Department of Chemical Engineering, Faculty of Chemical Engineering, School of Engineering, University of Tehran, PO Box 11365-4563, Tehran, Iran.
Biotechnol Appl Biochem. 2010 Dec;57(4):167-75. doi: 10.1042/BA20100212.
In the present study, a new online monitoring method for the determination of the CO₂ sensitivity of micro-organisms, based on the values of the respiration factors [OTR (oxygen transfer rate) and CTR (carbon dioxide transfer rate)], obtained by using the RAMOS (respiratory activity monitoring system) device considering a variety of aeration rates in the measuring flask, is investigated. Based on the data of the OTR, obtained by RAMOS under a variety of specific aeration rates, the proposed new method was developed as an online monitoring method for CO₂ sensitivity of micro-organisms in shaken bioreactors. A maximum accumulated CO₂ concentration of 12% was derived in applied methods, provided that the cultivation system is carried out under optimal conditions. Additionally, to predict these conditions, an unsteady-state gas transfer model in shaken bioreactors would be very advantageous. The data of OTR obtained using the RAMOS device were analysed and recalculated by a programme considering the calibration factor (Cf). The major advantage of the new method is the possibility to determine the metabolic activity, regardless of manual sampling.
在本研究中,我们基于 RAMOS(呼吸活性监测系统)设备在测量瓶中考虑了各种通气率时获得的呼吸因子[OTR(氧传递率)和 CTR(二氧化碳传递率)]值,提出了一种新的在线监测微生物 CO₂敏感性的方法。基于 RAMOS 在各种特定通气率下获得的 OTR 数据,我们开发了一种新的在线监测方法,用于监测摇瓶生物反应器中微生物的 CO₂敏感性。在应用方法中,得出了最大累积 CO₂浓度为 12%,前提是培养系统在最佳条件下进行。此外,为了预测这些条件,在摇瓶生物反应器中使用非稳态气体传递模型将非常有利。使用 RAMOS 设备获得的 OTR 数据通过考虑校准因子(Cf)的程序进行了分析和重新计算。该新方法的主要优势在于可以确定代谢活性,而无需手动采样。