Lehrstuhl für Bioverfahrenstechnik, Technische Universität München, Garching, Germany.
Biotechnol Bioeng. 2010 Jun 15;106(3):443-51. doi: 10.1002/bit.22706.
A novel milliliter-scale stirred tank bioreactor was developed for the cultivation of mycelium forming microorganisms on a 10 milliliter-scale. A newly designed one-sided paddle impeller is driven magnetically and rotates freely on an axis in an unbaffled reaction vessel made of polystyrene. A rotating lamella is formed which spreads out along the reactor wall. Thus an enhanced surface-to-volume ratio of the liquid phase is generated where oxygen is introduced via surface aeration. Volumetric oxygen transfer coefficients (k(L)a) > 0.15 s(-1) were measured. The fast moving liquid lamella efficiently prevents wall growth and foaming. Mean power consumption and maximum local energy dissipation were measured as function of operating conditions in the milliliter-scale stirred tank bioreactor (V = 10 mL) and compared to a standard laboratory-scale stirred tank bioreactor with six-bladed Rushton turbines (V = 2,000 mL). Mean power consumption increases with increasing impeller speed and shows the same characteristics and values on both scales. The maximum local energy dissipation of the milliliter-scale stirred tank bioreactor was reduced compared to the laboratory-scale at the same mean volumetric power input. Hence the milliliter impeller distributes power more uniformly in the reaction medium. Based on these data a reliable and robust scale-up of fermentation processes is possible. This was demonstrated with the cultivation of the actinomycete Streptomyces tendae on both scales. It was shown that the process performances were equivalent with regard to biomass concentration, mannitol consumption and production of the pharmaceutical relevant fungicide nikkomycin Z up to a process time of 120 h. A high parallel reproducibility was observed on the milliliter-scale (standard deviation < 8%) with up to 48 stirred tank bioreactors operated in a magnetic inductive drive. Rheological behavior of the culture broth was measured and showed a highly viscous shear-thinning non-Newtonian behavior. The newly developed one-sided paddle impellers operated in unbaffled reactors on a 10 milliliter-scale with a magnetic inductive drive for up to 48 parallel bioreactors allows for the first time the parallel bioprocess development with mycelium forming microorganisms. This is especially important since these kinds of cultivations normally exhibit process times of 100 h and more. Thus the operation of parallel stirred tank reactors will have the potential to reduce process development times drastically.
一种新型的毫升规模搅拌槽生物反应器被开发出来,用于在 10 毫升规模上培养真菌形成微生物。一个新设计的单边桨式搅拌器通过磁力驱动,并在由聚苯乙烯制成的无挡板反应容器中自由旋转。一个旋转的薄片形成并沿着反应器壁展开。因此,在通过表面曝气引入氧气的情况下,液相的比表面积得到了增强。测量得到的体积氧传递系数(k(L)a)>0.15 s(-1)。快速移动的液体薄片有效地防止了壁生长和泡沫。在毫升规模搅拌槽生物反应器(V=10 毫升)中作为操作条件的函数测量了平均功率消耗和最大局部能量耗散,并与具有六叶 Rushton 涡轮的标准实验室规模搅拌槽生物反应器(V=2000 毫升)进行了比较。平均功率消耗随搅拌器速度的增加而增加,并且在两个尺度上具有相同的特征和值。与实验室规模相比,毫升规模搅拌槽生物反应器的最大局部能量耗散降低了。因此,毫升搅拌器在反应介质中更均匀地分配功率。基于这些数据,可以可靠而稳健地放大发酵过程。这在两种规模上培养放线菌 Streptomyces tendae 时得到了证明。结果表明,在 120 小时的过程时间内,就生物量浓度、甘露醇消耗和制药相关杀真菌剂 nikkomycin Z 的生产而言,过程性能是等效的。在毫升规模上观察到了高的平行重现性(标准偏差<8%),多达 48 个搅拌槽生物反应器在磁感应驱动器中运行。测量了培养液的流变行为,结果表明其具有高度粘稠的剪切稀化非牛顿行为。新型的单边桨式搅拌器在无挡板反应器中以磁感应驱动器运行,在 10 毫升规模上可用于多达 48 个平行生物反应器,首次允许与真菌形成微生物并行进行生物过程开发。这一点非常重要,因为这些类型的培养通常需要 100 小时或更长时间的过程时间。因此,平行搅拌槽反应器的操作有可能大大缩短过程开发时间。