Kehoe Daniel E, Lock Lye T, Parikh Abhirath, Tzanakakis Emmanuel S
Dept. of Chemical and Biological Engineering, State University of New York at Buffalo, Buffalo, NY 14260, USA.
Biotechnol Prog. 2008 Nov-Dec;24(6):1342-52. doi: 10.1002/btpr.57.
Embryonic stem cells (ESCs) with their unlimited capacity for self-renewal and ability to differentiate along multiple cell lineages are a superb starting material for biotechnology applications and cellular therapies. However, realization of the potential of ESCs requires the development of scalable systems for their production in large quantities and in a regulated manner. Here, we describe a methodology for the expansion of mouse ESCs (mESCs) as pluripotent aggregates in a stirred suspension bioreactor and in medium without serum. Initially, the culture of feeder cell-independent mESCs in dishes was adapted to serum-free conditions. Also, we explored whether spinner flasks equipped with a triangle-shaped impeller and baffles support the culture of mESC aggregates. Serum-free culture in these vessels resulted in an almost 20-fold increase in the live mESC concentration over 4 days without significant loss of cell viability. Even after consecutive passages, mESCs retained high expression of pluripotency markers Oct3/4, Rex1 and SSEA-1. More importantly, when differentiation was induced these cells adopted fates of all three germ layers namely neuroectoderm, cardiac mesoderm and definitive endoderm. These findings demonstrate that stem cells can be propagated under serum-free conditions in a scalable stirred-suspension culture without loss of their pluripotency.
胚胎干细胞(ESCs)具有无限的自我更新能力以及沿多种细胞谱系分化的能力,是生物技术应用和细胞治疗的优质起始材料。然而,要实现胚胎干细胞的潜力,需要开发可扩展的系统,以便大量且规范地生产它们。在此,我们描述了一种在搅拌悬浮生物反应器中无血清培养基里将小鼠胚胎干细胞(mESCs)作为多能聚集体进行扩增的方法。最初,将培养皿中不依赖饲养层细胞的小鼠胚胎干细胞培养条件调整为无血清条件。此外,我们探究了配备三角形叶轮和挡板的转瓶是否支持小鼠胚胎干细胞聚集体的培养。在这些容器中进行无血清培养,使得活的小鼠胚胎干细胞浓度在4天内增加了近20倍,且细胞活力没有显著损失。即使经过连续传代,小鼠胚胎干细胞仍保持多能性标志物Oct3/4、Rex1和SSEA-1的高表达。更重要的是,当诱导分化时,这些细胞呈现出所有三个胚层的命运,即神经外胚层、心脏中胚层和定形内胚层。这些发现表明,干细胞可以在无血清条件下通过可扩展的搅拌悬浮培养进行增殖,而不会丧失其多能性。