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Germline-Competent Mouse-Induced Pluripotent Stem Cell Lines Generated on Human Fibroblasts without Exogenous Leukemia Inhibitory Factor

机译:在没有外源性白血病抑制因子的人成纤维细胞上产生的胚系能小鼠诱导的多能干细胞系

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摘要

Induced pluripotent stem (iPS) cells have attracted enormous attention due to their vast potential in regenerative medicine, pharmaceutical screening and basic research. Most prior established iPS cell lines were derived and maintained on mouse embryonic fibroblast (MEF) cells supplemented with exogenous leukemia inhibitory factor (LIF). Drawbacks of MEF cells impede optimization as well as dissection of reprogramming events and limit the usage of iPS cell derivatives in therapeutic applications. In this study, we develop a reproducible protocol for efficient reprogramming mouse neural progenitor cells (NPCs) on human foreskin fibroblast (HFF) cells via retroviral transfer of human transcriptional factors OCT4/SOX2/KLF4/C-MYC. Two independent iPS cell lines are derived without exogenous LIF. They display typical undifferentiated morphology and express pluripotency markers Oct4 and Sox2. Transgenes are inactivated and the endogenous Oct4 promoter is completely demethylated in the established iPS cell lines, indicating a fully reprogrammed state. Moreover, the iPS cells can spontaneously differentiate or be induced into various cell types of three embryonic germ layers in vitro and in vivo when they are injected into immunodeficient mice for teratoma formation. Importantly, iPS cells extensively integrate with various host tissues and contribute to the germline when injected into the blastocysts. Interestingly, these two iPS cell lines, while both pluripotent, exhibit distinctive differentiation tendencies towards different lineages. Taken together, the data describe the first genuine mouse iPS cell lines generated on human feeder cells without exogenous LIF, providing a reliable tool for understanding the molecular mechanisms of nuclear reprogramming.
机译:诱导多能干(iPS)细胞由于其在再生医学,药物筛选和基础研究中的巨大潜力而​​引起了极大的关注。大多数先前建立的iPS细胞系均衍生并维持在补充有外源性白血病抑制因子(LIF)的小鼠胚胎成纤维细胞(MEF)细胞上。 MEF细胞的缺点阻碍了优化以及解剖重编程事件,并限制了iPS细胞衍生物在治疗应用中的使用。在这项研究中,我们通过人类转录因子OCT4 / SOX2 / KLF4 / C-MYC的逆转录病毒转移,为人类包皮成纤维细胞(HFF)细胞上的小鼠神经祖细胞(NPC)高效重编程开发了可重现的协议。无需外部LIF即可获得两个独立的iPS细胞系。它们显示出典型的未分化形态,并表达多能性标记Oct4和Sox2。转基因被灭活,内源的Oct4启动子在已建立的iPS细胞系中完全脱甲基,表明其处于完全重编程状态。此外,当将iPS细胞注射入免疫缺陷小鼠以形成畸胎瘤时,它们可以在体外和体内自发分化或被诱导为三种胚芽层的各种细胞类型。重要的是,iPS细胞可广泛整合到各种宿主组织中,并在注入胚泡时有助于种系。有趣的是,这两种iPS细胞系虽然都具有多能性,但它们向不同谱系显示出独特的分化趋势。综上所述,数据描述了在没有外源LIF的人饲养细胞上产生的首批真正的小鼠iPS细胞系,为理解核重编程的分子机制提供了可靠的工具。

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