van Eikenhorst Gerco, Thomassen Yvonne E, van der Pol Leo A, Bakker Wilfried A M
Inst. for Translational Vaccinology (Intravacc, process development), P.O. Box 450, 3720, AL Bilthoven, The Netherlands.
Biotechnol Prog. 2014 Nov-Dec;30(6):1269-76. doi: 10.1002/btpr.1981. Epub 2014 Sep 5.
Mass transfer, mixing times and power consumption were measured in rigid disposable stirred tank bioreactors and compared to those of a traditional glass bioreactor. The volumetric mass transfer coefficient and mixing times are usually determined at high agitation speeds in combination with sparged aeration as used for single cell suspension and most bacterial cultures. In contrast, here low agitation speeds combined with headspace aeration were applied. These settings are generally used for cultivation of mammalian cells growing adherent to microcarriers. The rigid disposable vessels showed similar engineering characteristics compared to a traditional glass bioreactor. On the basis of the presented results appropriate settings for adherent cell culture, normally operated at a maximum power input level of 5 W m(-3) , can be selected. Depending on the disposable bioreactor used, a stirrer speed ranging from 38 to 147 rpm will result in such a power input of 5 W m(-3) . This power input will mix the fluid to a degree of 95% in 22 ± 1 s and produce a volumetric mass transfer coefficient of 0.46 ± 0.07 h(-1) .
在刚性一次性搅拌罐式生物反应器中测量了传质、混合时间和功耗,并与传统玻璃生物反应器进行了比较。体积传质系数和混合时间通常是在高搅拌速度下结合鼓泡曝气来确定的,这用于单细胞悬浮培养和大多数细菌培养。相比之下,这里采用的是低搅拌速度结合顶空曝气。这些设置通常用于培养附着在微载体上生长的哺乳动物细胞。与传统玻璃生物反应器相比,刚性一次性容器显示出相似的工程特性。根据给出的结果,可以选择适用于贴壁细胞培养的合适设置,贴壁细胞培养通常在最大功率输入水平为5 W m(-3)下运行。根据所使用的一次性生物反应器,搅拌速度在38至147 rpm之间将产生5 W m(-3)的功率输入。该功率输入将在22±1 s内将流体混合至95%的程度,并产生0.46±0.07 h(-1)的体积传质系数。