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Nature Biotechnology|March 23, 2024
Branched chemically modified poly(A) tails enhance the translation capacity of mRNAHongyu Chen, Dangliang Liu, Jianting Guo, et al.Nature Biotechnology|August 14, 2019
Publisher Correction: Continuous evolution of base editors with expanded target compatibility and improved activityB W Thuronyi, Luke W Koblan, Jonathan M Levy, et al.Science Translational Medicine|August 13, 2025
Engraftment and persistence of HBB base-edited hematopoietic stem cells in nonhuman primatesStefan Radtke, Emily Fields, Kyle Swing, et al.Nature Biomedical Engineering|July 10, 2024
Systematic optimization of prime editing for the efficient functional correction of CFTR F508del in human airway epithelial cellsAlexander A Sousa, Colin Hemez, Lei Lei, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|November 3, 2024
Introducing a hemoglobin G-Makassar variant in HSCs by in vivo base editing treats sickle cell disease in miceChang Li, Aphrodite Georgakopoulou, Kiriaki Paschoudi, et al.Biomaterials|September 3, 2018
Green fluorescent proteins engineered for cartilage-targeted drug delivery: Insights for transport into highly charged avascular tissuesYamini Krishnan, Holly A Rees, Christina P Rossitto, et al.Nature Biotechnology|July 24, 2019
Continuous evolution of base editors with expanded target compatibility and improved activityB W Thuronyi, Luke W Koblan, Jonathan M Levy, et al.Nature Methods|November 11, 2024
EvoAI enables extreme compression and reconstruction of the protein sequence spaceZiyuan Ma, Wenjie Li, Yunhao Shen, et al.Nature Biotechnology|October 5, 2021
Engineered pegRNAs improve prime editing efficiencyJames W Nelson, Peyton B Randolph, Simon P Shen, et al.Nature|October 22, 2019
Search-and-replace genome editing without double-strand breaks or donor DNAAndrew V Anzalone, Peyton B Randolph, Jessie R Davis, et al.Pageof 31