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微流控单细胞缩小规模生物反应器:谷氨酸棒杆菌在振荡pH值下生长的概念验证

Microfluidic single-cell scale-down bioreactors: A proof-of-concept for the growth of Corynebacterium glutamicum at oscillating pH values.

作者信息

Täuber Sarah, Blöbaum Luisa, Steier Valentin, Oldiges Marco, Grünberger Alexander

机构信息

Multiscale Bioengineering, Technical Faculty, Bielefeld University, Bielefeld, Germany.

Center for Biotechnology (CeBiTec), Bielefeld University, Bielefeld, Germany.

出版信息

Biotechnol Bioeng. 2022 Nov;119(11):3194-3209. doi: 10.1002/bit.28208. Epub 2022 Sep 2.

Abstract

In large-scale bioreactors, gradients in cultivation parameters such as oxygen, substrate, and pH result in fluctuating cell environments. pH fluctuations were identified as a critical parameter for bioprocess performance. Traditionally, scale-down systems at the laboratory scale are used to analyze the effects of fluctuating pH values on strains and thus process performance. Here, we demonstrate the application of dynamic microfluidic single-cell cultivation (dMSCC) as a novel scale-down system for the characterization of Corynebacterium glutamicum growth using oscillating pH conditions as a model stress factor. A detailed comparison between two-compartment reactor (two-CR) scale-down experiments and dMSCC was performed for one specific pH oscillation between reference pH 7 (8 min) and disturbed pH 6 (2 min). Similar reductions in growth rates were observed in both systems (dMSCC 21% and two-CR 27%) compared to undisturbed cultivation at pH 7. Afterward, systematic experiments at symmetric and asymmetric pH oscillations, between pH ranges of 4-6 and 8-11 and different intervals from 1 to 20 min, were performed to demonstrate the unique application range and throughput of the dMSCC system. Finally, the strength of the dMSCC application was demonstrated by mimicking fluctuating environmental conditions of a putative large-scale bioprocess, which is difficult to conduct using two-CRs.

摘要

在大规模生物反应器中,诸如氧气、底物和pH值等培养参数的梯度会导致细胞环境波动。pH值波动被确定为生物过程性能的关键参数。传统上,实验室规模的缩小系统用于分析pH值波动对菌株的影响,进而分析对过程性能的影响。在此,我们展示了动态微流控单细胞培养(dMSCC)作为一种新型缩小系统的应用,该系统以振荡pH条件作为模型应激因素来表征谷氨酸棒杆菌的生长。针对参考pH值7(约8分钟)和干扰pH值6(约2分钟)之间的一种特定pH振荡,对双隔室反应器(two-CR)缩小实验和dMSCC进行了详细比较。与在pH值7下的无干扰培养相比,在两个系统中均观察到生长速率有类似程度的降低(dMSCC为21%,two-CR为27%)。随后,在pH值范围为4 - 6和8 - 11之间、不同间隔时间从1到20分钟的对称和不对称pH振荡条件下进行了系统实验,以证明dMSCC系统独特的应用范围和通量。最后,通过模拟假定的大规模生物过程的波动环境条件,证明了dMSCC应用的优势,而使用two-CR很难进行这样的模拟。

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