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通过流通色谱法高效纯化抗SARS-CoV-2的重组水疱性口炎病毒-ΔG-刺突疫苗

Highly Efficient Purification of Recombinant VSV-∆G-Spike Vaccine against SARS-CoV-2 by Flow-Through Chromatography.

作者信息

Lerer Elad, Oren Ziv, Kafri Yaron, Adar Yaakov, Toister Einat, Cherry Lilach, Lupu Edith, Monash Arik, Levy Rona, Dor Eyal, Epstein Eyal, Levin Lilach, Girshengorn Meni, Natan Niva, Zichel Ran, Makovitzki Arik

机构信息

Department of Biotechnology, Israel Institute for Biological Research (IIBR), Ness-Ziona 74100, Israel.

出版信息

BioTech (Basel). 2021 Oct 12;10(4):22. doi: 10.3390/biotech10040022.

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.

摘要

本研究报告了一种高效、快速的一步纯化工艺,用于生产基于重组水疱性口炎病毒的疫苗rVSV-∆G-spike(rVSV-S),该疫苗由以色列生物研究所(IIBR)最近开发用于预防COVID-19。使用多种色谱方法评估了几种纯化策略,包括膜吸附剂和填充床离子交换色谱。细胞收获物首先用核酸内切酶处理,澄清,然后在色谱纯化之前通过超滤进一步浓缩。所有形式的阴离子交换色谱都会导致病毒与介质强烈结合,因此需要高盐浓度进行洗脱。大的病毒和刺突蛋白与膜吸附剂的高表面积结合非常强烈,导致病毒回收率低(<15%),而使用表面积较小的填充床色谱可实现更好的回收率(高达33%)。最后,描述了一种使用Capto Core 700树脂的高效色谱纯化工艺,该工艺不需要病毒的结合和洗脱。rVSV-S无法进入树脂的内部孔隙,而是收集在流通洗脱液中。使用Capto Core 700纯化rVSV-S病毒,此步骤的病毒感染性高于85%,能有效去除宿主细胞蛋白,符合监管要求。在没有初始超滤步骤的情况下也获得了类似结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cd6/9245476/b6c2567d0cd0/biotech-10-00022-g001.jpg

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