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摇瓶中微生物的 CO₂ 敏感性测定。I. 基于无菌封口阻力的新方法。

Determination of CO₂ sensitivity of micro-organisms in shaken bioreactors. I. Novel method based on the resistance of sterile closure.

机构信息

Department of Chemical Engineering, Faculty of Chemical Engineering, School of Engineering, University of Tehran, PO Box 11365-4563, Tehran, Iran.

出版信息

Biotechnol Appl Biochem. 2010 Dec;57(4):157-66. doi: 10.1042/BA20100211.

Abstract

Influence of carbon dioxide on growth and product kinetics of industrially important micro-organisms is essential for the interpretation of a bioprocess. In this research, the CO₂ effects on productivity and growth rate of micro-organisms have been studied by using a variety of kplug. The applied method is based on a different concentration of CO₂ in the headspace of ventilation flasks. The presented method is simple, inexpensive and shows similar results compared to large-scale fermentation regarding the evolution of CO₂ in a batch system. For the investigation of the proposed method, experiments employing Arxula adeninivorans LS3, Corynebacterium glutamicum (DM1730 and ATCC WT13032) and Hansenula polymorpha DSM70277 as model organisms in the ventilation flasks are performed. The fermentations in the RAMOS (respiratory activity monitoring system) device were carried out with a normal aeration rate (1 vvm) and under the same operating conditions as the ventilation flask f1. The modified unsteady-state model was used to predict the operation conditions of a biological system in the ventilation flasks. In the present study, a novel and easy method for the quantification of CO₂ sensitivity of micro-organisms in shaken bioreactors (called ventilation flask) was achieved.

摘要

二氧化碳对工业重要微生物的生长和产物动力学的影响对于生物过程的解释至关重要。在这项研究中,使用各种 kplug 研究了 CO₂对微生物生产力和生长速率的影响。所应用的方法基于通风瓶中 CO₂的不同浓度。与分批系统中 CO₂的演变相比,提出的方法简单、廉价且与大规模发酵具有相似的结果。为了研究所提出的方法,在通风瓶中使用 Arxula adeninivorans LS3、Corynebacterium glutamicum(DM1730 和 ATCC WT13032)和 Hansenula polymorpha DSM70277 作为模型生物进行了实验。在 RAMOS(呼吸活性监测系统)设备中进行发酵,通气率为 1 vvm,并在与通风瓶 f1 相同的操作条件下进行。使用改进的非稳态模型来预测通风瓶中生物系统的操作条件。在本研究中,实现了一种在摇瓶生物反应器(称为通风瓶)中定量微生物对 CO₂敏感性的新颖而简单的方法。

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