AI Article Synopsis

  • - This study outlines a fast and efficient one-step purification method for the rVSV-∆G-spike vaccine against COVID-19, developed by the IIBR, testing various chromatography techniques.
  • - Initial treatment of cell harvest involves endonuclease, clarification, and concentration through ultrafiltration, followed by chromatography; anion-exchange chromatography necessitates high salt for elution but shows low virus recovery.
  • - The Capto Core 700 resin-based purification yields over 85% viral infectivity and effectively removes host cell proteins, meeting regulatory standards without needing an initial ultrafiltration stage.

Article Abstract

This study reports a highly efficient, rapid one-step purification process for the production of the recombinant vesicular stomatitis virus-based vaccine, rVSV-∆G-spike (rVSV-S), recently developed by the Israel Institute for Biological Research (IIBR) for the prevention of COVID-19. Several purification strategies are evaluated using a variety of chromatography methods, including membrane adsorbers and packed-bed ion-exchange chromatography. Cell harvest is initially treated with endonuclease, clarified, and further concentrated by ultrafiltration before chromatography purification. The use of anion-exchange chromatography in all forms results in strong binding of the virus to the media, necessitating a high salt concentration for elution. The large virus and spike protein binds very strongly to the high surface area of the membrane adsorbents, resulting in poor virus recovery (<15%), while the use of packed-bed chromatography, where the surface area is smaller, achieves better recovery (up to 33%). Finally, a highly efficient chromatography purification process with Capto Core 700 resin, which does not require binding and the elution of the virus, is described. rVSV-S cannot enter the inner pores of the resin and is collected in the flow-through eluent. Purification of the rVSV-S virus with Capto Core 700 resulted in viral infectivity above 85% for this step, with the efficient removal of host cell proteins, consistent with regulatory requirements. Similar results were obtained without an initial ultrafiltration step.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9245476PMC
http://dx.doi.org/10.3390/biotech10040022DOI Listing

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