A Single-Step Method for Harvesting Influenza Viral Particles from MDCK Cell Culture Supernatant with High Yield and Effective Impurity Removal
Sixu Liu, Jingqi Li, Qingtian Cheng, Kangyi Duan, Zhan Wang, Shuang Yan, Shuaishuai Tian, Hairui Wang, Shaobin Wu, Xinkui Lei, Yu Yang, Ningning Ma

TL;DR
This paper introduces a simple and efficient method to purify influenza viruses from cell cultures, achieving high virus recovery and effective removal of impurities.
Contribution
A novel cation-exchange SP chromatography process is proposed for influenza virus purification with high yield and impurity removal.
Findings
The SP process achieved over 90% influenza virus recovery and over 97% HCP and 99% dsDNA removal.
The SP process was effective across seven influenza virus strains recommended for vaccines.
Optimal performance was achieved with a 1:2 dilution of the cell culture broth.
Abstract
Influenza vaccines, which are recommended by the World Health Organization (WHO), are the most effective preventive measure against influenza virus infection. Madin–Darby canine kidney (MDCK) cell culture is an emerging technology used to produce influenza vaccines. One challenge when purifying influenza vaccines using this cell culture system is to efficiently remove impurities, especially host cell double-stranded DNA (dsDNA) and host cell proteins (HCPs), for safety assurance. In this study, we optimized ion-exchange chromatography methods to harvest influenza viruses from an MDCK cell culture broth, the first step in influenza vaccine purification. Bind/elute was chosen as the mode of operation for simplicity. The anion-exchange Q chromatography method was able to efficiently remove dsDNA and HCPs, but the recovery rate for influenza viruses was low. However, the cation-exchange SP…
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Taxonomy
TopicsInfluenza Virus Research Studies · Protein purification and stability · Monoclonal and Polyclonal Antibodies Research
