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Fully automated single-use stirred-tank bioreactors for parallel microbial cultivations

机译:全自动一次性使用的搅拌罐式生物反应器,用于平行微生物培养

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Single-use stirred tank bioreactors on a 10-mL scale operated in a magnetic-inductive bioreaction block for 48 bioreactors were equipped with individual stirrer-speed tracing, as well as individual DO- and pH-monitor-ing and control. A Hall-effect sensor system was integrated into the bioreaction block to measure individually the changes in magnetic field density caused by the rotating permanent magnets. A restart of the magnetic inductive drive was initiated automatically each time a Hall-effect sensor indicates one non-rotating gas-inducing stirrer. Individual DO and pH were monitored online by measuring the fluorescence decay time of two chemical sensors immobilized at the bottom of each single-use bioreactor. Parallel DO measurements were shown to be very reliable and independently from the fermentation media applied in this study for the cultivation of Escherichia coli and Sac-charomyces cerevisiae. The standard deviation of parallel pH measurements was pH 0.1 at pH 7.0 at the minimum and increased to a standard deviation of pH 0.2 at pH 6.0 or at pH 8.5 with the complex medium applied for fermentations with S. cerevisiae. Parallel pH-control was thus shown to be meaningful with a tolerance band around the pH set-point of ± pH 0.2 if the set-point is pH 6.0 or lower.
机译:在48个生物反应器的磁感应生物反应器中运行的10毫升规模的一次性搅拌罐生物反应器配备有单独的搅拌器速度追踪器,以及单独的DO和pH监测器及控制装置。将霍尔效应传感器系统集成到生物反应模块中,以分别测量由旋转的永磁体引起的磁场密度变化。每当霍尔效应传感器指示一个不旋转的气体感应搅拌器时,磁感应驱动器就会自动重新启动。通过测量固定在每个一次性生物反应器底部的两个化学传感器的荧光衰减时间,在线监测单独的DO和pH。并行的溶解氧测量显示出非常可靠的结果,并且与本研究中用于培养大肠杆菌和酿酒酵母的发酵培养基无关。平行pH测量的标准偏差最小为pH 7.0时的pH 0.1,并且在复合培养基用于酿酒酵母发酵的情况下,在pH 6.0或pH 8.5时增加到pH 0.2的标准偏差。因此,如果设定点为pH 6.0或更低,则在pH设定点附近的公差带(±pH 0.2)下,显示平行pH控制是有意义的。

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