Please wait a minute...

中国生物工程杂志

China Biotechnology
China Biotechnology  2006, Vol. 26 Issue (0): 223-225    DOI:
    
Advances in the Production Technology of Adenovirus Vectors
Download: HTML   PDF(375KB) HTML
Export: BibTeX | EndNote (RIS)      

Abstract  

Adenovirus vectors are one of the most promising gene transfer systems. They are of great value for gene therapy because these vectors achieve temporal high-level transgene expression and high gene transfer efficiency. To meet increasing needs of adenovirus vectors for gene therapy programs, parallel development of efficient, scalable and reproducible production processes is required. Three kinds of complementary cell lines, HEK-293, PER.C6R, A549 and so on, were described briefly. And the advances in the commercial production of adenovirus vectors were reviewed, including production modes such as batch, sequential batch, fed-batch and perfusion, on-line monitoring and control, purification methods such as CsCl density gradient ultracentrifugation and ion-exchange chromatography.



Key wordsGene therapy      Adenovirus vectors      Production technology     
Received: 09 January 2006      Published: 15 June 2006
Cite this article:

. Advances in the Production Technology of Adenovirus Vectors. China Biotechnology, 2006, 26(0): 223-225.

URL:

https://manu60.magtech.com.cn/biotech/     OR     https://manu60.magtech.com.cn/biotech/Y2006/V26/I0/223

[1] ZHAO Xiao-yu,XU Qi-ling,ZHAO Xiao-dong,AN Yun-fei. Enhancing Lentiviral Vector Transduction Efficiency for Facilitating Gene Therapy[J]. China Biotechnology, 2021, 41(8): 52-58.
[2] XU Ying-yong. Current Status and Challenges of Gene Therapy Products[J]. China Biotechnology, 2020, 40(12): 95-103.
[3] CHEN Qing-yu,WANG Xian-zhong,ZHANG Jiao-jiao. Application of Gene Technology in the Treatment of Type 2 Diabetes Mellitus[J]. China Biotechnology, 2020, 40(11): 73-81.
[4] Ya-li HAN,Guang-heng YANG,Yan-wen CHEN,Xiu-li GONG,Jing-zhi ZHANG. The Optimization of Self-deleting Lentiviral Vector Carrying Human β-globin Gene and Promoter[J]. China Biotechnology, 2018, 38(7): 50-57.
[5] LIU Yi-xuan, BIAN Zhen, MA Hong-mei. Progress and Prospect of Cancer Gene Therapy[J]. China Biotechnology, 2016, 36(5): 106-111.
[6] TAO Chang-li, HUANG Shu-lin. Advances in Research on Optimization of Transgenic TCR Pairing in TCR Gene Therapy[J]. China Biotechnology, 2016, 36(3): 87-92.
[7] LIU Rui-qi, WANG Wei-wei, WU Yong-yan, ZHAO Qiu-yun, WANG Yong-sheng, QING Su-zhu. Research Progress of CRISPR-Cas9 and Its Application in Gene Therapy[J]. China Biotechnology, 2016, 36(10): 72-78.
[8] ZHU Shao-yi, GUAN Li-hong, LIN Jun-tang. CRISPR-Cas9 System and Its Applications in Disease Models[J]. China Biotechnology, 2016, 36(10): 79-85.
[9] XUE Jin-feng, XUE Zhi-gang, CHEN Yi-yao, LI Zhuo, YIN Biao, WU Ling-qian, LIANG De-sheng. In vitro and in vivo Gene Therapy Research of CDTK Genes Drove by Enhanced Tumor-specific Promoter in Liver Cancer[J]. China Biotechnology, 2015, 35(6): 1-7.
[10] XUE Yu-wen, LI Tie-jun, ZHOU Jia-ming, CHEN Li. The Application and Perspectives of Multi-target RNAi in the Research and Development of Gene Therapy[J]. China Biotechnology, 2015, 35(1): 75-81.
[11] MA Bu-yun, HE Wan-wan, ZHOU Li, WANG Yi-gang. The Study on Anticancer Effect of Targeting Gene-Virus ZD55-XAF1 in Liver Cancer Xenograft of Mice and Its Safety[J]. China Biotechnology, 2014, 34(1): 15-20.
[12] FAN Fu, CHEN Jian-guo, REN Hong-wei. Development of Gene Therapy for Parkinson’s Disease And Alzheimer’s Disease[J]. China Biotechnology, 2013, 33(4): 129-135.
[13] LIU Si-ye, XIA Hai-bin. A New Targeted Gene Editing Technology Mediated by CRISPR-Cas System[J]. China Biotechnology, 2013, 33(10): 117-123.
[14] WANG Chao, AN Xue-li, ZHANG Zeng-wei, YANG Qing, RAO Li-qun, CHEN Xin-bo, FANG Cai-chen, WAN Xiang-yuan. Research Progress and Prospect of Breeding Technological System Based on Recessive Genic Male-sterile Genes in Plants[J]. China Biotechnology, 2013, 33(10): 124-130.
[15] CHEN Feng, YANG Yi-shu, ZENG Yi. Current Development on RNA-based Anti-HIV-1 Gene Therapy[J]. China Biotechnology, 2012, 32(6): 93-97.