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使用带有区带转子的短期超速离心法大规模纯化包装全基因组的功能性 AAV 颗粒。

Large-scale purification of functional AAV particles packaging the full genome using short-term ultracentrifugation with a zonal rotor.

机构信息

Division of Molecular and Medical Genetics, Center for Gene and Cell Therapy, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.

出版信息

Gene Ther. 2023 Aug;30(7-8):641-648. doi: 10.1038/s41434-023-00398-x. Epub 2023 Mar 28.

Abstract

Adeno-associated virus (AAV) vector-based gene therapy is potentially curative for various genetic diseases; however, the development of a scalable purification method for full-genome AAV vectors remains crucial to increase productivity and reduce cost of GMP production. In this study, we developed a large-scale short-term purification method for functional full-genome AAV particles by using 2-step cesium chloride (CsCl) density-gradient ultracentrifugation with a zonal rotor. The 2-step CsCl method with a zonal rotor improves separation between empty and full-genome AAV particles, reducing the ultracentrifugation time (4-5 h) and increasing the AAV volume for purification. The highly purified full-genome AAV particles were confirmed by analytical ultracentrifugation (AUC), droplet digital PCR (ddPCR) in the whole region of the AAV vector genome, transduction efficiency in target cells, and transmission electronic microscopy (TEM). The high-purity AAV9 particles were obtained using culture supernatant during vector preparation rather than cell lysate. CsCl could be simply removed by a hydroxyapatite column. Interestingly, ddPCR analysis revealed that "empty" AAV particles contain small fragments of the inverted terminal repeat (ITR), probably due to unexpected packaging of Rep-mediated ITR fragments. This large-scale functional AAV vector purification with ultracentrifugation would be effective for gene therapy.

摘要

腺相关病毒 (AAV) 载体基因治疗具有治疗多种遗传疾病的潜力;然而,开发可扩展的全基因组 AAV 载体纯化方法对于提高产量和降低 GMP 生产的成本仍然至关重要。在这项研究中,我们使用两步氯化铯 (CsCl) 密度梯度超速离心法(带区带转子)开发了一种用于功能性全基因组 AAV 颗粒的大规模短期纯化方法。带区带转子的两步 CsCl 方法可改善空壳和全基因组 AAV 颗粒之间的分离,减少超速离心时间(4-5 小时)并增加用于纯化的 AAV 体积。通过分析超速离心 (AUC)、AAV 载体基因组全区域的液滴数字 PCR (ddPCR)、靶细胞中的转导效率和透射电子显微镜 (TEM) 证实了高度纯化的全基因组 AAV 颗粒。使用载体制备过程中的培养上清液而不是细胞裂解物获得高纯度的 AAV9 颗粒。CsCl 可通过羟基磷灰石柱简单去除。有趣的是,ddPCR 分析表明,“空”AAV 颗粒包含反转末端重复序列 (ITR) 的小片段,可能是由于 Rep 介导的 ITR 片段的意外包装。这种使用超速离心的大规模功能性 AAV 载体纯化方法将对基因治疗有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f9c/10457186/a0896181e17a/41434_2023_398_Fig1_HTML.jpg

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