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一种用于长期实时监测诱导多能干细胞多能性变化的实时多能性报告基因。

A real-time pluripotency reporter for the long-term and real-time monitoring of pluripotency changes in induced pluripotent stem cells.

作者信息

Shen Hong-Fen, Li Yong-Long, Huang Shi-Hao, Xia Jia-Wei, Yao Zhi-Fang, Xiao Gao-Fang, Zhou Ying, Li Ying-Chun, Shi Jun-Wen, Lin Xiao-Lin, Zhao Wen-Tao, Sun Yan, Tian Yu-Guang, Jia Jun-Shuang, Xiao Dong

机构信息

Cancer Research Institute, School of Basic Medical Science, Southern Medical University, Guangzhou 510515, China.

Laboratory Animal Center, Southern Medical University, Guangzhou 510515, China.

出版信息

Aging (Albany NY). 2022 May 15;14(10):4445-4458. doi: 10.18632/aging.204083.

Abstract

To master the technology of reprogramming mouse somatic cells to induced pluripotent stem cells (iPSCs), which will lay a good foundation for setting up a technology platform on reprogramming human cancer cells into iPSCs. Mouse iPSCs (i.e., Oct4-GFP miPSCs) was successfully generated from mouse embryonic fibroblasts (MEFs) harboring Oct4-EGFP transgene by introducing four factors, Oct4, Sox2, c-Myc and Klf4, under mESC (Murine embryonic stem cells) culture conditions. Oct4-GFP miPSCs were similar to mESCs in morphology, proliferation, mESC-specific surface antigens and gene expression. Additionally, Oct4-GFP miPSCs could be cultured in suspension to form embryoid bodies (EBs) and differentiate into cell types of the three germ layers . Moreover, Oct4-GFP miPSCs could develop to teratoma and chimera . Unlike cell cycle distribution of MEFs, Oct4-GFP miPSCs are similar to mESCs in the cell cycle structure which consists of higher S phase and lower G1 phase. More importantly, our data demonstrated that MEFs harboring Oct4-EGFP transgene did not express GFP, until they were reprogrammed to the pluripotent stage (iPSCs), while the GFP expression was progressively lost when these pluripotent Oct4-GFP miPSCs exposed to EB-mediated differentiation conditions, suggesting the pluripotency of Oct4-GFP miPSCs can be real-time monitored over long periods of time via GFP assay. Altogether, our findings demonstrate that Oct4-GFP miPSC line is successfully established, which will lay a solid foundation for setting up a technology platform on reprogramming cancer cells into iPSCs. Furthermore, this pluripotency reporter system permits the long-term real-time monitoring of pluripotency changes in a live single-cell, and its progeny.

摘要

掌握将小鼠体细胞重编程为诱导多能干细胞(iPSCs)的技术,这将为建立将人类癌细胞重编程为iPSCs的技术平台奠定良好基础。在小鼠胚胎干细胞(mESC)培养条件下,通过导入Oct4、Sox2、c-Myc和Klf4这四种因子,成功地从小鼠胚胎成纤维细胞(MEFs)中获得了Oct4-EGFP转基因的小鼠iPSCs(即Oct4-GFP miPSCs)。Oct4-GFP miPSCs在形态、增殖、mESC特异性表面抗原和基因表达方面与mESCs相似。此外,Oct4-GFP miPSCs可以悬浮培养形成胚状体(EBs),并分化为三个胚层的细胞类型。而且,Oct4-GFP miPSCs可以发育成畸胎瘤和嵌合体。与MEFs的细胞周期分布不同,Oct4-GFP miPSCs在细胞周期结构上与mESCs相似,其S期较高而G1期较低。更重要的是,我们的数据表明,携带Oct4-EGFP转基因的MEFs在被重编程到多能阶段(iPSCs)之前不表达GFP,而当这些多能的Oct4-GFP miPSCs暴露于EB介导的分化条件时,GFP表达逐渐丧失,这表明通过GFP检测可以长时间实时监测Oct4-GFP miPSCs的多能性。总之,我们的研究结果表明成功建立了Oct4-GFP miPSC系,这将为建立将癌细胞重编程为iPSCs的技术平台奠定坚实基础。此外,这种多能性报告系统允许对活的单细胞及其后代的多能性变化进行长期实时监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7dd/9186763/32cde44d06d7/aging-14-204083-g001.jpg

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