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Biorxiv : the Preprint Server for Biology|March 30, 2023
Self-delivering CRISPR RNAs for AAV Co-delivery and Genome Editing in vivoHan Zhang, Karen Kelly, Jonathan Lee, et al.Nature Materials|February 28, 2025
High-density brush-shaped polymer lipids reduce anti-PEG antibody binding for repeated administration of mRNA therapeuticsYufen Xiao, Xizhen Lian, Yehui Sun, et al.The CRISPR Journal|December 18, 2023
A Fluorescent Reporter Mouse for In Vivo Assessment of Genome Editing with Diverse Cas Nucleases and Prime EditorsZexiang Chen, Suet-Yan Kwan, Aamir Mir, et al.Nucleic Acids Research|November 30, 2023
Self-delivering, chemically modified CRISPR RNAs for AAV co-delivery and genome editing in vivoHan Zhang, Karen Kelly, Jonathan Lee, et al.Biorxiv : the Preprint Server for Biology|October 31, 2023
Addressing the dNTP bottleneck restricting prime editing activityKarthikeyan Ponnienselvan, Pengpeng Liu, Thomas Nyalile, et al.Journal of the American Chemical Society|December 10, 2024
Isosteric 3D Bicyclo[1.1.1]Pentane (BCP) Core-Based Lipids for mRNA Delivery and CRISPR/Cas Gene EditingShiying Wu, Yangyang Yang, Xizhen Lian, et al.Nature Communications|November 2, 2021
Self-inactivating, all-in-one AAV vectors for precision Cas9 genome editing via homology-directed repair in vivoRaed Ibraheim, Phillip W L Tai, Aamir Mir, et al.Proceedings of the National Academy of Sciences of the United States of America|May 18, 2026
A human cardiomyocyte screen identifies optimized lipid nanoparticles for in vivo cardiac gene editingYehui Sun, Yu-Chung Pien, Yufen Xiao, et al.Elife|October 19, 2021
5'-Modifications improve potency and efficacy of DNA donors for precision genome editingKrishna S Ghanta, Zexiang Chen, Aamir Mir, et al.Nature Biotechnology|September 25, 2024
Increasing intracellular dNTP levels improves prime editing efficiencyPengpeng Liu, Karthikeyan Ponnienselvan, Thomas Nyalile, et al.Pageof 6