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CRISPR-mediated rapid arming of poxvirus vectors enables facile generation of the novel immunotherapeutic STINGPOX

Front Immunol. 2023-01; 
Jack T Whelan, Ragunath Singaravelu, Fuan Wang, Adrian Pelin, Levi A Tamming, Giuseppe Pugliese, Nikolas T Martin, Mathieu J F Crupi, Julia Petryk, Bradley Austin, Xiaohong He, Ricardo Marius, Jessie Duong, Carter Jones, Emily E F Fekete, Nouf Alluqmani, Andrew Chen, Stephen Boulton, Michael S Huh, Matt Y Tang, Zaid Taha, Elena Scut, Jean-Simon Diallo, Taha Azad, Brian D Lichty, Carolina S Ilkow, John C Bell
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Molecular Biology Reagents … We apply CARVE to rapidly generate a novel immunogenic vaccinia virus vector, which … synthesized by GenScript (Piscataway, NJ, USA) using the pUC57 Kan simple cloning vector (… Get A Quote

摘要

Poxvirus vectors represent versatile modalities for engineering novel vaccines and cancer immunotherapies. In addition to their oncolytic capacity and immunogenic influence, they can be readily engineered to express multiple large transgenes. However, the integration of multiple payloads into poxvirus genomes by traditional recombination-based approaches can be highly inefficient, time-consuming and cumbersome. Herein, we describe a simple, cost-effective approach to rapidly generate and purify a poxvirus vector with multiple transgenes. By utilizing a simple, modular CRISPR/Cas9 assisted-recombinant vaccinia virus engineering (CARVE) system, we demonstrate generation of a recombinant vaccinia virus expressing ... More

关键词

CRISPR/Cas9 (clustered regularly interspaced short palindromic repeats/CRISPR-associated protein 9), STING agonist, oncolytic virus, poxvirus, vaccinia virus (VACV)