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在线测定青霉素生物过程中的孢子接种质量。

At-line determination of spore inoculum quality in Penicillium chrysogenum bioprocesses.

机构信息

CD Laboratory on Mechanistic and Physiological Methods for Improved Bioprocesses, Vienna University of Technology, Gumpendorferstrasse 1a/166, 1060, Vienna, Austria.

Research Area Biochemical Engineering, Institute of Chemical Engineering, Vienna University of Technology, Gumpendorferstrasse 1a/166, 1060, Vienna, Austria.

出版信息

Appl Microbiol Biotechnol. 2016 Jun;100(12):5363-73. doi: 10.1007/s00253-016-7319-9. Epub 2016 Jan 28.

Abstract

Spore inoculum quality in filamentous bioprocesses is a critical parameter influencing pellet morphology and, consequently, process performance. It is essential to determine the concentration of viable spores before inoculation, to implement quality control and decrease batch-to-batch variability. The ability to assess the spore physiologic status with close-to-real time resolution would offer interesting perspectives enhanced process analytical technology (PAT) and quality by design (QbD) strategies. Up to now, the parameters contributing to spore inoculum quality are not clearly defined. The state-of-the-art method to investigate this variable is colony-forming unit (CFU) determination, which assesses the number of growing spores. This procedure is tedious, associated with significant inherent bias, and not applicable in real time.Here, a novel method is presented, based on the combination of viability staining (propidium iodide and fluorescein diacetate) and large-particle flow cytometry. It is compatible with the complex medium background often observed in filamentous bioprocesses and allows for a classification of the spores into different subpopulations. Next to viable spores with intact growth potential, dormant or inactive as well as physiologically compromised cells are accurately determined. Hence, a more holistic few on spore inoculum quality and early-phase biomass composition is provided, offering enhanced information content.In an industrially relevant model bioprocess, good correlation to CFU counts was found. Morphological parameters (e.g. spore swelling) that are not accessible via standard monitoring tools were followed over the initial process phase with close temporal resolution.

摘要

丝状生物工艺中的孢子接种体质量是影响颗粒形态的关键参数,从而影响工艺性能。在接种前确定有活力孢子的浓度至关重要,这有助于实施质量控制并降低批间变异性。具备实时评估孢子生理状态的能力将为增强过程分析技术(PAT)和质量源于设计(QbD)策略提供有趣的前景。到目前为止,影响孢子接种体质量的参数尚未明确定义。评估此变量的最新方法是使用平板菌落形成单位(CFU)测定法,该方法评估生长孢子的数量。此过程繁琐,存在显著的固有偏差,并且无法实时进行。这里提出了一种新方法,该方法基于活细胞染色(碘化丙啶和荧光素二乙酸酯)和大颗粒流式细胞术的组合。它与丝状生物工艺中经常观察到的复杂培养基背景兼容,并且允许将孢子分类为不同的亚群。除了具有完整生长潜力的有活力孢子外,休眠或无活力以及生理受损的细胞也能被准确确定。因此,提供了对孢子接种体质量和早期生物量组成的更全面的了解,从而提供了更多的信息内容。在具有工业相关性的模型生物工艺中,发现与 CFU 计数有良好的相关性。可以通过标准监测工具访问的形态参数(例如孢子膨胀)通过接近的时间分辨率在初始工艺阶段进行跟踪。

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