首页> 外文期刊>Journal of industrial microbiology & biotechnology >Parallelized microscale fed-batch cultivation in online-monitored microtiter plates: implications of media composition and feed strategies for process design and performance
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Parallelized microscale fed-batch cultivation in online-monitored microtiter plates: implications of media composition and feed strategies for process design and performance

机译:在线监测的微量滴定板中的并行微观送入批量培养:媒体组成和进料策略的工艺设计和性能的含义

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摘要

Limited throughput represents a substantial drawback during bioprocess development. In recent years, several commercial microbioreactor systems have emerged featuring parallelized experimentation with optical monitoring. However, many devices remain limited to batch mode and do not represent the fed-batch strategy typically applied on an industrial scale. A workflow for 32-fold parallelized microscale cultivation of protein secreting Corynebacterium glutamicum in microtiter plates incorporating online monitoring, pH control and feeding was developed and validated. Critical interference of the essential media component protocatechuic acid with pH measurement was revealed, but was effectively resolved by 80% concentration reduction without affecting biological performance. Microfluidic pH control and feeding (pulsed, constant and exponential) were successfully implemented: Whereas pH control improved performance only slightly, feeding revealed a much higher optimization potential. Exponential feeding with mu = 0.1 h(-1) resulted in the highest product titers. In contrast, other performance indicators such as biomass-specific or volumetric productivity resulted in different optimal feeding regimes.
机译:有限的吞吐量代表生物过程开发期间的实质性缺点。近年来,有几种商业微生物反应器系统具有具有光学监测的并行化实验。然而,许多设备仍然限于批处理模式,并且不代表通常在工业规模上应用的美联储策略。开发并验证了在含有在线监测,pH控制和饲养的微量滴定板中分泌的32倍并行化微米培养的工作流程的蛋白质分泌的蛋白质细胞谷氨酸。揭示了具有pH测量的基本培养基组分的关键干扰,但在不影响生物学性能的情况下,有效地通过80%的浓度降低解决。成功实施了微流体pH控制和进料(脉冲,常数和指数):虽然pH控制仅略微改善了性能,但饲养揭示了更高的优化潜力。用mu = 0.1h(-1)的指数喂养导致最高的产品滴度。相反,其他性能指标,例如生物质特异性或体积生产率导致不同的最佳喂养方案。

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