Dept. of Bioengineering, Instituto Superior Técnico (IST), Lisboa, Portugal.
Biotechnol Prog. 2011 Sep-Oct;27(5):1421-32. doi: 10.1002/btpr.658. Epub 2011 Jul 25.
The aim of this study was to develop a robust, quality controlled and reproducible large-scale culture system using serum-free (SF) medium to obtain vast numbers of embryonic stem (ES) cells as a starting source for potential applications in tissue regeneration, as well as for drug screening studies. Mouse ES (mES) cells were firstly cultured on microcarriers in spinner flasks to investigate the effect of different parameters such as the agitation rate and the feeding regimen. Cells were successfully expanded at agitation rates up to 60 rpm using the SF medium and no significant differences in terms of growth kinetics or metabolic profiles were found between the two feeding regimens evaluated: 50% medium renewal every 24 h or 25% every 12 h. Overall, cells reached maximum concentrations of (4.2 ± 0.4) and (5.6 ± 0.8) ×10(6) cells/mL at Day 8 for cells fed once or twice per day; which corresponds to an increase in total cell number of 85 ± 7 and 108 ± 16, respectively. To have a more precise control over culture conditions and to yield a higher number of cells, the scale-up of the spinner flask culture system was successfully accomplished by using a fully controlled stirred tank bioreactor. In this case, the concentration of mES cells cultured on microcarriers increased 85 ± 15-fold over 11 days. Importantly, mES cells expanded under stirred conditions, in both spinner flask and fully controlled stirred tank bioreactor, using SF medium, retained the expression of pluripotency markers such as Oct-4, Nanog, and SSEA-1 and their differentiation potential into cells of the three embryonic germ layers.
本研究旨在开发一种稳健、质量可控且可重复的大规模培养系统,使用无血清(SF)培养基获得大量胚胎干细胞(ES 细胞),作为组织再生以及药物筛选研究的潜在应用的起始来源。首先,将小鼠 ES(mES)细胞在搅拌瓶中的微载体上培养,以研究不同参数(如搅拌速度和喂养方案)的影响。使用 SF 培养基,细胞在高达 60rpm 的搅拌速度下成功扩增,在两种评估的喂养方案之间,生长动力学或代谢特征没有明显差异:24 小时更换 50%培养基或 12 小时更换 25%培养基。总体而言,每天一次或两次喂食的细胞在第 8 天达到最大浓度(4.2±0.4)和(5.6±0.8)×10(6)细胞/mL,这分别对应于总细胞数增加 85±7 和 108±16。为了更精确地控制培养条件并获得更高数量的细胞,成功地通过使用全控制搅拌槽生物反应器放大了搅拌瓶培养系统。在这种情况下,在 11 天内,在微载体上培养的 mES 细胞的浓度增加了 85±15 倍。重要的是,在搅拌条件下,使用 SF 培养基在搅拌瓶和全控制搅拌槽生物反应器中扩增的 mES 细胞保留了多能性标志物(如 Oct-4、Nanog 和 SSEA-1)的表达及其向三个胚胎生殖层细胞的分化潜能。