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在工业复合培养基中,酿酒酵母T65进行高细胞密度补料分批谷胱甘肽发酵时的实时活细胞量监测

Real-time viable-cell mass monitoring in high-cell-density fed-batch glutathione fermentation by Saccharomyces cerevisiae T65 in industrial complex medium.

作者信息

Xiong Zhi-Qiang, Guo Mei-Jin, Guo Yuan-Xin, Chu Ju, Zhuang Ying-Ping, Zhang Si-Liang

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 200237 Shanghai, P.R. China.

出版信息

J Biosci Bioeng. 2008 Apr;105(4):409-13. doi: 10.1263/jbb.105.409.

Abstract

An on-line monitoring of viable-cell mass in high-cell-density fed-batch cultivations of Saccharomyces cerevisiae grown on an industrial complex medium was performed with an in situ capacitance probe fitted to a 50-l fermentor. Conventional off-line biomass determinations of several parameters, including dry cell weight (DCW), optical density at 600 nm wavelength (OD(600)), packed mycelial volume (PMV) and number of colony forming units (CFU), were performed throughout the bioprocess and then compared with on-line viable-cell concentrations measured using a capacitance probe. Capacitance versus viable biomass and all off-line biomass assay values were compared during glutathione fermentation in industrial complex culture media. As a result, the relationship between the number of colony forming units and capacitance with a correlation coefficient (R) of 0.995 was achieved. Simultaneously, compared with those determined by at-line indirect estimation methods including oxygen uptake rate (OUR) and carbon dioxide evolution rate (CER), the specific growth rates estimated by on-line capacitance measurement could be more reliable during glutathione fermentation. Therefore, it is concluded that a capacitance probe is a practical tool for real-time viable biomass monitoring in high-cell-density fed-batch cultivation in a complex medium.

摘要

使用安装在50升发酵罐上的原位电容探头,对在工业复合培养基上生长的酿酒酵母进行高细胞密度补料分批培养过程中的活细胞量进行在线监测。在整个生物过程中,对包括干细胞重量(DCW)、600纳米波长处的光密度(OD(600))、填充菌丝体体积(PMV)和菌落形成单位数(CFU)在内的几个参数进行常规离线生物量测定,然后与使用电容探头测量的在线活细胞浓度进行比较。在工业复合培养基中的谷胱甘肽发酵过程中,比较了电容与活生物量以及所有离线生物量测定值。结果,菌落形成单位数与电容之间的关系达到了相关系数(R)为0.995。同时,与通过在线间接估计方法(包括氧摄取率(OUR)和二氧化碳释放率(CER))确定的结果相比,在谷胱甘肽发酵过程中,通过在线电容测量估计的比生长速率可能更可靠。因此,可以得出结论,电容探头是在复合培养基中进行高细胞密度补料分批培养时实时监测活生物量的实用工具。

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