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百日咳毒素增强酶解分离的单个人类胚胎干细胞的集落组织。

Pertussis toxin enhances colony organization of enzymatic-dissociated single human embryonic stem cells.

机构信息

Stem Cell Research Lab, CHA Stem Cell Institute, CHA University, Seoul, Republic of Korea.

出版信息

Stem Cells Dev. 2013 Jan 15;22(2):307-19. doi: 10.1089/scd.2012.0288. Epub 2012 Dec 3.

Abstract

Human embryonic stem cells (hESCs) self-renew indefinitely as highly organized pluripotent colonies. Unlike mouse pluripotent stem cell colonies, human colonies form a uniform, flat, epithelium-like monolayer. Interestingly, it has been reported that colony morphology is closely correlated with the maintenance of pluripotency. However, the molecular mechanisms that underlie human pluripotent colony formation and organization are poorly understood. In this study, we used real-time imaging tools to examine the in vitro colony formation of enzymatically dissociated single hESCs under feeder-free conditions. We demonstrate that colony formation consists of 4 stages: attachment, migration, aggregation, and colony formation, which are facilitated in an intracellular, calcium-dependent manner. Moreover, we found that blocking G(i)-coupled G protein-coupled receptor (GPCR) signaling results in enhanced cell-cell interactions and plays an integral role in promoting the survival of hESCs in culture. From the imaging results, we identified the conditions required for colony formation, and we identified the importance of blocking G(i)-coupled GPCR by pertussis toxin in modulating hESC colony formation and organization. These results will likely be useful for engineering hESCs to further study the mechanisms involved in their function.

摘要

人类胚胎干细胞(hESCs)可以无限自我更新为高度组织化的多能性集落。与小鼠多能干细胞集落不同,人类集落形成均匀、扁平的上皮样单层。有趣的是,据报道集落形态与多能性的维持密切相关。然而,支持人类多能性集落形成和组织的分子机制尚不清楚。在这项研究中,我们使用实时成像工具在无饲养层条件下检查酶解的单个 hESC 的体外集落形成。我们证明集落形成包括 4 个阶段:附着、迁移、聚集和集落形成,这些过程以细胞内、钙依赖性的方式促进。此外,我们发现阻断 G(i)偶联 G 蛋白偶联受体 (GPCR) 信号会增强细胞间相互作用,并在促进 hESC 在培养中存活方面发挥重要作用。从成像结果中,我们确定了形成集落所需的条件,并确定了通过百日咳毒素阻断 G(i)偶联 GPCR 在调节 hESC 集落形成和组织中的重要性。这些结果可能对工程 hESC 以进一步研究其功能涉及的机制有用。

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