RWTH Aachen, AVT-Biochemical Engineering, Worringer Weg 1, 52056 Aachen, Germany.
J Biotechnol. 2010 Aug 20;149(1-2):60-6. doi: 10.1016/j.jbiotec.2010.06.007. Epub 2010 Jun 25.
Up to now biomass has been measured online by impedance analysis only at low cell densities in yeast fermentations. As industrial fermentation processes focus, for example, on producing high target concentrations of biocatalysts or pharmaceutical proteins, it is important to investigate cell growth under high cell-density conditions. Therefore, for the first time, biomass has been measured online using impedance analysis in a 50L high-pressure stirred tank reactor. As model organism the yeast Arxula adeninivorans was cultivated in two chemically defined mineral media at a constant growth rate in fed-batch mode. To ensure aerobic culture conditions over the entire fermentation time, the fermentations were conducted at an elevated headspace overpressure of up to 9.5bar. The highest oxygen transfer rate value of 0.56molL(-1)h(-1) ever reported for yeast fermentations was measured in these investigations. Unlike previous findings, in this study a linear correlation was found between capacitance and biomass up to concentrations of 174gL(-1) dry cell weight.
迄今为止,生物量的在线测量仅在酵母发酵的低细胞密度下通过阻抗分析来实现。由于工业发酵过程专注于生产高目标浓度的生物催化剂或药物蛋白,因此研究高细胞密度条件下的细胞生长非常重要。因此,首次在 50L 高压搅拌罐反应器中使用阻抗分析在线测量生物量。以酵母 Arxula adeninivorans 作为模型生物,在补料分批模式下在两种化学定义的矿物培养基中以恒定生长速率进行培养。为了确保整个发酵过程中的需氧培养条件,发酵在高达 9.5bar 的升高罐压下进行。在这些研究中,测量到了酵母发酵中最高的氧传递速率值 0.56molL(-1)h(-1)。与以前的发现不同,在本研究中,在干细胞重量浓度高达 174gL(-1)时,发现电容与生物量之间存在线性相关性。