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通过瞬时转染实现临床级自失活 γ 逆转录病毒载体的放大和生产。

Scale-up and manufacturing of clinical-grade self-inactivating γ-retroviral vectors by transient transfection.

机构信息

Division of Experimental Hematology and Cancer Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229-3039, USA.

出版信息

Gene Ther. 2012 Mar;19(3):246-54. doi: 10.1038/gt.2011.102. Epub 2011 Jul 14.

Abstract

The need for γ-retroviral (gRV) vectors with a self-inactivating (SIN) design for clinical application has prompted a shift in methodology of vector manufacturing from the traditional use of stable producer lines to transient transfection-based techniques. Herein, we set out to define and optimize a scalable manufacturing process for the production of gRV vectors using transfection in a closed-system bioreactor in compliance with current good manufacturing practices (cGMP). The process was based on transient transfection of 293T cells on Fibra-Cel disks in the Wave Bioreactor. Cells were harvested from tissue culture flasks and transferred to the bioreactor containing Fibra-Cel in the presence of vector plasmid, packaging plasmids and calcium-phosphate in Dulbecco's modified Eagle's medium and 10% fetal bovine serum. Virus supernatant was harvested at 10-14 h intervals. Using optimized procedures, a total of five ecotropic cGMP-grade gRV vectors were produced (9 liters each) with titers up to 3.6 × 10(7) infectious units per milliliter on 3T3 cells. One GMP preparation of vector-like particles was also produced. These results describe an optimized process for the generation of SIN viral vectors by transfection using a disposable platform that allows for the generation of clinical-grade viral vectors without the need for cleaning validation in a cost-effective manner.

摘要

临床应用需要具有自我失活(SIN)设计的γ逆转录病毒(gRV)载体,这促使载体制造方法从传统的稳定生产细胞系转向基于瞬时转染的技术。在此,我们旨在根据现行良好生产规范(cGMP),使用封闭系统生物反应器中的转染,为生产 gRV 载体定义和优化可扩展的制造工艺。该工艺基于在 Wave 生物反应器中的 Fibra-Cel 盘上进行 293T 细胞的瞬时转染。细胞从组织培养瓶中收获,并在含有 Fibra-Cel 的生物反应器中,在含有载体质粒、包装质粒和钙-磷酸的 Dulbecco 修改的 Eagle 培养基和 10%胎牛血清中转移。每隔 10-14 小时收获病毒上清液。使用优化的程序,总共生产了五种具有嗜性的 cGMP 级 gRV 载体(每个 9 升),在 3T3 细胞上的滴度高达每毫升 3.6×10(7)感染单位。还生产了一种 GMP 级别的载体样颗粒制剂。这些结果描述了使用一次性平台通过转染生成 SIN 病毒载体的优化工艺,该平台允许以具有成本效益的方式生成临床级别的病毒载体,而无需进行清洁验证。

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