McTaggart S, Al-Rubeai M
Animal Cell Technology Group, School of Chemical Engineering, University of Birmingham, Edgbaston B15 2TT, UK.
Biotechnol Prog. 2000 Sep-Oct;16(5):859-65. doi: 10.1021/bp000078j.
The use of retroviral vectors for human gene therapy requires the production of large quantities of high titer vector stocks. Maintaining high titers during the prolonged culture of packaging cells will require that critical parameters be controlled. The aim of this study was to determine which culture parameters critically affect the production/decay of retroviral vectors produced by the human packaging cell line FLYRD18/LNC-hB7. The stability of retroviral vectors released by this cell line was found to be temperature dependent (half-life of 6.9, 11.0, and 64.3 h when incubated at 37, 32, and 0 degrees C, respectively). Titers increased up to 10-fold when the packaging cells were cultured at 32 degrees C, compared to 37 degrees C, despite a decrease in cell yield (cell-specific titers were 20-fold higher). Virus titers were also over 10-fold higher when the packaging cells were cultured in a reduced serum concentration (1%) compared to 5%. Retrovirus production at a range of pH levels revealed a significant decrease in virus titer at pH levels below 6.8 and above 7.2, optimum titers being achieved in cultures at pH 7.2. Dissolved oxygen levels in the range 20-80% did not significantly affect titers under the conditions tested. Finally, a packed bed system containing the packaging cells immobilized on porous microcarriers was shown to sustain the production of active retroviral vectors for over 1 month, in relatively large volumes.
将逆转录病毒载体用于人类基因治疗需要生产大量高滴度的载体储备液。在包装细胞的长期培养过程中维持高滴度需要控制关键参数。本研究的目的是确定哪些培养参数对人包装细胞系FLYRD18/LNC-hB7产生的逆转录病毒载体的生产/衰减有至关重要的影响。发现该细胞系释放的逆转录病毒载体的稳定性取决于温度(分别在37、32和0摄氏度孵育时半衰期为6.9、11.0和64.3小时)。与37摄氏度相比,当包装细胞在32摄氏度培养时,滴度增加了10倍,尽管细胞产量有所下降(细胞特异性滴度高20倍)。当包装细胞在血清浓度降低(1%)的条件下培养时,病毒滴度也比在5%血清浓度下培养时高出10倍以上。在一系列pH值水平下进行逆转录病毒生产发现,pH值低于6.8和高于7.2时病毒滴度显著下降,在pH 7.2的培养物中可达到最佳滴度。在测试条件下,20%-80%范围内的溶解氧水平对滴度没有显著影响。最后,一个包含固定在多孔微载体上的包装细胞的填充床系统被证明能够在相对较大体积的情况下持续生产活性逆转录病毒载体超过1个月。