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用于在线测定培养物活力和生命力的极化率的电光测定法。

Electrooptical Determination of Polarizability for On-Line Viability and Vitality Quantification of Cultures.

作者信息

Pellicer-Alborch Klaus, Angersbach Alexander, Neubauer Peter, Junne Stefan

机构信息

Chair of Bioprocess Engineering, Department of Biotechnology, Technische Universität Berlin, Berlin, Germany.

EloSystems GbR, Berlin, Germany.

出版信息

Front Bioeng Biotechnol. 2018 Dec 4;6:188. doi: 10.3389/fbioe.2018.00188. eCollection 2018.

Abstract

The rapid assessment of cell viability is crucial for process optimization, e.g., during media selection, determination of optimal environmental growth conditions and for quality control. In the present study, the cells' electric anisotropy of polarizability (AP) as well as the mean cell length in batch and fed-batch fermentations were monitored with electrooptical measurements coupled to fully automated sample preparation. It was examined, whether this measurement can be related to the cells' metabolic activity, and thus represents a suitable process analytical technology. It is demonstrated that the AP is an early indicator to distinguish between suitable and unsuitable growth conditions in case of a poor energy regeneration or cell membrane defects in batch and fed-batch cultivations. It was shown that the applied method allowed the monitoring of physiological and morphological changes of cells in various growth phases in response to a low pH-value, substrate concentration changes, temperature alterations, exposure to air and nutrient limitation. An optimal range for growth in batch mode was achieved, if the AP remained above 25·10 F·m and the mean cell length at ~2.5 μm. It was further investigated, in which way the AP develops after freeze-drying of samples, which were taken in different cultivation phases. It was found that the AP increased most rapidly in resuspended samples from the retardation and late stationary phases, while samples from the early stationary phase recovered slowly. Electrooptical measurements provide valuable information about the physiologic and morphologic state of cells, e.g., when applied as starter cultures or as probiotic compounds.

摘要

细胞活力的快速评估对于工艺优化至关重要,例如在培养基选择、确定最佳环境生长条件以及质量控制过程中。在本研究中,通过与全自动样品制备相结合的电光测量,监测了分批发酵和补料分批发酵中细胞的极化率电各向异性(AP)以及平均细胞长度。研究了这种测量是否与细胞的代谢活性相关,从而代表一种合适的过程分析技术。结果表明,在分批培养和补料分批培养中,当能量再生不良或细胞膜存在缺陷时,AP是区分合适和不合适生长条件的早期指标。结果表明,所应用的方法能够监测细胞在不同生长阶段对低pH值、底物浓度变化、温度改变、暴露于空气和营养限制的生理和形态变化。如果AP保持在25·10 F·m以上且平均细胞长度约为2.5μm,则可实现分批模式下的最佳生长范围。进一步研究了在不同培养阶段采集的样品冻干后AP的变化方式。发现来自延迟期和稳定后期的重悬样品中AP增加最快,而来自稳定前期的样品恢复缓慢。电光测量提供了有关细胞生理和形态状态的有价值信息,例如在用作起始培养物或益生菌化合物时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e18/6289024/10dc4876b2d4/fbioe-06-00188-g0001.jpg

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