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首页> 外文期刊>Journal of Biotechnology >Optimization of HEK-293S cell cultures for the production of adenoviral vectors in bioreactors using on-line OUR measurements
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Optimization of HEK-293S cell cultures for the production of adenoviral vectors in bioreactors using on-line OUR measurements

机译:使用在线OUR测量优化用于生物反应器中腺病毒载体生产的HEK-293S细胞培养

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The culture of HEK-293S cells in a stirred tank bioreactor for adenoviral vectors production for gene therapy is studied. Process monitoring using oxygen uptake rate (OUR) was performed. The OUR was determined on-line by the dynamic method, providing good information of the process evolution. OUR enabled cell activity monitoring, facilitating as well the determination of the feeding rate in perfusion cultures and when to infect the culture. Batch cultures were used to validate the monitoring methodology. A cell density of 10 x 10(5) cell/mL was infected, producing 1.3 x 10(9) infectious viral particles/mL (IVP/mL). To increase cell density values maintaining cell specific productivity, perfusion cultures, based on tangential flow filtration, were studied. In this case, OUR measurements were used to optimize the dynamic culture medium feeding strategy, addressed to avoid any potential nutrient limitation. Furthermore, the infection protocol was defined in order to optimize the use of the viral inoculum, minimizing the uncontrolled release of particles through the filter unit mesh. All these developments enabled an infection at 78 x 10(5) cell/mL with the consequent production of 44 x 10(9) IVP/mL, representing a cell specific productivity 4.3 times higher than for the batch culture. (C) 2011 Elsevier B.V. All rights reserved.
机译:研究了在搅拌罐式生物反应器中HEK-293S细胞的培养,以生产用于基因治疗的腺病毒载体。使用氧气吸收率(OUR)进行过程监控。 OUR是通过动态方法在线确定的,可提供有关流程演进的良好信息。我们的细胞活性监测得以实现,有助于确定灌注培养物中的进食速率以及何时感染培养物。分批培养用于验证监测方法。感染10 x 10(5)细胞/ mL的细胞密度,产生1.3 x 10(9)感染性病毒颗粒/ mL(IVP / mL)。为了增加细胞密度值以维持细胞的单位生产力,研究了基于切向流过滤的灌注培养。在这种情况下,我们的测量用于优化动态培养基的饲喂策略,以避免任何潜在的营养限制。此外,定义了感染方案以优化病毒接种物的使用,从而最大程度地减少了通过过滤器单元网孔的无控制释放。所有这些发展使感染能够以78 x 10(5)细胞/ mL的速度进行,从而产生44 x 10(9)IVP / mL,这代表了比分批培养高4.3倍的细胞比生产率。 (C)2011 Elsevier B.V.保留所有权利。

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