Wu Yu-Ting, Tsai Kuen-Jer, Shih Chien-Yu, Hwang Shiaw-Min, Su Ih-Jen, Chiang Po-Min
Institute of Clinical Medicine, National Cheng Kung University, Tainan, Taiwan, ROC.
Laboratory Animal Center, College of Medicine, National Taiwan University, Taipei, Taiwan, ROC.
Sci Rep. 2015 Apr 13;5:9718. doi: 10.1038/srep09718.
It is desirable to obtain unlimited supplies of endothelial cells for research and therapeutics. However, current methods of deriving endothelial cells from humans suffer from issues, such as limited supplies, contamination from animal substances, and lengthy/complicated procedures. In this article we developed a way to differentiate human iPS and ES cells to highly pure endothelial cells in 5 days. The chemically defined system is robust, easy to perform, and free of animal substances. Using the system, we verified that combined TGFβ and canonical Wnt agonists are essential and sufficient for iPS/ES cell-to-mesoderm transition. Besides, VEGF-KDR signaling alone is required for endothelial formation at high density while supplementation with FGF allows for colonial endothelial differentiation. Finally, anti-adsorptive agents could enrich the endothelial output by allowing selective attachment of the endothelial precursors. The system was validated to work on multiple iPS/ES cells lines to produce endothelial cells capable of forming capillary-like structures in vitro and integrating into host vasculature in vivo. In sum, the simple yet robust differentiation system permits the unlimited supply of human endothelial cells. The defined and animal substance-free nature of the system is compatible with clinical applications and characterization of endothelial differentiation in an unbiased manner.
获取无限量的内皮细胞用于研究和治疗是很有必要的。然而,目前从人类获取内皮细胞的方法存在一些问题,比如供应有限、受动物物质污染以及程序冗长/复杂。在本文中,我们开发了一种方法,可在5天内将人类诱导多能干细胞(iPS)和胚胎干细胞(ES)分化为高度纯化的内皮细胞。该化学限定系统稳定、易于操作且不含动物物质。利用该系统,我们证实转化生长因子β(TGFβ)和经典Wnt激动剂联合使用对于iPS/ES细胞向中胚层转变至关重要且足够。此外,在高密度条件下,内皮细胞形成仅需要血管内皮生长因子(VEGF)-激酶插入结构域受体(KDR)信号通路,而添加成纤维细胞生长因子(FGF)则可促进集落性内皮细胞分化。最后,抗吸附剂可通过允许内皮前体细胞选择性附着来提高内皮细胞产量。该系统经验证可在多种iPS/ES细胞系上发挥作用,以产生能够在体外形成毛细血管样结构并在体内整合到宿主脉管系统中的内皮细胞。总之,这个简单却稳定的分化系统能够实现人类内皮细胞的无限供应。该系统明确且不含动物物质的特性与临床应用以及无偏差地鉴定内皮细胞分化相兼容。