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Orbital shaker technology for the cultivation of mammalian cells in suspension

机译:轨道摇床技术用于悬浮培养哺乳动物细胞

摘要

For large-scale applications in biotechnology, cultivation of mammalian cells in suspension is an essential prerequisite. Typically, suspension cultures are grown in glass spinner flasks filled to less than 50% of the nominal volume. We propose a superior system for suspension cultures of mammalian cells based on orbital shaker technology. We found that "square-shaped" bottles (square bottles) provide an inexpensive but efficient means to grow HEK-293 EBNA and CHO-DG44 cells to high density. Cultures in agitated 1-L square bottles exceeded the performance of cultures in spinner flasks, reaching densities up to 7 x 10(6) cells/mL for HEK-293 EBNA cells and 5 x 10(6) cells/mL for CHO-DG44 cells in comparison to (2.5-4) x 10(6) cells/mL for cultures of the same cells grown in spinner flasks. For 1-L square bottles, optimal cell growth and viability were observed with a filling volume of 30-40% of the nominal volume and an agitation speed of 130 rpm at a rotational diameter of 2.5 cm. Transient reporter gene expression following gene delivery by calcium phosphate-DNA co-precipitation was the same or slightly better for HEK-293 EBNA cells grown in square bottles as compared to spinner flasks. Reductions in cost, simplified handling, and better performance in cell growth and viability make the agitated square bottle a new and very promising tool for the cultivation of mammalian cells in suspension.
机译:对于生物技术中的大规模应用,悬浮培养哺乳动物细胞是必不可少的先决条件。通常,悬浮培养物在装满小于标称体积的50%的玻璃旋转瓶中生长。我们提出了一种基于轨道摇床技术的哺乳动物细胞悬浮培养的优良系统。我们发现“方形”瓶(方形瓶)提供了一种廉价但有效的方法,可将HEK-293 EBNA和CHO-DG44细胞培养至高密度。搅动的1-L方瓶中的培养物超过了旋转瓶中的培养物的性能,HEK-293 EBNA细胞的密度高达7 x 10(6)细胞/ mL,CHO-DG44的密度高达5 x 10(6)细胞/ mL与(2.5-4)x 10(6)个细胞/ mL相比,在旋转瓶中生长的相同细胞的培养物的细胞数量更多。对于1-L方形瓶,在2.5厘米的旋转直径下,填充体积为标称体积的30-40%,搅拌速度为130 rpm,观察到最佳的细胞生长和活力。与旋转瓶相比,在方形瓶中生长的HEK-293 EBNA细胞通过磷酸钙-DNA共沉淀传递基因后的瞬时报告基因表达相同或稍好。成本的降低,简化的操作以及在细胞生长和存活力方面的更好性能,使方形方瓶成为了用于悬浮培养哺乳动物细胞的新型且非常有前途的工具。

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