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Bioreactor scale-down studies of suspended plant cell cultures

机译:生物反应器悬浮植物细胞培养的缩放研究

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The effect of dissolved oxygen fluctuations on suspended plant cells was investigated using a scale-down stirred bioreactor system to simulate the heterogeneous conditions found in large-scale vessels. Transgenic Nicotiana tabacum cells expressing IgG1 antibody and Thalictrum minus cells producing berberine were subjected to gas switching cycles based on a stochastic model of log-normal circulation time distributions. Because pumping severely damaged the cells, the scale-down approach was restricted to a single-vessel system. Dissolved oxygen oscillations of amplitude about +/- 5% air saturation were achieved in the N. tabacum cultures; however, most simulations produced highly damped fluctuations due to oxygen transfer limitations and no significant effect on the cultures was observed. In contrast, berberine production by T. minus cells was reduced when fluctuations of +/- 10-15% air saturation were superimposed on mean dissolved oxygen tensions of 25 and 35% air saturation. This work demonstrates that dissolved oxygen gradients such as those found in large-scale mixing vessels can be detrimental to plant cell cultures even when sufficient average dissolved oxygen levels are provided. (c) 2018 American Institute of Chemical Engineers
机译:使用鳞片向下搅拌的生物反应器系统研究了溶解氧气波动对悬浮植物细胞的影响,以模拟大规模血管中发现的异质条件。基于对数正常循环时间分布的随机模型,对表达IgG1抗体和丘脑颌骨细胞的转基因烟草细胞进行燃气切换循环。由于泵送严重损坏细胞,因此缩减方法仅限于单血管系统。在N.Babacum培养物中达到了约+/- 5%的空气饱和度的溶解氧振荡;然而,大多数模拟由于氧气转移限制而产生高度阻尼波动,并且没有对培养物没有显着影响。相反,当+/- 10-15%空气饱和的波动叠加在平均溶解的氧气张力为25和35%的空气饱和度时,减少了T.Berberine的产生。这项工作表明,即使提供足够的平均溶解的氧水平,也可以对大规模混合容器中发现的溶解的氧梯度诸如在大规模混合容器中发现的那些。 (c)2018美国化学工程研究所

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