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Establishment and Identification of a CiPSC Lineage Reprogrammed from FSP-tdTomato Mouse Embryonic Fibroblasts (MEFs)

机译:从FSP-tdTomato小鼠胚胎成纤维细胞(MEF)重新编程的CiPSC谱系的建立和鉴定

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摘要

Safety issues associated with transcription factors or viruses may be avoided with the use of chemically induced pluripotent stem cells (CiPSCs), thus promoting their clinical application. Previously, we had successfully developed and standardized an induction method using small-molecule compound, with simple operation, uniform induction conditions, and clear constituents. In order to verify that the CiPSCs were indeed reprogrammed from mouse embryonic fibroblasts (MEFs), and further explore the underlying mechanisms, FSP-tdTomato mice were used to construct a fluorescent protein-tracking system of MEFs, for revealing the process of CiPSC reprogramming. CiPSCs were identified by morphological analysis, mRNA, and protein expression of pluripotency genes, as well as teratoma formation experiments. Results showed that after 40-day treatment of tdTomato-MEFs with small-molecule compounds, the cells were presented with prominent nucleoli, high core-to-cytoplasmic ratio, round shape, group and mass arrangement, and high expression of pluripotency gene. These cells could differentiate into three germ layer tissues in vivo. As indicated by the above results, tdTomato-MEFs could be reprogrammed into CiPSCs, a lineage that possesses pluripotency similar to mouse embryonic stem cells (mESCs), with the use of small-molecule compounds. The establishment of CiPSC lineage, tracked by fluorescent protein, would benefit further studies exploring its underlying mechanisms. With continuous expression of fluorescent proteins during cellular differentiation, this cell lineage could be used for tracking CiPSC transplantation and differentiation into functional cells.
机译:通过使用化学诱导的多能干细胞(CiPSC)可以避免与转录因子或病毒相关的安全性问题,从而促进其临床应用。以前,我们已经成功开发并标准化了一种使用小分子化合物的诱导方法,该方法操作简单,诱导条件统一且成分清晰。为了验证确实从小鼠胚胎成纤维细胞(MEF)对CiPSC进行了重编程,并进一步探索了其潜在机制,使用FSP-tdTomato小鼠构建了MEF的荧光蛋白追踪系统,以揭示CiPSC重编程的过程。通过多能性基因的形态分析,mRNA和蛋白质表达以及畸胎瘤形成实验来鉴定CiPSC。结果显示,在用小分子化合物处理tdTomato-MEF 40天后,细胞呈现出突出的核仁,高的核质比,圆形,基团和质量排列以及多能性基因的高表达。这些细胞可以在体内分化为三个胚层组织。如上述结果所示,可以使用小分子化合物将tdTomato-MEFs重新编程为CiPSCs,CiPSCs具有与小鼠胚胎干细胞(mESCs)相似的多能性。荧光蛋白追踪的CiPSC谱系的建立,将有助于进一步研究其潜在机制。随着细胞分化过程中荧光蛋白的连续表达,该细胞谱系可用于追踪CiPSC移植和分化为功能性细胞。

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