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首页> 外文期刊>Cytotechnology >Numerical simulation of scaling-up an inverted frusto-conical shaking bioreactor with low shear stress for mammalian cell suspension culture
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Numerical simulation of scaling-up an inverted frusto-conical shaking bioreactor with low shear stress for mammalian cell suspension culture

机译:低剪切应力倒截头圆锥形摇动生物反应器放大用于哺乳动物细胞悬浮培养的数值模拟

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Shear stress is one of the key factors affecting the large-scale culture of mammalian cells. In this study, numerical simulation based on computational fluid dynamics was used to conduct a flow-field analysis of 7, 50, 200, and 1200 L inverted frusto-conical shaking bioreactors. The results show that the shear rate, specific mass transfer area ( a ), and volumetric oxygen mass transfer coefficient ( k _( L ) a ) gradually decreased as the scale of the bioreactor increased. Through application of BHK21 and CHO cells in 7, 200, and 1200 L bioreactors, it was found that the cell density and antibody expression level increased as the volume of the bioreactor increased. Moreover, the antibody expression level in a 1200?L bioreactor was nearly 30% and 35% higher than that of 7 and 200?L bioreactors, respectively. The results demonstrate that the environment with a larger volume is more suitable for the growth and antibody expression of CHO cells, indicating shear stress might be the most critical factor affecting the scale-up of mammalian cells.
机译:剪应力是影响哺乳动物细胞大规模培养的关键因素之一。在这项研究中,基于计算流体动力学的数值模拟被用于进行7、50、200和1200 L倒截头圆锥形摇动生物反应器的流场分析。结果表明,随着生物反应器规模的增大,剪切速率,比传质面积(a)和体积氧传质系数(k_(L)a)逐渐降低。通过在7、200和1200 L生物反应器中应用BHK21和CHO细胞,发现细胞密度和抗体表达水平随生物反应器体积的增加而增加。此外,在1200?L生物反应器中的抗体表达水平分别比7和200?L生物反应器高近30%和35%。结果表明,较大体积的环境更适合CHO细胞的生长和抗体表达,表明剪切应力可能是影响哺乳动物细胞放大的最关键因素。

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