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首页> 外文期刊>Biotechnology Progress >Modeling Shear-Induced CHO Cell Damage in a Rotary Positive Displacement Pump
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Modeling Shear-Induced CHO Cell Damage in a Rotary Positive Displacement Pump

机译:在旋转正排量泵中模拟剪切诱导的CHO细胞损伤

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摘要

Rotary lobe pumps are commonly used in the biotechnology industry for a variety of purposes. Shear damage to animal cells within the rotary lobe pump can adversely affect the product yield or purity during, for example, cell concentration via cross-flow filtration. In this research, CHO cells grown in 20-L bioreactors were fed to a rotary lobe pump in both single pass and recycle experiments were conducted at different RPMs and "slip" conditions. The results indicate that the slip flow rate more severely impacts the viability of the CHO cells than the pump RPM. A novel mathematical modeling approach is presented that predicts shear rates in all of the positive displacement pump's slip regions, and then predicts cell death vs. operating conditions. This model accounts for the complex flow situation that results from changes to RPM, backpressure and pump geometry (i.e., clearances).
机译:旋转叶片泵通常在生物技术行业中用于多种目的。旋转瓣泵内对动物细胞的剪切损伤会在例如通过错流过滤进行细胞浓缩期间对产品的产量或纯度产生不利影响。在这项研究中,将在20升生物反应器中生长的CHO细胞以单次通过的方式送入旋转叶片泵,并在不同的RPM和“滑移”条件下进行了循环实验。结果表明,滑移流速比泵RPM更严重地影响CHO细胞的生存能力。提出了一种新颖的数学建模方法,该方法可以预测所有容积泵的滑移区域的剪切速率,然后预测细胞死亡与工作条件的关系。该模型说明了由于RPM,背压和泵几何形状(即间隙)的变化而导致的复杂流量情况。

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