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A fast approach to determine a fed batch feeding profile for recombinant Pichia pastoris strains

机译:一种快速确定重组毕赤酵母菌株补料分批进料概况的方法

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Background The microorganism Pichia pastoris is a commonly used microbial host for the expression of recombinant proteins in biotechnology and biopharmaceutical industry. To speed up process development, a fast methodology to determine strain characteristic parameters, which are needed to subsequently set up fed batch feeding profiles, is required. Results Here, we show the general applicability of a novel approach to quantify a certain minimal set of bioprocess-relevant parameters, i.e. the adaptation time of the culture to methanol, the specific substrate uptake rate during the adaptation phase and the maximum specific substrate uptake rate, based on fast and easy-to-do batch cultivations with repeated methanol pulses in a batch culture. A detailed analysis of the adaptation of different P. pastoris strains to methanol was conducted and revealed that each strain showed very different characteristics during adaptation, illustrating the need of individual screenings for an optimal parameter definition during this phase. Based on the results obtained in batch cultivations, dynamic feeding profiles based on the specific substrate uptake rate were employed for different P. pastoris strains. In these experiments the maximum specific substrate uptake rate, which had been defined in batch experiments, also represented the upper limit of methanol uptake, underlining the validity of the determined process-relevant parameters and the overall experimental strategy. Conclusion In this study, we show that a fast approach to determine a minimal set of strain characteristic parameters based on easy-to-do batch cultivations with methanol pulses is generally applicable for different P. pastoris strains and that dynamic fed batch strategies can be designed on the specific substrate uptake rate without running the risk of methanol accumulation.
机译:背景技术巴斯德毕赤酵母是生物技术和生物制药行业中表达重组蛋白的常用微生物宿主。为了加快工艺开发,需要一种快速的方法来确定应变特性参数,这是随后设置进料批进料轮廓所必需的。结果在这里,我们展示了一种新方法的普遍适用性,该方法可量化与生物过程相关的参数的某些最小集合,即培养物对甲醇的适应时间,适应阶段的特定底物摄取率和最大特定底物摄取率,基于批次培养中重复甲醇脉冲的快速且易于执行的批次培养。对不同的巴斯德毕赤酵母菌株对甲醇的适应性进行了详细分析,结果表明,每种菌株在适应过程中均表现出非常不同的特征,这说明在此阶段需要针对最佳参数定义进行单独筛选。根据分批培养获得的结果,对不同的巴斯德毕赤酵母菌株采用基于特定底物吸收率的动态饲喂曲线。在这些实验中,在分批实验中定义的最大比底物吸收率也代表了甲醇吸收的上限,这强调了所确定的过程相关参数和整体实验策略的有效性。结论在这项研究中,我们表明,基于易于操作的甲醇脉冲分批培养来确定最小菌株特征参数集的快速方法通常适用于不同的巴斯德毕赤酵母菌株,并且可以设计动态补料分批策略特定底物的吸收速率,而不会有甲醇积聚的风险。

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