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一种荧光化学探针 CDy9 选择性地染色并能够分离活的原始态小鼠胚胎干细胞。

A fluorescent chemical probe CDy9 selectively stains and enables the isolation of live naïve mouse embryonic stem cells.

机构信息

Department of Life Sciences Sogang University, 35 Baeckbeom-ro, Mapo-gu, Seoul 04107, Republic of Korea.

Department of Medicine, School of Medicine Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, Republic of Korea.

出版信息

Biomaterials. 2018 Oct;180:12-23. doi: 10.1016/j.biomaterials.2018.07.007. Epub 2018 Jul 5.

Abstract

Human and mouse embryonic stem cells (ESCs) differ in terms of their pluripotency status, i.e., naïve vs. primed. This affects various biological properties and leads to several technical hurdles for future clinical applications, such as difficulties in chimera formation, single-cell passaging, and gene editing. In terms of generating functional human tissues and organs via mammalian interspecies chimerism, a fluorescent chemical probe that specifically labels naïve ESCs would help to isolate these cells and monitor their conversion. This study demonstrates that the fluorescent chemical probe compound of designation yellow 9 (CDy9) selectively stains naïve, but not primed, mouse ESCs (mESCs). CDy9 entered cells via Slc13a5, a highly expressed membrane transporter in naïve mESCs. Fluorescence-based cell sorting based on CDy9 staining successfully separated naïve mESCs from primed mESCs. Mice generated using CDy9 cells isolated during the conversion of mouse epiblast stem cells into naïve mESCs exhibited coat color chimerism. Furthermore, CDy9 specifically stained cells in the inner cell mass of mouse embryos. These findings suggest that CDy9 is a useful tool to isolate functional naïve mESCs.

摘要

人类和小鼠胚胎干细胞 (ESCs) 在多能性状态上存在差异,即原始态和已特化态。这种差异影响了各种生物学特性,并给未来的临床应用带来了一些技术障碍,如嵌合体形成、单细胞传代和基因编辑的困难。在通过哺乳动物种间嵌合体制备功能性人类组织和器官方面,一种能够特异性标记原始态 ESCs 的荧光化学探针将有助于分离这些细胞并监测其转化。本研究表明,荧光化学探针化合物黄色 9(CDy9)能够选择性地标记原始态,但不标记已特化态的小鼠 ESCs(mESCs)。CDy9 通过 Slc13a5 进入细胞,Slc13a5 是原始态 mESCs 中高度表达的膜转运蛋白。基于 CDy9 染色的荧光细胞分选成功地将原始态 mESCs 与已特化态 mESCs 分离。利用从小鼠胚外干细胞向原始态 mESC 转化过程中分离出的 CDy9 细胞生成的小鼠表现出毛色嵌合现象。此外,CDy9 还特异性地标记了小鼠胚胎的内细胞团中的细胞。这些发现表明 CDy9 是一种有用的工具,可以分离功能性原始态 mESCs。

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