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Optimization of BY-2 cell suspension culture medium for the production of a human antibody using a combination of fractional factorial designs and the response surface method

机译:使用分数阶乘设计和响应面法的组合来优化逐型细胞悬浮培养基生产人抗体和响应面法

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We have developed a strategy for the optimization of plant cell suspension culture media using a combination of fractional factorial designs (FFDs) and response surface methodology (RSM). This sequential approach was applied to transformed tobacco BY-2 cells secreting a human antibody (M12) into the culture medium, in an effort to maximize yields. We found that the nutrients KNO3, NH4NO3 and CaCl2 and the hormones 2,4-dichlorophenoxyacetic acid (2,4-D) and 6-benzylaminopurine (BAP) had the most significant impact on antibody accumulation. The factorial screening revealed strong interactions within the nutrients group (KNO3, NH4NO3 and CaCl2) and also individually between 2,4-D and three other components (KNO3, NH4NO3 and BAP). The RSM design resulted in a fivefold increase in the antibody concentration after 5 days and a twofold reduction in the packed cell volume (PCV). Longer cultivation in the optimized medium led to the further accumulation of antibody M12 in the culture medium (up to 107 mu g/mL, day 10). Because the packed cell volume was reduced in the optimized medium, this enhanced the overall yield by 20-fold (day 7) and 31-fold (day 10) compared to the conventional MS medium.
机译:我们已经制定了使用分数阶段(FFD)和响应面方法(RSM)的组合来优化植物细胞悬浮培养基的策略。将该序贯方法应用于将人抗体(M12)分泌到培养基中的转化烟草By-2细胞,以最大化产率。我们发现营养素KNO3,NH 4 NO 3和CaCl 2和激素2,4-二氯苯甲酸(2,4-D)和6-苄基氨基嘌呤(BAP)对抗体积累的影响最大。阶乘筛选揭示了营养素组(KNO3,NH 4 NO 3和CaCl2)内的强相互作用,并且在2,4-D和三种其他组分(KNO3,NH 4 NO 3和BAP)之间也单独进行。 RSM设计导致5天后抗体浓度的五倍,并在填充细胞体积(PCV)中的两倍降低。优化介质中的较长培养导致培养基中的抗体M12的进一步积累(最高107μg/ ml,第10天)。因为在优化介质中减少了填充细胞体积,所以与传统的MS培养基相比,这种增强了20倍(第7天)和31倍(第10天)的总产率。

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