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Modeling of Filtration Processes—Microfiltration and Depth Filtration for Harvest of a Therapeutic Protein Expressed in Pichia pastoris at Constant Pressure

机译:过滤过程的模型—微滤和深度过滤用于恒定压力下巴斯德毕赤酵母中表达的治疗性蛋白的收获

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Filtration steps are ubiquitous in biotech processes due to the simplicity of operation, ease of scalability and the myriad of operations that they can be used for. Microfiltration, depth filtration, ultrafiltration and diafiltration are some of the most commonly used biotech unit operations. For clean feed streams, when fouling is minimal, scaling of these unit operations is performed linearly based on the filter area per unit volume of feed stream. However, for cases when considerable fouling occurs, such as the case of harvesting a therapeutic product expressed in Pichia pastoris, linear scaling may not be possible and current industrial practices involve use of 20–30% excess filter area over and above the calculated filter area to account for the uncertainty in scaling. In view of the fact that filters used for harvest are likely to have a very limited lifetime, this oversizing of the filters can add considerable cost of goods for the manufacturer. Modeling offers a way out of this conundrum. In this paper, we examine feasibility of using the various proposed models for filtration of a therapeutic product expressed in Pichia pastoris at constant pressure. It is observed that none of the individual models yield a satisfactory fit of the data, thus indicating that more than one fouling mechanism is at work. Filters with smaller pores were found to undergo fouling via complete pore blocking followed by cake filtration. On the other hand, filters with larger pores were found to undergo fouling via intermediate pore blocking followed by cake filtration. The proposed approach can be used for more accurate sizing of microfilters and depth filters.
机译:过滤步骤在生物技术过程中无处不在,因为其操作简单,易于扩展且可用于多种操作。微滤,深度过滤,超滤和渗滤是生物技术单元最常用的一些操作。对于清洁的进料流,当结垢最少时,将根据每单位进料流体积的过滤面积线性执行这些单元操作的缩放比例。但是,对于发生严重结垢的情况(例如收获巴斯德毕赤酵母表达的治疗产品的情况),可能无法进行线性缩放,并且当前的工业实践涉及在计算出的过滤面积之上和之上使用20–30%的多余过滤面积考虑到缩放的不确定性。考虑到用于收获的过滤器的使用寿命很有限,过滤器的这种尺寸过大会增加制造商的商品成本。建模提供了解决这个难题的方法。在本文中,我们研究了使用各种建议的模型在恒定压力下过滤巴斯德毕赤酵母中表达的治疗产品的可行性。可以看出,没有一个单独的模型能够令人满意地拟合数据,因此表明有多个污垢机制在起作用。发现具有较小孔的过滤器通过完全的孔阻塞然后滤饼过滤而结垢。另一方面,发现具有较大孔的过滤器通过中间孔堵塞随后滤饼过滤而结垢。所提出的方法可以用于更精确地确定微过滤器和深度过滤器的尺寸。

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