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Effect of amino acid supplementation on titer and glycosylation distribution in hybridoma cell culturesSystems biology-based interpretation using genome-scale metabolic flux balance model and multivariate data analysis

机译:氨基酸补充对杂交瘤细胞培养中效价和糖基化分布的影响基于基因组尺度的代谢通量平衡模型和多元数据分析的基于生物学的解释

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Genome-scale flux balance analysis (FBA) is a powerful systems biology tool to characterize intracellular reaction fluxes during cell cultures. FBA estimates intracellular reaction rates by optimizing an objective function, subject to the constraints of a metabolic model and media uptake/excretion rates. A dynamic extension to FBA, dynamic flux balance analysis (DFBA), can calculate intracellular reaction fluxes as they change during cell cultures. In a previous study by Read et al. (2013), a series of informed amino acid supplementation experiments were performed on twelve parallel murine hybridoma cell cultures, and this data was leveraged for further analysis (Read et al., Biotechnol Prog. 2013;29:745-753). In order to understand the effects of media changes on the model murine hybridoma cell line, a systems biology approach is applied in the current study. Dynamic flux balance analysis was performed using a genome-scale mouse metabolic model, and multivariate data analysis was used for interpretation. The calculated reaction fluxes were examined using partial least squares and partial least squares discriminant analysis. The results indicate media supplementation increases product yield because it raises nutrient levels extending the growth phase, and the increased cell density allows for greater culture performance. At the same time, the directed supplementation does not change the overall metabolism of the cells. This supports the conclusion that product quality, as measured by glycoform assays, remains unchanged because the metabolism remains in a similar state. Additionally, the DFBA shows that metabolic state varies more at the beginning of the culture but less by the middle of the growth phase, possibly due to stress on the cells during inoculation. (c) 2016 American Institute of Chemical Engineers Biotechnol. Prog., 32:1163-1173, 2016
机译:基因组规模通量平衡分析(FBA)是一种功能强大的系统生物学工具,用于表征细胞培养过程中的细胞内反应通量。 FBA通过优化目标函数来估计细胞内反应速率,这取决于代谢模型和培养基摄取/排泄速率的约束。 FBA的动态扩展,动态通量平衡分析(DFBA)可以计算细胞培养过程中细胞内反应通量的变化。在Read等人的先前研究中。 (2013),在十二种平行的鼠杂交瘤细胞培养物中进行了一系列知情的氨基酸补充实验,并将该数据用于进一步分析(Read et al。,Biotechnol Prog。2013; 29:745-753)。为了了解培养基变化对模型鼠杂交瘤细胞系的影响,本研究采用了系统生物学方法。动态通量平衡分析是使用基因组尺度的小鼠代谢模型进行的,多变量数据分析用于解释。使用偏最小二乘和偏最小二乘判别分析检查了计算的反应通量。结果表明,培养基添加增加了产品产量,因为它提高了营养水平,延长了生长期,并且增加的细胞密度使培养性能更高。同时,定向补充不会改变细胞的整体代谢。这支持了这样的结论,即通过糖形测定法测定的产品质量保持不变,因为新陈代谢保持在相似的状态。另外,DFBA显示代谢状态在培养开始时变化较大,而在生长期中期变化较小,这可能是由于接种过程中细胞的压力所致。 (c)2016美国化学工程师学会生物技术学会。 Prog。,32:1163-1173,2016

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