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Fluorinert, an Oxygen Carrier, Improves Cell Culture Performance in Deep Square 96.-Well Plates by Facilitating Oxygen Transfer

机译:氧气载体Fluorinert通过促进氧气转移来改善96孔深方板的细胞培养性能

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In bioprocess development, the 96-well plate format has been widely used for high-throughput screening of production cell line or culture conditions. However, suspension cell cultures in conventional 96-well plates often fail to reach high cell density under normal agitation presumably due to constraints in oxygen transfer. Although more vigorous agitation can improve gas transfer in 96-well plate format, it often requires specialized instruments. In this report, we employed Fluorinert, a biologically inert perfluorocarbon, to improve oxygen transfer in 96-well plate and to enable the growth of a Chinese Hamster Ovary cell line expressing a recombinant monoclonal antibody. When different amounts of Fluorinert were added to the cell culture medium, a dose-dependent improvement in cell growth was observed in both conventional and deep square 96-well plates. When sufficient Fluorinert was present in the culture, the cell growth rate, the peak cell density, and recombinant protein production levels achieved in deep square 96-wells were comparable to cultures in ventilated shake flasks. Although Fluorinert is known to dissolve gases such as oxygen and CO2, it does not dissolve nor extract medium components, such as glucose, lactate, or amino acids. We conclude that mixing Fluorinert with culture media is a suitable model for miniaturization of cell line development and process optimization. Proper cell growth and cellular productivity can be obtained with a standard shaker without the need for any additional aeration or vigorous agitation.
机译:在生物工艺开发中,96孔板格式已广泛用于生产细胞系或培养条件的高通量筛选。然而,大概是由于氧气转移的限制,常规96孔板中的悬浮细胞培养物通常在正常搅拌下不能达到高细胞密度。尽管更剧烈的搅拌可以改善96孔板格式的气体传输,但通常需要专门的仪器。在本报告中,我们使用了生物惰性的全氟化碳Fluorinert来改善96孔板中的氧转移,并使表达重组单克隆抗体的中国仓鼠卵巢细胞系得以生长。当将不同量的Fluorinert添加到细胞培养基中时,在常规和深方形96孔板中均观察到细胞生长的剂量依赖性改善。当培养物中存在足够的Fluorinert时,在深方形96孔中获得的细胞生长速率,峰值细胞密度和重组蛋白生产水平与通风摇瓶中的培养物相当。尽管已知Fluorinert可以溶解氧气和二氧化碳等气体,但它既不溶解也不提取介质成分,例如葡萄糖,乳酸或氨基酸。我们得出的结论是,将Fluorinert与培养基混合是使细胞系发育和过程优化小型化的合适模型。使用标准的振荡器可以获得适当的细胞生长和细胞生产力,而无需任何额外的充气或剧烈搅拌。

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