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首页> 外文期刊>Journal of Biotechnology >Optimization of process conditions for mammalian fed-batch cell culture in automated micro-bioreactor system using genetic algorithm
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Optimization of process conditions for mammalian fed-batch cell culture in automated micro-bioreactor system using genetic algorithm

机译:遗传算法在自动微生物反应器系统中哺乳动物喂料细胞培养过程条件的优化

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摘要

Recombinant proteins produced by mammalian cell culture technology represent an important segment of therapeutic molecules. Development of their manufacturing processes is a time- and resource-consuming task. A wide array of process conditions, e.g. physico-chemical parameters, medium composition, feeding strategy, needs to be optimized to design a commercially feasible process with the desired productivity and product characteristics. Traditionally, statistical experimental designs, i.e. design-of-experiments methodology, have been used for such optimizations. However, statistical design approach has several limitations related to high dimensionality of the explored parameter space originating from the complexity of the mammalian cell culture processes. An alternative is therefore desired to overcome these limitations. In this study, we have successfully used a simple genetic algorithm as a method of experimental design for optimization of mammalian cell culture processes for two recombinant cell lines, one expressing a monoclonal antibody and one an Fc-fusion protein. Harnessing the automation capability of a robotically driven micro-bioreactor system to execute the genetic algorithm-derived experiments, a set of 14 process parameters was optimized within 132 experiments per cell line (six generations of 22 experiments), showing the feasibility of this approach as an alternative to classical statistical experimental designs.
机译:由哺乳动物细胞培养技术产生的重组蛋白代表了治疗分子的重要段。他们的制造过程的发展是一种时间和资源的任务。各种过程条件,例如,物理化学参数,培养基组成,进料策略,需要优化以设计具有所需生产率和产品特性的商业上可行的方法。传统上,统计实验设计,即实验设计方法,已用于此类优化。然而,统计设计方法具有与源自哺乳动物细胞培养过程复杂性的探索参数空间的高维度相关的若干限制。因此希望克服这些限制的替代方案。在这项研究中,我们已成功地使用简单的遗传算法作为用于优化两种重组细胞系的哺乳动物细胞培养方法的实验设计方法,表达单克隆抗体和一种Fc融合蛋白。利用机器人驱动的微生物反应器系统的自动化能力来执行遗传算法衍生的实验,在每种细胞系的132实验(六代22个实验)内进行了一组14个工艺参数,显示了这种方法的可行性典型统计实验设计的替代方案。

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