A temperature-sensitive and interferon-silent Sendai virus vector for CRISPR-Cas9 delivery and gene editing in primary human cells

一种温度敏感且干扰素沉默的仙台病毒载体,用于在人类原代细胞中传递 CRISPR-Cas9 并进行基因编辑

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作者:Christian S Stevens, Jillian Carmichael, Ruth Watkinson, Shreyas Kowdle, Rebecca A Reis, Kory Hamane, Jason Jang, Arnold Park, Olivier Pernet, Wannisa Khamaikawin, Patrick Hong, Patricia Thibault, Aditya Gowlikar, Dong Sung An, Benhur Lee

Abstract

The transformative potential of gene editing technologies hinges on the development of safe and effective delivery methods. In this study, we developed a temperature-sensitive and interferon-silent Sendai virus (ts SeV) as a novel delivery vector for CRISPR-Cas9 and for efficient gene editing in sensitive human cell types without inducing IFN responses. ts SeV demonstrates unprecedented transduction efficiency in human CD34+ hematopoietic stem and progenitor cells (HSPCs) including transduction of the CD34+/CD38-/CD45RA-/CD90+(Thy1+)/CD49fhigh stem cell enriched subpopulation. The frequency of CCR5 editing exceeded 90% and bi-allelic CCR5 editing exceeded 70% resulting in significant inhibition of HIV-1 infection in primary human CD14+ monocytes. These results demonstrate the potential of the ts SeV platform as a safe, efficient, and flexible addition to the current gene-editing tool delivery methods, which may help to further expand the possibilities in personalized medicine and the treatment of genetic disorders.

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