Department of Medical Biochemistry and Microbiology, Box 582, Uppsala University, 751 23 Uppsala, Sweden.
Department of Immunology, Genetics and Pathology and Science for Life Laboratory, Box 815, Uppsala University, 751 08 Uppsala, Sweden.
Nat Commun. 2016 Jul 13;7:12170. doi: 10.1038/ncomms12170.
Reliable, scalable and time-efficient culture methods are required to fully realize the clinical and industrial applications of human pluripotent stem (hPS) cells. Here we present a completely defined, xeno-free medium that supports long-term propagation of hPS cells on uncoated tissue culture plastic. The medium consists of the Essential 8 (E8) formulation supplemented with inter-α-inhibitor (IαI), a human serum-derived protein, recently demonstrated to activate key pluripotency pathways in mouse PS cells. IαI efficiently induces attachment and long-term growth of both embryonic and induced hPS cell lines when added as a soluble protein to the medium at seeding. IαI supplementation efficiently supports adaptation of feeder-dependent hPS cells to xeno-free conditions, clonal growth as well as single-cell survival in the absence of Rho-associated kinase inhibitor (ROCKi). This time-efficient and simplified culture method paves the way for large-scale, high-throughput hPS cell culture, and will be valuable for both basic research and commercial applications.
需要可靠、可扩展且高效的培养方法,才能充分实现人类多能干细胞(hPS)的临床和工业应用。本文介绍了一种完全定义的、无动物源的培养基,可在未经包被的组织培养塑料上支持 hPS 细胞的长期传代。该培养基由基本 8(E8)配方补充 inter-α-抑制剂(IαI)组成,IαI 是一种人血清来源的蛋白,最近被证明可激活小鼠 PS 细胞中的关键多能性途径。当作为可溶性蛋白添加到培养基中进行接种时,IαI 可有效诱导胚胎和诱导性 hPS 细胞系的附着和长期生长。IαI 的补充可有效支持饲养层依赖性 hPS 细胞适应无动物源条件、克隆生长以及在没有 Rho 相关激酶抑制剂(ROCKi)的情况下单细胞的存活。这种高效且简化的培养方法为 hPS 细胞的大规模、高通量培养铺平了道路,对于基础研究和商业应用都将具有重要价值。