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Dense RNA motif modifications enable robust in vivo prime editing and enhance efficiencies of diverse editing systems

nature biomedical engineering. 2026-09; 
Xinlin Lei, Didi Chen, Kun Zhang, Xiyu Liu, Qiubing Chen, Yizhou Zhang, Ruijin Ji, Jicheng Zhu, Qingyi Zhang, Ying Zhang, Hao Yin
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Gene Synthesis pCMV-PE6c (Addgene #207853), pCMV-PE6d (Addgene #207854) and pCMV-PEmax-P2A-hMLH1dn (Addgene #174828), respectively. Vpx and MLH1-SB were synthesized by GenScript Corporation according to recent publications62,64. A Get A Quote

摘要

Prime editing holds promise for therapeutic applications. However, viral delivery of the prime editor presents challenges for clinical translation due to concerns regarding long-term expression. Meanwhile, systemic delivery using non-viral vectors has been limited by low efficiency, the need for repeated injections and reliance on doses that exceed clinically translatable levels. Here we develop engineered prime editing guide RNAs (pegRNAs) with densely modified RNA motifs and demonstrate their application for efficient in vivo prime editing. By systemically delivering the prime editor in RNA format via a single injection of lipid nanoparticles, we achieved nearly 70% editing efficiency in the bulk mouse liver,... More

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