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Automated microbioreactor systems for pharmaceutical bioprocessing: profiling of seeding and induction conditions in high-throughput fermentations

机译:用于药物生物处理的自动化微生物反应器系统:高通量发酵中的接种条件和诱导条件分析

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Introduction: Automated microbioreactor systems are designed for intensive bioprocess characterization. They facilitate reduction of development timelines without loss of valuable information. The RoboLector automated microbioreactor system was used for joint investigation of induction profiling and inoculation from seed cultures of different ages, which is only rarely recognized in literature for optimization. Results: The microbioreactor system allows reliable detection of growth phases and accurate inoculation procedures in combination with a true walk-away performance. Inocula taken from seed cultures resting in stationary growth phase for up to 10 h had no influence on induction profiling experiments, where late induction is preferred for maximum space-time-yield of recombinant enzyme production. Conclusion: The presented method allows for conduction of precise inoculation procedures and thus, for detailed studies on influential bioprocess parameters. The findings indicate that standardization in methods is more promising than standardization of cultivation conditions to scout for new productive bioprocesses.
机译:简介:自动化的微生物反应器系统旨在进行密集的生物过程表征。它们有助于缩短开发时间表,而不会丢失有价值的信息。 RoboLector自动化微生物反应器系统用于联合研究来自不同年龄种子培养物的诱导图谱和接种,这在文献中很少被提及进行优化。结果:微生物反应器系统结合了真正的无人值守性能,可以可靠地检测生长期和准确的接种程序。从静止生长期长达10 h的种子培养物中获得的接种物对诱导谱分析实验没有影响,其中后期诱导对于重组酶生产的最大时空产率是优选的。结论:提出的方法可以进行精确的接种程序,因此可以对有影响的生物过程参数进行详细研究。研究结果表明,方法的标准化比寻找新的生产性生物过程的栽培条件的标准化更具前景。

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