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David R Liu

Showing results (311-320 of 321) with videos related to

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Nature Genetics|July 3, 2023
Potent and uniform fetal hemoglobin induction via base editingThiyagaraj Mayuranathan, Gregory A Newby, Ruopeng Feng, et al.
Nucleic Acids Research|September 24, 2024
Amphiphilic shuttle peptide delivers base editor ribonucleoprotein to correct the CFTR R553X mutation in well-differentiated airway epithelial cellsKatarina Kulhankova, Anna X Cheng, Soumba Traore, et al.
Biorxiv : the Preprint Server for Biology|February 27, 2026
Mechanistic machine learning enables interpretable and generalizable prediction of prime editing outcomesAlvin Hsu, Peter J Chen, Angus H Li, et al.
The Journal of Biological Chemistry|July 30, 2020
Multimodal small-molecule screening for human prion protein bindersAndrew G Reidenbach, Michael F Mesleh, Dominick Casalena, et al.
Nature|June 3, 2021
Base editing of haematopoietic stem cells rescues sickle cell disease in miceGregory A Newby, Jonathan S Yen, Kaitly J Woodard, et al.
Nature Biotechnology|May 11, 2023
A prime editor mouse to model a broad spectrum of somatic mutations in vivoZackery A Ely, Nicolas Mathey-Andrews, Santiago Naranjo, et al.
The CRISPR Journal|October 23, 2020
Reactions to the National Academies/Royal Society Report on <i>Heritable Human Genome Editing</i>Misha Angrist, Rodolphe Barrangou, Françoise Baylis, et al.
The New England Journal of Medicine|May 15, 2025
Patient-Specific In Vivo Gene Editing to Treat a Rare Genetic DiseaseKiran Musunuru, Sarah A Grandinette, Xiao Wang, et al.
Nature Chemical Biology|December 24, 2024
Thoughts for the futureLona M Alkhalaf, Cheryl Arrowsmith, Emily P Balskus, et al.
Nature|April 8, 2021
The NIH Somatic Cell Genome Editing programKrishanu Saha, Erik J Sontheimer, P J Brooks, et al.
Pageof 33

Showing results (311-320 of 321) with videos related to

Sort By:
Pageof 33
Nature Genetics|July 3, 2023
Potent and uniform fetal hemoglobin induction via base editingThiyagaraj Mayuranathan, Gregory A Newby, Ruopeng Feng, et al.
Nucleic Acids Research|September 24, 2024
Amphiphilic shuttle peptide delivers base editor ribonucleoprotein to correct the CFTR R553X mutation in well-differentiated airway epithelial cellsKatarina Kulhankova, Anna X Cheng, Soumba Traore, et al.
Biorxiv : the Preprint Server for Biology|February 27, 2026
Mechanistic machine learning enables interpretable and generalizable prediction of prime editing outcomesAlvin Hsu, Peter J Chen, Angus H Li, et al.
The Journal of Biological Chemistry|July 30, 2020
Multimodal small-molecule screening for human prion protein bindersAndrew G Reidenbach, Michael F Mesleh, Dominick Casalena, et al.
Nature|June 3, 2021
Base editing of haematopoietic stem cells rescues sickle cell disease in miceGregory A Newby, Jonathan S Yen, Kaitly J Woodard, et al.
Nature Biotechnology|May 11, 2023
A prime editor mouse to model a broad spectrum of somatic mutations in vivoZackery A Ely, Nicolas Mathey-Andrews, Santiago Naranjo, et al.
The CRISPR Journal|October 23, 2020
Reactions to the National Academies/Royal Society Report on <i>Heritable Human Genome Editing</i>Misha Angrist, Rodolphe Barrangou, Françoise Baylis, et al.
The New England Journal of Medicine|May 15, 2025
Patient-Specific In Vivo Gene Editing to Treat a Rare Genetic DiseaseKiran Musunuru, Sarah A Grandinette, Xiao Wang, et al.
Nature Chemical Biology|December 24, 2024
Thoughts for the futureLona M Alkhalaf, Cheryl Arrowsmith, Emily P Balskus, et al.
Nature|April 8, 2021
The NIH Somatic Cell Genome Editing programKrishanu Saha, Erik J Sontheimer, P J Brooks, et al.
Pageof 33