转导(生物物理学)
转基因
生物
基因
清脆的
基因传递
遗传增强
细胞生物学
癌症研究
计算生物学
遗传学
生物化学
作者
Meisam Naeimi Kararoudi,Shibi Likhite,Ezgi Elmas,Kenta Yamamoto,M. Schwartz,Kinnari Sorathia,Marcelo de Souza Fernandes Pereira,Yasemin Sezgin,Raymond D. Devine,Justin Lyberger,Gregory K. Behbehani,Nitin Chakravarti,Branden S. Moriarity,Kathrin Meyer,Dean A. Lee
标识
DOI:10.1016/j.crmeth.2022.100236
摘要
Human primary natural killer (NK) cells are being widely advanced for cancer immunotherapy. However, methods for gene editing of these cells have suffered low transduction rates, high cell death, and loss of transgene expression after expansion. Here, we developed a highly efficient method for site-specific gene insertion in NK cells using CRISPR (Cas9/RNP) and AAVs. We compared AAV vectors designed to mediate gene insertion by different DNA repair mechanisms, homology arm lengths, and virus concentrations. We then validated the method for site-directed gene insertion of CD33-specific CARs into primary human NK cells. CAR transduction was efficient, its expression remained stable after expansion, and it improved efficacy against AML targets.
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