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比较细菌模块化多瘤病毒主要衣壳蛋白 VP1 的集成纯化途径,以使用高通量工艺技术生产病毒样颗粒。

Comparative evaluation of integrated purification pathways for bacterial modular polyomavirus major capsid protein VP1 to produce virus-like particles using high throughput process technologies.

机构信息

The University of Adelaide, School of Chemical Engineering and Advanced Materials, Adelaide, SA 5005, Australia.

Cytiva, Product and Application Specialist Downstream Design-In ANZ, Suite 547, Level 5, 7 Eden Park Drive, Macquarie Park, NSW 2113, Australia.

出版信息

J Chromatogr A. 2021 Feb 22;1639:461924. doi: 10.1016/j.chroma.2021.461924. Epub 2021 Jan 21.

Abstract

Modular virus-like particles and capsomeres are potential vaccine candidates that can induce strong immune responses. There are many described protocols for the purification of microbially-produced viral protein in the literature, however, they suffer from inherent limitations in efficiency, scalability and overall process costs. In this study, we investigated alternative purification pathways to identify and optimise a suitable purification pathway to overcome some of the current challenges. Among the methods, the optimised purification strategy consists of an anion exchange step in flow through mode followed by a multi modal cation exchange step in bind and elute mode. This approach allows an integrated process without any buffer adjustment between the purification steps. The major contaminants like host cell proteins, DNA and aggregates can be efficiently removed by the optimised strategy, without the need for a size exclusion polishing chromatography step, which otherwise could complicate the process scalability and increase overall cost. High throughput process technology studies were conducted to optimise binding and elution conditions for multi modal cation exchanger, Capto™ MMC and strong anion exchanger Capto™ Q. A dynamic binding capacity of 14 mg ml was achieved for Capto™ MMC resin. Samples derived from each purification process were thoroughly characterized by RP-HPLC, SEC-HPLC, SDS-PAGE and LC-ESI-MS/MS Mass Spectrometry analytical methods. Modular polyomavirus major capsid protein could be purified within hours using the optimised process achieving purities above 87% and above 96% with inclusion of an initial precipitation step. Purified capsid protein could be easily assembled in-vitro into well-defined virus-like particles by lowering pH with addition of calcium chloride to the eluate. High throughout studies allowed the screening of a vast design space within weeks, rather than months, and unveiled complicated binding behaviour for Capto MMC.

摘要

模块化病毒样颗粒和衣壳粒是潜在的疫苗候选物,可以诱导强烈的免疫反应。文献中有许多描述微生物生产的病毒蛋白纯化的方案,然而,它们在效率、可扩展性和整体过程成本方面存在固有局限性。在这项研究中,我们研究了替代的纯化途径,以确定和优化合适的纯化途径,以克服当前的一些挑战。在这些方法中,优化的纯化策略包括流穿模式下的阴离子交换步骤,然后是结合和洗脱模式下的多模式阳离子交换步骤。这种方法允许在不进行任何缓冲液调整的情况下进行集成过程。通过优化的策略,可以有效地去除主要污染物,如宿主细胞蛋白、DNA 和聚集体,而不需要进行尺寸排阻抛光色谱步骤,否则可能会使过程的可扩展性复杂化,并增加整体成本。进行了高通量工艺技术研究,以优化多模式阳离子交换剂 Capto™MMC 和强阴离子交换剂 Capto™Q 的结合和洗脱条件。Capto™MMC 树脂的动态结合容量达到 14mg/ml。通过反相高效液相色谱、SEC-HPLC、SDS-PAGE 和 LC-ESI-MS/MS 质谱分析方法对来自每个纯化过程的样品进行了彻底的表征。使用优化的工艺,模块化多瘤病毒主要衣壳蛋白可以在数小时内纯化,纯度超过 87%,如果包括初始沉淀步骤,则纯度超过 96%。通过向洗脱液中添加氯化钙降低 pH 值,可将纯化的衣壳蛋白容易地在体外组装成具有良好定义的病毒样颗粒。高通量研究允许在几周内而不是几个月内筛选出广阔的设计空间,并揭示了 Capto MMC 的复杂结合行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17db/7825977/4f0401fb1de6/gr1_lrg.jpg

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