用于 AAV 全包囊富集的膜色谱法:从工艺开发到规模化生产

IF 2.8 3区 医学 Q2 BIOCHEMICAL RESEARCH METHODS
Julio Huato Hernandez, Kurt Boenning, Aydin Kavara, Mark Schofield
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引用次数: 0

摘要

美国食品及药物管理局最近批准了几种基于腺相关病毒(AAV)的基因疗法,这推动了对 AAV 生产的需求。AAV 生产面临的最大挑战之一是去除不含相关基因的 "空 "囊壳。阴离子交换色谱法已成为可扩展的全囊壳富集的领先解决方案。在此,我们开发了一种使用阴离子交换膜色谱法进行空和全 AAV 荚膜基线分离的工艺。这种工艺开发方法利用了 AAV 血清型 8 和 9,并跨越了从分离条件的初步筛选到生产规模工艺的整个过程。通过响应面 DoE 进行了两步洗脱的工艺开发,探索了电导率和第一步洗脱的长度。响应面的结果被用于构建工艺操作空间的统计模型。这些模型提供了回收率和纯度的最佳条件,回收率和纯度均可超过 70%。然后,在放大之前对模型预测进行了小规模验证。我们展示了放大纯化的结果,并表明纯度和产量与响应面模型得出的结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Membrane chromatography for AAV full capsid enrichment: Process development to scale up

The recent FDA approval of several adeno-associated virus (AAV)-based gene therapies is driving demand for AAV production. One of the biggest AAV manufacturing challenges is removing “empty” capsids, which do not contain the gene of interest. Anion exchange chromatography has emerged as the leading solution for scalable full capsid enrichment. Here we develop a process for the baseline separation of empty and full AAV capsids using anion exchange membrane chromatography. This process development approach utilized AAV serotypes 8 and 9 and traverses initial screening of separation conditions up to manufacturing-scale processes. Process development of a two-step elution was performed via response surface DoE, exploring conductivity and the length of the first elution step. The results from response surfaces were used to construct statistical models of the process operating space. These models provide optimal conditions for recovery and purity, both of which can exceed 70 %. Model predictions were then validated at small scale prior to scale-up. We present the results from our scale-up purification and show that purity and yield are consistent with the results obtained from the response surface model.

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来源期刊
Journal of Chromatography B
Journal of Chromatography B 医学-分析化学
CiteScore
5.60
自引率
3.30%
发文量
306
审稿时长
44 days
期刊介绍: The Journal of Chromatography B publishes papers on developments in separation science relevant to biology and biomedical research including both fundamental advances and applications. Analytical techniques which may be considered include the various facets of chromatography, electrophoresis and related methods, affinity and immunoaffinity-based methodologies, hyphenated and other multi-dimensional techniques, and microanalytical approaches. The journal also considers articles reporting developments in sample preparation, detection techniques including mass spectrometry, and data handling and analysis. Developments related to preparative separations for the isolation and purification of components of biological systems may be published, including chromatographic and electrophoretic methods, affinity separations, field flow fractionation and other preparative approaches. Applications to the analysis of biological systems and samples will be considered when the analytical science contains a significant element of novelty, e.g. a new approach to the separation of a compound, novel combination of analytical techniques, or significantly improved analytical performance.
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