Lab Essentials Applications Development, Sartorius Stedim Biotech GmbH, Göttingen, Lower Saxony, Germany; Institute of Technical Chemistry, Leibniz University Hannover, Hanover, Lower Saxony, Germany.
Lab Essentials Applications Development, Sartorius Stedim Biotech GmbH, Göttingen, Lower Saxony, Germany; Karlsruhe Institute of Technology, Institute of Process Engineering and Life Sciences, Biomolecular Separation Engineering, Karlsruhe, Baden-Württemberg, Germany.
J Chromatogr A. 2022 Jul 5;1674:463148. doi: 10.1016/j.chroma.2022.463148. Epub 2022 May 14.
Enveloped viral vectors like lentiviral vectors pose purification challenges due to their low stability. A gentle purification method is considered one of the major bottlenecks for lentiviral vector bioprocessing. To overcome these challenges, a promising method is steric exclusion chromatography which has been used to purify a variety of target molecules. In this study, we successfully identified optimal process parameters for steric exclusion chromatography to purify lentiviral vectors. Lentiviral vector particle recoveries and infectious recoveries of 86% and 88%, respectively, were achieved. The process parameters optimal for steric exclusion chromatography were determined as follows: polyethylene glycol with a molecular weight of 4000 Da, a polyethylene glycol concentration of 12.5%, and a flow rate of 7 mL⋅min using 5 layers of stabilized cellulose membranes as a stationary phase. High protein and dsDNA removal of approximately 80% were obtained. The remaining polyethylene glycol concentration in the eluate was determined. We defined the maximum loading capacity as 7.5 × 10 lentiviral particles for the lab device used and provide deeper insights into loading strategies. Furthermore, we determined critical process parameters like pressure. We demonstrated in our experiments that steric exclusion chromatography is a gentle purification method with high potential for fragile enveloped viral vectors as it yields high recoveries while efficiently removing impurities.
包膜病毒载体(如慢病毒载体)由于其稳定性低,因此在纯化方面存在挑战。温和的纯化方法被认为是慢病毒载体生物加工的主要瓶颈之一。为了克服这些挑战,一种很有前途的方法是排阻层析法,它已被用于纯化各种靶分子。在这项研究中,我们成功地确定了用于纯化慢病毒载体的排阻层析的最佳工艺参数。分别实现了 86%和 88%的慢病毒载体颗粒回收率和感染性回收率。排阻层析的最佳工艺参数如下:使用 5 层稳定化纤维素膜作为固定相,分子量为 4000 Da 的聚乙二醇,浓度为 12.5%,流速为 7 mL/min。获得了约 80%的高蛋白质和 dsDNA 去除率。确定了洗脱液中剩余聚乙二醇的浓度。我们将实验室设备的最大载量定义为 7.5×10 个慢病毒颗粒,并提供了更深入的装载策略见解。此外,我们还确定了关键工艺参数,如压力。我们的实验证明,排阻层析是一种温和的纯化方法,对脆弱的包膜病毒载体具有很大的潜力,因为它可以在有效去除杂质的同时实现高回收率。