用的iPS细胞。

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