衣壳
腺相关病毒
分析超速离心
生物
计算生物学
病毒学
重组DNA
遗传增强
病毒
基因
超离心机
遗传学
载体(分子生物学)
生物化学
作者
Xiaotong Fu,Wei‐Chiang Chen,Christopher Argento,Peter Clarner,Vinay Bhatt,Ryan Dickerson,George M. Bou-Assaf,Meisam Bakhshayeshi,Xiaohui Lü,Svetlana Bergelson,John Pieracci
标识
DOI:10.1089/hgtb.2019.088
摘要
Recombinant adeno-associated virus (rAAV)-mediated gene therapy is a fast-evolving field in the biotechnology industry. One of the major challenges in developing a purification process for AAV gene therapy is establishing an effective yet scalable method to remove empty capsids, or viral vectors lacking the therapeutic gene, from full capsids-viral product containing the therapeutic sequence. Several analytical methods that can quantify the empty-to-full capsid ratio have been reported in the literature. However, as samples can vary widely in viral titer, buffer matrix, and the relative level of empty capsids, understanding the specifications and limitations of different analytical methods is critical to providing appropriate support to facilitate process development. In this study, we developed a novel anion-exchange high-performance liquid chromatography assay to determine the empty-to-full capsid ratio of rAAV samples. The newly developed method demonstrated good comparability with both the transmission electron microscopy and analytical ultracentrifugation methods used in empty-to-full capsid ratio quantification, while providing much higher assay throughput and reducing the minimum sample concentration requirement to 2.7E11 viral genomes/mL.
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