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用于大规模重组腺相关病毒生产的通用且灵活的依赖 Sf9 包装细胞系的 OneBac 系统的开发

Development of Versatile and Flexible Sf9 Packaging Cell Line-Dependent OneBac System for Large-Scale Recombinant Adeno-Associated Virus Production.

作者信息

Wu Yang, Mei Ting, Jiang Liangyu, Han Zengpeng, Dong Ruping, Yang Tian, Xu Fuqiang

机构信息

State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Key Laboratory of Magnetic Resonance in Biological Systems, Wuhan Center for Magnetic Resonance, Brain Research Center, Wuhan Institute of Physics and Mathematics, Center for Excellence in Brain Science and Intelligent Technology, Chinese Academy of Sciences, Wuhan, P.R. China.

出版信息

Hum Gene Ther Methods. 2019 Oct;30(5):172-183. doi: 10.1089/hgtb.2019.123.

Abstract

Recombinant adeno-associated viruses (rAAVs) are excellent vectors for gene delivery. However, current Sf9/Cap-Rep packaging cell line-dependent OneBac systems still lack versatility and flexibility for large-scale production of rAAVs. In this study, we developed an improved OneBac system that includes a novel dual-function baculovirus expression vector (BEV) termed BEV/Cap-(ITR-GOI) that carries both the AAV gene and rAAV genome inverted terminal repeat (ITR) sequences flanking the gene of interest (GOI), a versatile Sf9-GFP/Rep packaging cell line that harbors silent copies of the AAV2 gene that can be expressed after BEV infection, and constitutively expressed green fluorescent protein (GFP) reporter genes to facilitate cell line screening. The BEV/Cap-(ITR-GOI) construct allows flexibility to switch among different gene serotypes using simple BEV reconstruction, and is stable for at least five serial passages. Furthermore, the Sf9-GFP/Rep stable cell line is versatile for production of different rAAV serotypes. The yield levels for rAAV2, rAAV8, and rAAV9 exceeded 10 vector genomes (VG) per cell, which is similar to other currently available large-scale rAAV production systems. The new Bac system-derived rAAVs have biophysical properties similar to HEK293 cell-derived rAAVs, as well as high quality and activity. In summary, the novel Sf9-GFP/Rep packaging cell line-dependent OneBac system can facilitate large-scale rAAV production and rAAV-based gene therapy.

摘要

重组腺相关病毒(rAAV)是用于基因递送的优秀载体。然而,当前依赖于Sf9/Cap-Rep包装细胞系的OneBac系统在大规模生产rAAV方面仍缺乏通用性和灵活性。在本研究中,我们开发了一种改进的OneBac系统,该系统包括一种新型的双功能杆状病毒表达载体(BEV),称为BEV/Cap-(ITR-GOI),它携带AAV基因和位于感兴趣基因(GOI)两侧的rAAV基因组反向末端重复(ITR)序列;一种通用的Sf9-GFP/Rep包装细胞系,其含有AAV2基因的沉默拷贝,在BEV感染后可表达;以及组成型表达的绿色荧光蛋白(GFP)报告基因,以促进细胞系筛选。BEV/Cap-(ITR-GOI)构建体允许通过简单的BEV重建在不同基因血清型之间灵活切换,并且至少连续传代五次仍保持稳定。此外,Sf9-GFP/Rep稳定细胞系可用于生产不同血清型的rAAV。rAAV2、rAAV8和rAAV9的产量水平超过每个细胞10个载体基因组(VG),这与目前其他可用的大规模rAAV生产系统相似。新的Bac系统衍生的rAAV具有与HEK293细胞衍生的rAAV相似的生物物理特性,以及高质量和活性。总之,新型的依赖于Sf9-GFP/Rep包装细胞系的OneBac系统可促进大规模rAAV生产和基于rAAV的基因治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08fb/6834060/59d1eb5c8b26/fig-1.jpg

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