Engineering the Rapid Adenovirus Production and Amplification (RAPA) Cell Line to Expedite the Generation of Recombinant Adenoviruses
Author(s) -
Qiang Wei,
Jiaming Fan,
Junyi Liao,
Yulong Zou,
Dongzhe Song,
JianXiang Liu,
Jing Cui,
Feng Liu,
Chao Ma,
Xue Hu,
Li Li,
Yichun Yu,
Xiangyang Qu,
Liqun Chen,
Xinyi Yu,
Zhicai Zhang,
Zhao Chen,
Zongyue Zeng,
Ruyi Zhang,
Shujuan Yan,
Xingye Wu,
Yi Shu,
Russell R. Reid,
Michael J. Lee,
Jennifer Moritis Wolf,
TongChuan He
Publication year - 2017
Publication title -
cellular physiology and biochemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.486
H-Index - 87
eISSN - 1421-9778
pISSN - 1015-8987
DOI - 10.1159/000475909
Subject(s) - transfection , hek 293 cells , transgene , cell culture , biology , adenoviridae , recombinant dna , microbiology and biotechnology , genetic enhancement , gene delivery , luciferase , viral vector , titer , gene , virology , virus , genetics
While recombinant adenoviruses are among the most widely-used gene delivery vectors and usually propagated in HEK-293 cells, generating recombinant adenoviruses remains time-consuming and labor-intense. We sought to develop a rapid adenovirus production and amplification (RAPA) line by assessing human Ad5 genes (E1A, E1B19K/55K, pTP, DBP, and DNA Pol) and OCT1 for their contributions to adenovirus production.
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