Control of antibody high and low molecular weight species by depth filtration‐based cell culture harvesting

过滤(数学) 吸附 化学 色谱法 滤波器(信号处理) 大小排阻色谱法 疏水效应 生物物理学 生物化学 生物 有机化学 数学 统计 计算机科学 计算机视觉
作者
Deqiang Yu,Mukesh Mayani,Yuanli Song,Zizhuo Xing,Sanchayita Ghose,Zheng Jian Li
出处
期刊:Biotechnology and Bioengineering [Wiley]
卷期号:116 (10): 2610-2620 被引量:15
标识
DOI:10.1002/bit.27081
摘要

Depth filtration-based harvesting is widely used in mAb manufacturing to remove cell and process-related impurities. However, it has not been studied on control of product-related impurities, which are very critical for product quality. In this article, we studied the interactions of depth filter with high and low molecular weight species (HMWs and LMWs) for their direct removal from cell culture. The process parameters (filter, loading, temperature, and flux) were evaluated for adsorption of HMWs and LMWs by depth filters. The adsorption is significantly dependent on filter media and loading capacity and is mainly on the basis of hydrophobic interaction during harvesting. The HMW and LMW species were characterized as HMW1, HMW2, LMW1, and LMW2. The increasing binding from LMW2 to LMW1, HMW1, and HMW2 is correlated with their increasing hydrophobicity score. Adsorption using enriched HMW sample demonstrated similar total protein binding capacity (36-40 g/m2 ) between depth filters D0HC and X0HC. However, X0HC has stronger HMW binding than D0HC (71% vs 43% of bound protein), indicating more hydrophobic interaction in X0HC. HMW2 DBC on X0HC reached 12 g/m2 , similar to protein binding on hydrophobic interaction membrane adsorbers. Further study showed LMW can induce HMW formation. This study provides a critical understanding of HMW and LMW interaction with depth filters. The strategy of HMW and LMW control by depth filtration-based harvesting was implemented successfully in mAb manufacturing.
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