基因传递
病毒包膜
细胞生物学
病毒载体
包络线(雷达)
病毒学
基因
细胞
生物
化学
遗传增强
病毒
遗传学
重组DNA
计算机科学
雷达
电信
作者
Ryan Tannir,L. Chan,Tomasz M. Grzywa,Orlando D. Arevalo,Alexandra Neeser,S. J. Kahn,Aj Cozzone,Lauren Olenick,Nicola J. Mason,Leyuan Ma
标识
DOI:10.1101/2024.11.08.622723
摘要
Lentiviral vectors that facilitate gene delivery to desired cell types have been widely used in routine laboratory research and therapeutic cell engineering. However, the lack of proper entry receptors on many cell types often results in poor gene delivery. Here, we present a simple paired virus-cell engineering approach that promotes lentiviral gene delivery into mammalian cells. Lentiviruses are dual-pseudotyped with VSV-G and a chimeric envelope protein specifically recognizing a small molecule fluorescein (αFITC-Env), and target cells are transiently labelled with FITC to create surrogate receptors for lentivirus attachment. The synthetic interaction between FITC-labeled cells and FITC-binding LVs enables efficient LV docking, viral entry and stable transgene expression in a range of mammalian cell lines and primary T cells. We showed that this approach enabled efficient delivery of a CD19-targeted chimeric antigen receptor (CAR) into naïve human T cells that are naturally refractory to conventional VSV-G LVs, which upon activation rapidly eradicated CD19
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