Department of Stem Cell Biology, Konkuk University, School of Medicine, Seoul, Republic of Korea.
CHA Stem Cell Institute, CHA University, Seongnam, Republic of Korea.
Stem Cells. 2019 May;37(5):623-630. doi: 10.1002/stem.2986. Epub 2019 Feb 22.
The derivation of human embryonic stem cells (hESCs) by somatic cell nuclear transfer (SCNT) has prompted a re-emerging interest in using such cells for therapeutic cloning. Despite recent advancements in derivation protocols, the functional potential of CHA-NT4 derived cells is yet to be elucidated. For this reason, this study sought to differentiate CHA-NT4 cells toward an endothelial lineage in order to evaluate in vitro and in vivo functionality. To initial differentiation, embryoid body formation of CHA-NT4 was mediated by concave microwell system which was optimized for hESC-endothelial cell (EC) differentiation. The isolated CD31+ cells exhibited hallmark endothelial characteristics in terms of morphology, tubule formation, and ac-LDL uptake. Furthermore, CHA-NT4-derived EC (human nuclear transfer [hNT]-ESC-EC) transplantation in hind limb ischemic mice rescued the hind limb and restored blood perfusion. These findings suggest that hNT-ESC-EC are functionally equivalent to hESC-ECs, warranting further study of CHA-NT4 derivatives in comparison to other well established pluripotent stem cell lines. This revival of human SCNT-ESC research may lead to interesting insights into cellular behavior in relation to donor profile, mitochondrial DNA, and oocyte quality. Stem Cells 2019;37:623-630.
人类胚胎干细胞(hESC)通过体细胞核移植(SCNT)的衍生促使人们重新对利用此类细胞进行治疗性克隆产生了兴趣。尽管最近在衍生方案方面取得了进展,但 CHA-NT4 衍生细胞的功能潜力仍有待阐明。出于这个原因,本研究试图将 CHA-NT4 细胞向血管内皮谱系分化,以评估其体外和体内功能。为了初始分化,通过凹面微井系统介导 CHA-NT4 的类胚体形成,该系统经过优化,可用于 hESC-内皮细胞(EC)分化。分离的 CD31+细胞在形态、小管形成和 ac-LDL 摄取方面表现出标志性的内皮特征。此外,在下肢缺血小鼠中移植 CHA-NT4 衍生的 EC(人核转移 [hNT]-ESC-EC)可挽救下肢并恢复血液灌注。这些发现表明,hNT-ESC-EC 在功能上与 hESC-EC 相当,值得进一步研究 CHA-NT4 衍生物与其他成熟的多能干细胞系的比较。人类 SCNT-ESC 研究的复兴可能会深入了解与供体特征、线粒体 DNA 和卵母细胞质量相关的细胞行为。干细胞 2019;37:623-630.