Related Experiment Video
Updated: May 6, 2026

Expression and Purification of Virus-like Particles for Vaccination
Published on: June 2, 2016
Platform Process for an Autonomous Production of Virus-like Particles
Simon Baukmann1, Alina Hengelbrock1, Kristina Katsoutas2
1Institute for Separation and Process Technology, Clausthal University of Technology, 38678 Clausthal-Zellerfeld, Germany.
Abstract:
Virus-like particles (VLPs) are a promising platform as carriers for vaccination and general treatments against many pathogens. While there are long development timelines and challenges in the production of clinical-grade VLPs, this study introduces a platform process for the production and purification of those particles, aided by process analytical technology (PAT). Fed-batch cultivation and consecutive purification, including novel membrane technology and anion-exchange chromatography, showed robust process performance with design and control spaces defined in previous studies. A novel, stable HEK293F cell line generated using the highly efficient Sleeping Beauty transposon vector technology showed a 3.6-fold increase in productivity compared to a reference cell line established using PiggyBac vector components. The in situ microscope from SOPAT GmbH successfully predicted the viable cell density of a mammalian cell culture, which had been demonstrated for the first time with this type of ISM. Furthermore, Raman, FTIR, and DAD spectroscopies were able to predict the main metabolites and impurities when implemented in the upstream process. FTIR spectra also depicted changes in the buffer composition, therefore enabling robust process control for the prediction of the buffer exchange rate during diafiltration. The applied PAT strategy can deliver real-time data, which is crucial when predictive control is realized with a digital twin. Combined with a robust platform process, the stated control strategy can pave the way toward the autonomous production of VLPs.
More Related Videos
08:40Production of Pseudotyped Particles to Study Highly Pathogenic Coronaviruses in a Biosafety Level 2 Setting
Published on: March 1, 2019
08:10Production of High-Titer Infectious Influenza Pseudotyped Particles with Envelope Glycoproteins from Highly Pathogenic H5N1 and Avian H7N9 Viruses
Published on: January 15, 2020
Related Concept Videos
What are Viruses?
Introduction to Virus
Viral Replication: Lytic Cycle
Viruses with RNA Genomes
Upstream Processing
Vaccine Production