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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >A split airlift bioreactor for continuous culture of Glycyrrhiza inflata cell suspensions
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A split airlift bioreactor for continuous culture of Glycyrrhiza inflata cell suspensions

机译:分体式气提生物反应器,用于连续培养甘草的细胞悬浮液

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摘要

In this study, we established a perfusion split airlift bioreactor coupled with a cell retention device (CRD) and tested for the production of Glycyrrhiza inflata cell suspension cultures. The main components of the CRD were two steel membrane filters and a bidirectional-pump. The results indicated that cells could effectively be separated from the medium by using 200-mu m-pore membrane filters. When the bioreactor was operational, liquid was rotated in both the reaction column and the CRD. The frequency with which the direction of liquid circulation changed in the CRD was a key factor for ensuring that the membrane was clean and the filter remained unclogged. This was achieved even at high cell densities, when the direction of liquid circulation in the CRD changed every 5 min. Nevertheless, liquid circulation mode in the reaction column was disturbed to some extent by the fast rotation of the bidirectional-pump, which worked against mass transfer and cell growth. Under appropriate conditions the bioreactor system operated smoothly and the maximum cell concentration of 27.2 g L-1 dry weight was attained.
机译:在这项研究中,我们建立了带有细胞保留装置(CRD)的灌注拆分式气举生物反应器,并测试了生产甘草黄体细胞悬浮培养物的能力。 CRD的主要组件是两个钢膜过滤器和一个双向泵。结果表明,使用200μm孔膜过滤器可以有效地从培养基中分离细胞。当生物反应器运行时,液体在反应塔和CRD中均旋转。 CRD中液体循环方向改变的频率是确保膜清洁且过滤器保持畅通的关键因素。当CRD中的液体循环方向每5分钟更改一次时,即使在高细胞密度下也可以实现这一点。然而,双向泵的快速旋转在一定程度上扰乱了反应塔中的液体循环模式,这不利于传质和细胞生长。在适当的条件下,生物反应器系统运行平稳,最大细胞浓度为27.2 g L-1干重。

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