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用于纯化细胞培养源的口疮病毒的受限访问介质的评估。

Evaluation of restricted access media for the purification of cell culture-derived Orf viruses.

作者信息

Lothert Keven, Harsy Yasmina M J, Endres Patrick, Müller Egbert, Wolff Michael W

机构信息

Institute of Bioprocess Engineering and Pharmaceutical Technology University of Applied Sciences Mittelhessen (THM) Giessen Germany.

Tosoh Bioscience GmbH, Separations Business Unit - Europe Griesheim Germany.

出版信息

Eng Life Sci. 2023 Jul 14;23(9):e2300009. doi: 10.1002/elsc.202300009. eCollection 2023 Sep.

Abstract

Recently, multimodal chromatography using restricted access media (RAM) for the purification of nanoparticles, such as viruses has regained increasing attention. These chromatography resins combine size exclusion on the particle shell and adsorptive interaction within the core. Accordingly, smaller process-related impurities, for example, DNA and proteins, can be retained, while larger product viruses can pass unhindered. We evaluated a range of currently available RAM, differing in the shells' pore cut-off and the core chemistry, for the purification of a cell culture-derived clarified model virus, namely the Orf virus (ORFV). We examined impurity depletion and product recovery as relevant criteria for the evaluation of column performance, as well as scale-up robustness and regeneration potential for evaluating a multiple use application. The results indicate that some columns, for example, the Capto Core, enable both a high DNA and protein removal, while others, for example, the Monomix Core 60 (MC60), are more suitable for DNA depletion. Furthermore, column regeneration is facilitated by using columns with larger shell pores (5000 vs. 700 kDa) and weaker binding interactions (anion exchange vs. multimodal). According to these findings, the choice of RAM resins should be selected according to the respective feed sample composition and the planned number of application cycles.

摘要

最近,使用受限介质(RAM)进行多模态色谱法来纯化纳米颗粒(如病毒)已重新受到越来越多的关注。这些色谱树脂结合了颗粒外壳上的尺寸排阻和内核内的吸附相互作用。因此,较小的与工艺相关的杂质(例如DNA和蛋白质)可以被保留,而较大的产物病毒可以不受阻碍地通过。我们评估了一系列目前可用的RAM,它们在外壳的孔径截止和内核化学性质方面有所不同,用于纯化一种细胞培养来源的澄清模型病毒,即羊口疮病毒(ORFV)。我们将杂质去除和产物回收率作为评估柱性能的相关标准,以及将放大稳健性和再生潜力作为评估多次使用应用的标准。结果表明,一些柱子(例如Capto Core)能够实现高DNA和蛋白质去除率,而其他柱子(例如Monomix Core 60(MC60))更适合去除DNA。此外,使用具有较大外壳孔径(5000 kDa对700 kDa)和较弱结合相互作用(阴离子交换对多模态)的柱子有助于柱再生。根据这些发现,应根据各自的进料样品组成和计划的应用循环次数来选择RAM树脂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4abd/10472920/5ccc299005ac/ELSC-23-e2300009-g002.jpg

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