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用于长期大规模生产高滴度基于HIV-1的慢病毒载体的包装细胞系的构建

Generation of a packaging cell line for prolonged large-scale production of high-titer HIV-1-based lentiviral vector.

作者信息

Ni Yajin, Sun Susan, Oparaocha Ibe, Humeau Laurent, Davis Brian, Cohen Reuben, Binder Gwendolyn, Chang Yung-Nien, Slepushkin Vladimir, Dropulic Boro

机构信息

VIRxSYS Corporation, Gaithersburg, Maryland 20877 [correction] USA.

出版信息

J Gene Med. 2005 Jun;7(6):818-34. doi: 10.1002/jgm.726.

Abstract

BACKGROUND

A stable packaging cell line facilitates large-scale lentivirus vector manufacture. However, it has been difficult to produce clinical-scale HIV-1-based lentiviral vectors using a packaging cell line, in part due to toxicity of packaging genes, and gene silencing that occurs during the long culture period necessary for sequential addition of packaging constructs.

METHODS

To avoid these problems, we developed a three-level cascade gene regulation system designed to remove tetracycline transactivator (tTA) from cytomegalovirus immediate early promoter (CMV)-controlled expression to reduce cytotoxicity from constitutive expression of tTA and leaky expression of packaging genes. We also performed a one-step integration of the three packaging plasmids to shorten the culture time for clonal selection.

RESULTS

Although leaky expression of p24 and vector production still occurred despite the three-level regulation system, little cytotoxicity was observed and producer cells could be expanded for large-scale production. Producer cells yielded remarkably stable vector production over a period greater than 11 days with the highest titer 3.5 x 10(7) transducing units (TU)/ml and p24 300 ng/ml, yielding 2.2 x 10(11) TU and 1.8 milligram (mg) p24 from one cell factory. No replication-competent lentivirus (RCL) was detected. Long-term analysis demonstrated that, although the cells are genetically stable, partial gene silencing occurs after 2-3 months in culture; however, the one-step construct integration allowed prolonged vector production before significant gene silencing. Concentrated vector resulted in 90% transduction in CD4+ lymphocytes at 20 TU per cell. CD34+ progenitor cells were transduced at 41-46% efficiency, and long-term initiating culture (LTC-IC) was transduced at 45-51%.

CONCLUSIONS

These results demonstrate for the first time HIV-1-based lentiviral vector production on the large scale using a packaging cell line.

摘要

背景

稳定的包装细胞系有助于大规模生产慢病毒载体。然而,使用包装细胞系生产临床规模的基于HIV-1的慢病毒载体一直存在困难,部分原因是包装基因的毒性以及在依次添加包装构建体所需的长时间培养过程中发生的基因沉默。

方法

为避免这些问题,我们开发了一种三级级联基因调控系统,旨在从巨细胞病毒立即早期启动子(CMV)控制的表达中去除四环素反式激活因子(tTA),以降低tTA组成型表达和包装基因渗漏表达的细胞毒性。我们还对三种包装质粒进行一步整合,以缩短克隆选择的培养时间。

结果

尽管三级调控系统存在p24渗漏表达和载体产生的情况,但观察到细胞毒性很小,并且生产细胞可进行扩增以用于大规模生产。生产细胞在超过11天的时间内产生了非常稳定的载体生产,最高滴度为3.5×10⁷转导单位(TU)/毫升,p24为300纳克/毫升,一个细胞工厂可产生2.2×10¹¹ TU和1.8毫克p24。未检测到有复制能力的慢病毒(RCL)。长期分析表明,尽管细胞基因稳定,但培养2 - 3个月后会发生部分基因沉默;然而,一步构建体整合允许在显著基因沉默之前延长载体生产。浓缩载体在每个细胞20 TU时导致CD4⁺淋巴细胞90%的转导。CD34⁺祖细胞的转导效率为41 - 46%,长期起始培养(LTC - IC)的转导效率为45 - 51%。

结论

这些结果首次证明了使用包装细胞系大规模生产基于HIV-1的慢病毒载体。

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