Akgün Ali, Maier Bernd, Preis Diana, Roth Birthe, Klingelhöfer Renata, Büchs Jochen
Biochemical Engineering, Aachen University of Technology, Sammelbau Biologie, Worringerweg 1, D-52074 Aachen, Germany.
Biotechnol Prog. 2004 Nov-Dec;20(6):1718-24. doi: 10.1021/bp034289a.
A novel continuous bioreactor system was developed as a shaken culture vessel for the investigation of the growth kinetics and product formation of microorganisms in milliscale. The novel bioreactor system mainly consists of a specially designed 250-mL shake flask with two inlets, one for gas supply and one for medium supply, and one combined outlet on the side of flask for exhaust gas and culture liquid. As a result of the circulating motion of the fermentation broth in the shake flask, the maximum liquid height reaches the edge of the outlet and the fermentation broth is accelerated into the outlet by centrifugal force. Additionally, the excess fermentation broth leaving the culture vessel is continuously driven by the exhaust gas. Because of the small scale and the simple handling it is possible to operate many of these shaken bioreactor vessels simultaneously. By using parallel vessels operated at different dilution rates on the same shaker, the data for a complete biomass over dilution rate (X-D) diagram of a biological culture can be evaluated in an efficient manner, thus saving money, materials, and time. Continuous fermentations of the yeast Saccharomyces cerevisiae H1022 (ATCC 32167) in the shaken bioreactor system and in a conventional stirred tank fermentor showed very similar results.
开发了一种新型连续生物反应器系统,作为一种摇瓶培养容器,用于在毫升级规模下研究微生物的生长动力学和产物形成。这种新型生物反应器系统主要由一个特别设计的250毫升摇瓶组成,该摇瓶有两个入口,一个用于供气,一个用于供培养基,还有一个位于摇瓶侧面的组合出口,用于排出废气和培养液。由于摇瓶中发酵液的循环运动,最大液高达到出口边缘,发酵液在离心力作用下加速进入出口。此外,离开培养容器的多余发酵液由废气持续驱动。由于规模小且操作简单,可以同时操作多个这样的摇瓶生物反应器容器。通过在同一摇床上使用以不同稀释率运行的平行容器,可以高效评估生物培养物完整的生物量-稀释率(X-D)图的数据,从而节省资金、材料和时间。在摇瓶生物反应器系统和传统搅拌罐发酵罐中对酿酒酵母H1022(ATCC 32167)进行的连续发酵显示出非常相似的结果。